SlideShare ist ein Scribd-Unternehmen logo
1 von 20
Downloaden Sie, um offline zu lesen
from
linked data & knowledge graphs
to
linked intelligence & intelligence graphs
…or the potential of the semantic Web to break the walls
between semantic networks and computational networks
Fabien Gandon, http://fabien.info
IRI
IRI IRI
IRI
SEMANTIC NETWORKS
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos' backpropagation algorithm for training of multi-layer network
 1970’s Pouzin, Cerf & Kahn work on packet switching network
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
SEMANTIC NETWORKS
representing semantic
relations between
concepts so the
meaning of a concept is
related to its position
relative to the other
concepts
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos' backpropagation algorithm for training of multi-layer network
 1970’s Pouzin, Cerf & Kahn work on packet switching network
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
COMPUTATIONAL NETWORKS
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos’ backpropagation algorithm for training of multi-layer networks
 1970’s Pouzin, Cerf & Kahn work on packet switching network
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
COMPUTATIONAL NETWORKS
represent operand
relations between the
input and output of
computation nodes
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos’ backpropagation algorithm for training of multi-layer networks
 1970’s Pouzin, Cerf & Kahn work on packet switching network
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
HYPERMEDIA NETWORKS
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos’ backpropagation algorithm for training of multi-layer networks
 1970’s Pouzin, Cerf & Kahn work on packet switching network
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
HYPERMEDIA NETWORKS
hyperlinks between
resources of a nonlinear
medium of information
including text, graphics,
audio, video, etc.
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos’ backpropagation algorithm for training of multi-layer networks
 1970’s Pouzin, Cerf & Kahn work on packet switching network
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
THE WEB AS A POINT OF CONVERGENCE FOR ALL NETWORKS
 1896 existential graphs of Peirce to express logics as diagrams
 1943 McCulloch & Pitts, neural network as electrical circuits
 1945 Bush proto-hypertext system MemEx
 1949 Hebb : neural pathways are strengthened each time they are used
 1958 Rosenblatt works on the Perceptron
 1965 Nelson defines hypertext and hypermedia
 1968 Quillian works on semantic networks to capture memory of concepts
 1975 Werbos’ backpropagation algorithm for training of multi-layer networks
 1976 Sowa introduces conceptual graphs to represent schemas of databases
 1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives
 1987 Atkinson's HyperCard is among the first successful hypermedia systems
 1989 Berners-Lee defines the Web hypermedia architecture
 1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM
 1998 LeCun : Gradient-Based Learning Applied to Document Recognition
 1998 Berners-Lee drafts the semantic Web road map
 1999 Lassila & Swick: first version of the RDF recommendation
 2000 Fielding defines the REST, the architectural style of the Web
A WEB IDENTIFYING EVERYTHING IRI & RESOURCES
identify on the networks anything we want
A WEB IDENTIFYING EVERYTHING
IRI
IRI
IRI
A WEB LINKING (META)DATA
RDF & LINKED DATA
distributed (meta)data networks
IRI & RESOURCES
identify on the networks anything we want
ex. the SOLID approach
A WEB LINKING DESCRIPTIONS
IRI
IRI
IRI
IRI IRI
IRI
IRI
A WEB LINKING COMPUTATIONS
RDF & LINKED DATA
distributed (meta)data networks
IRI & RESOURCES
identify on the networks anything we want
REST & LINKED COMPUTATIONS
decentralized computation networks
ex. Linked Functions in LDScript [Corby et al. 20xx]
ex. edge AI over the Web [WebML @ W3C]
ex. the SOLID approach
A WEB LINKING COMPUTATIONS
IRI
IRI
IRI
IRI IRI
IRI
IRI
f(x,y,z) {…}
A WEB LINKING ALL NETWORKS
RDF & LINKED DATA
distributed (meta)data networks
REST & LINKED COMPUTATIONS
decentralized computation networks
ex. Linked Functions in LDScript [Corby et al. 20xx]
ex. edge AI over the Web [WebML @ W3C]
ONTOLOGIES & LINKED SEMANTICS
extensible network of models
ex. FAIRNet ontology [Nguyen et al. arXiv:1907.11569]
IRI & RESOURCES
identify on the networks anything we want
ex. the SOLID approach
A WEB LINKING ALL NETWORKS
IRI
IRI
IRI
IRI IRI
IRI
IRI
IRI
IRI IRI
IRI
f(x,y,z) {…}
BEYOND NETWORKS, A WEB LINKING ALL KINDS OF INTELLIGENCE
BEYOND NETWORKS, A WEB LINKING ALL KINDS OF INTELLIGENCE
Connected Animals
Herdsourcing
Connected plants
IoT, Wot
THE INTELLIGENCE WEB NEEDS THE SEMANTIC WEB
Connected Animals
Herdsourcing
Connected plants
IoT, Wot
AND FOR OTHER IDEAS…
http://bit.ly/websci2020

Weitere ähnliche Inhalte

Ähnlich wie from linked data & knowledge graphs to linked intelligence & intelligence graphs

Internet History And Growth
Internet History And GrowthInternet History And Growth
Internet History And Growthnishantsri
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growthGagan Watts
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growthmister aabid
 
2002 0918 Internet History And Growth
2002 0918 Internet History And Growth2002 0918 Internet History And Growth
2002 0918 Internet History And Growthvenkatesh y
 
Internet History And Growth
Internet History And GrowthInternet History And Growth
Internet History And Growthmayday1429
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growthrahchauh
 
Internet timeline
Internet timelineInternet timeline
Internet timelineJossane Go
 
Activity 10 imeline history of internet
Activity 10 imeline history of internetActivity 10 imeline history of internet
Activity 10 imeline history of internetpamllamedo
 
Activity 10 imeline history of internet
Activity 10 imeline history of internetActivity 10 imeline history of internet
Activity 10 imeline history of internetpamllamedo
 
Activity 10 timeline history of internet
Activity 10 timeline history of internetActivity 10 timeline history of internet
Activity 10 timeline history of internetalyssamonicacruz
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growthGovernorTechnology
 
History of the Internet
History of the InternetHistory of the Internet
History of the InternetPamela Carpio
 
Activity 10 timeline history of internet
Activity 10 timeline history of internetActivity 10 timeline history of internet
Activity 10 timeline history of internetLee_Subin
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growthJules Burundi
 
Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"
Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"
Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"hypertext2007
 
2002_0918_Internet_History_and_Growth.ppt
2002_0918_Internet_History_and_Growth.ppt2002_0918_Internet_History_and_Growth.ppt
2002_0918_Internet_History_and_Growth.pptTanmaySharma347033
 

Ähnlich wie from linked data & knowledge graphs to linked intelligence & intelligence graphs (20)

Internet History And Growth
Internet History And GrowthInternet History And Growth
Internet History And Growth
 
Internet
InternetInternet
Internet
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth
 
2002 0918 Internet History And Growth
2002 0918 Internet History And Growth2002 0918 Internet History And Growth
2002 0918 Internet History And Growth
 
Internet History And Growth
Internet History And GrowthInternet History And Growth
Internet History And Growth
 
Internet history and_growth
Internet history and_growthInternet history and_growth
Internet history and_growth
 
Internet history and growth
Internet history and growthInternet history and growth
Internet history and growth
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth
 
Internet timeline
Internet timelineInternet timeline
Internet timeline
 
Activity 10 imeline history of internet
Activity 10 imeline history of internetActivity 10 imeline history of internet
Activity 10 imeline history of internet
 
Activity 10 imeline history of internet
Activity 10 imeline history of internetActivity 10 imeline history of internet
Activity 10 imeline history of internet
 
Activity 10 timeline history of internet
Activity 10 timeline history of internetActivity 10 timeline history of internet
Activity 10 timeline history of internet
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth
 
Networking
NetworkingNetworking
Networking
 
History of the Internet
History of the InternetHistory of the Internet
History of the Internet
 
Activity 10 timeline history of internet
Activity 10 timeline history of internetActivity 10 timeline history of internet
Activity 10 timeline history of internet
 
2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth2002 0918 internet_history_and_growth
2002 0918 internet_history_and_growth
 
Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"
Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"
Hypertext2007 Wendy Hall - "Whatever Happened to Hypertext?"
 
2002_0918_Internet_History_and_Growth.ppt
2002_0918_Internet_History_and_Growth.ppt2002_0918_Internet_History_and_Growth.ppt
2002_0918_Internet_History_and_Growth.ppt
 

Mehr von Fabien Gandon

Walking Our Way to the Web
Walking Our Way to the WebWalking Our Way to the Web
Walking Our Way to the WebFabien Gandon
 
a shift in our research focus: from knowledge acquisition to knowledge augmen...
a shift in our research focus: from knowledge acquisition to knowledge augmen...a shift in our research focus: from knowledge acquisition to knowledge augmen...
a shift in our research focus: from knowledge acquisition to knowledge augmen...Fabien Gandon
 
Evaluation d’explications pour la prédiction de liens dans les graphes de con...
Evaluation d’explications pour la prédiction de liens dans les graphes de con...Evaluation d’explications pour la prédiction de liens dans les graphes de con...
Evaluation d’explications pour la prédiction de liens dans les graphes de con...Fabien Gandon
 
A Never-Ending Project for Humanity Called “the Web”
A Never-Ending Project for Humanity Called “the Web”A Never-Ending Project for Humanity Called “the Web”
A Never-Ending Project for Humanity Called “the Web”Fabien Gandon
 
Wimmics Overview 2021
Wimmics Overview 2021Wimmics Overview 2021
Wimmics Overview 2021Fabien Gandon
 
CovidOnTheWeb : covid19 linked data published on the Web
CovidOnTheWeb : covid19 linked data published on the WebCovidOnTheWeb : covid19 linked data published on the Web
CovidOnTheWeb : covid19 linked data published on the WebFabien Gandon
 
Web open standards for linked data and knowledge graphs as enablers of EU dig...
Web open standards for linked data and knowledge graphs as enablers of EU dig...Web open standards for linked data and knowledge graphs as enablers of EU dig...
Web open standards for linked data and knowledge graphs as enablers of EU dig...Fabien Gandon
 
The Web We Mix - benevolent AIs for a resilient web
The Web We Mix - benevolent AIs for a resilient webThe Web We Mix - benevolent AIs for a resilient web
The Web We Mix - benevolent AIs for a resilient webFabien Gandon
 
Overview of the Research in Wimmics 2018
Overview of the Research in Wimmics 2018Overview of the Research in Wimmics 2018
Overview of the Research in Wimmics 2018Fabien Gandon
 
Web science AI and IA
Web science AI and IAWeb science AI and IA
Web science AI and IAFabien Gandon
 
Normative Requirements as Linked Data
Normative Requirements as Linked DataNormative Requirements as Linked Data
Normative Requirements as Linked DataFabien Gandon
 
Wimmics Research Team Overview 2017
Wimmics Research Team Overview 2017Wimmics Research Team Overview 2017
Wimmics Research Team Overview 2017Fabien Gandon
 
On the many graphs of the Web and the interest of adding their missing links.
On the many graphs of the Web and the interest of adding their missing links. On the many graphs of the Web and the interest of adding their missing links.
On the many graphs of the Web and the interest of adding their missing links. Fabien Gandon
 
One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...
One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...
One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...Fabien Gandon
 
How to supervise your supervisor?
How to supervise your supervisor?How to supervise your supervisor?
How to supervise your supervisor?Fabien Gandon
 
Dans l'esprit du Pagerank: regards croisés sur les algorithmes,
Dans l'esprit du Pagerank: regards croisés sur les algorithmes,Dans l'esprit du Pagerank: regards croisés sur les algorithmes,
Dans l'esprit du Pagerank: regards croisés sur les algorithmes,Fabien Gandon
 
Wimmics Research Team 2015 Activity Report
Wimmics Research Team 2015 Activity ReportWimmics Research Team 2015 Activity Report
Wimmics Research Team 2015 Activity ReportFabien Gandon
 
Retours sur le MOOC "Web Sémantique et Web de données"
Retours sur le MOOC "Web Sémantique et Web de données"Retours sur le MOOC "Web Sémantique et Web de données"
Retours sur le MOOC "Web Sémantique et Web de données"Fabien Gandon
 
Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015
Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015
Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015Fabien Gandon
 
ESWC 2015 Closing and "General Chair's minute of Madness"
ESWC 2015 Closing and "General Chair's minute of Madness"ESWC 2015 Closing and "General Chair's minute of Madness"
ESWC 2015 Closing and "General Chair's minute of Madness"Fabien Gandon
 

Mehr von Fabien Gandon (20)

Walking Our Way to the Web
Walking Our Way to the WebWalking Our Way to the Web
Walking Our Way to the Web
 
a shift in our research focus: from knowledge acquisition to knowledge augmen...
a shift in our research focus: from knowledge acquisition to knowledge augmen...a shift in our research focus: from knowledge acquisition to knowledge augmen...
a shift in our research focus: from knowledge acquisition to knowledge augmen...
 
Evaluation d’explications pour la prédiction de liens dans les graphes de con...
Evaluation d’explications pour la prédiction de liens dans les graphes de con...Evaluation d’explications pour la prédiction de liens dans les graphes de con...
Evaluation d’explications pour la prédiction de liens dans les graphes de con...
 
A Never-Ending Project for Humanity Called “the Web”
A Never-Ending Project for Humanity Called “the Web”A Never-Ending Project for Humanity Called “the Web”
A Never-Ending Project for Humanity Called “the Web”
 
Wimmics Overview 2021
Wimmics Overview 2021Wimmics Overview 2021
Wimmics Overview 2021
 
CovidOnTheWeb : covid19 linked data published on the Web
CovidOnTheWeb : covid19 linked data published on the WebCovidOnTheWeb : covid19 linked data published on the Web
CovidOnTheWeb : covid19 linked data published on the Web
 
Web open standards for linked data and knowledge graphs as enablers of EU dig...
Web open standards for linked data and knowledge graphs as enablers of EU dig...Web open standards for linked data and knowledge graphs as enablers of EU dig...
Web open standards for linked data and knowledge graphs as enablers of EU dig...
 
The Web We Mix - benevolent AIs for a resilient web
The Web We Mix - benevolent AIs for a resilient webThe Web We Mix - benevolent AIs for a resilient web
The Web We Mix - benevolent AIs for a resilient web
 
Overview of the Research in Wimmics 2018
Overview of the Research in Wimmics 2018Overview of the Research in Wimmics 2018
Overview of the Research in Wimmics 2018
 
Web science AI and IA
Web science AI and IAWeb science AI and IA
Web science AI and IA
 
Normative Requirements as Linked Data
Normative Requirements as Linked DataNormative Requirements as Linked Data
Normative Requirements as Linked Data
 
Wimmics Research Team Overview 2017
Wimmics Research Team Overview 2017Wimmics Research Team Overview 2017
Wimmics Research Team Overview 2017
 
On the many graphs of the Web and the interest of adding their missing links.
On the many graphs of the Web and the interest of adding their missing links. On the many graphs of the Web and the interest of adding their missing links.
On the many graphs of the Web and the interest of adding their missing links.
 
One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...
One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...
One Web of pages, One Web of peoples, One Web of Services, One Web of Data, O...
 
How to supervise your supervisor?
How to supervise your supervisor?How to supervise your supervisor?
How to supervise your supervisor?
 
Dans l'esprit du Pagerank: regards croisés sur les algorithmes,
Dans l'esprit du Pagerank: regards croisés sur les algorithmes,Dans l'esprit du Pagerank: regards croisés sur les algorithmes,
Dans l'esprit du Pagerank: regards croisés sur les algorithmes,
 
Wimmics Research Team 2015 Activity Report
Wimmics Research Team 2015 Activity ReportWimmics Research Team 2015 Activity Report
Wimmics Research Team 2015 Activity Report
 
Retours sur le MOOC "Web Sémantique et Web de données"
Retours sur le MOOC "Web Sémantique et Web de données"Retours sur le MOOC "Web Sémantique et Web de données"
Retours sur le MOOC "Web Sémantique et Web de données"
 
Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015
Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015
Emotions in Argumentation: an Empirical Evaluation @ IJCAI 2015
 
ESWC 2015 Closing and "General Chair's minute of Madness"
ESWC 2015 Closing and "General Chair's minute of Madness"ESWC 2015 Closing and "General Chair's minute of Madness"
ESWC 2015 Closing and "General Chair's minute of Madness"
 

Kürzlich hochgeladen

Introduction of Human Body & Structure of cell.pptx
Introduction of Human Body & Structure of cell.pptxIntroduction of Human Body & Structure of cell.pptx
Introduction of Human Body & Structure of cell.pptxMedical College
 
KDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdf
KDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdfKDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdf
KDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdfGABYFIORELAMALPARTID1
 
How we decide powerpoint presentation.pptx
How we decide powerpoint presentation.pptxHow we decide powerpoint presentation.pptx
How we decide powerpoint presentation.pptxJosielynTars
 
LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2
LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2
LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2AuEnriquezLontok
 
Environmental acoustics- noise criteria.pptx
Environmental acoustics- noise criteria.pptxEnvironmental acoustics- noise criteria.pptx
Environmental acoustics- noise criteria.pptxpriyankatabhane
 
办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书
办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书
办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书zdzoqco
 
Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...
Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...
Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...Christina Parmionova
 
Explainable AI for distinguishing future climate change scenarios
Explainable AI for distinguishing future climate change scenariosExplainable AI for distinguishing future climate change scenarios
Explainable AI for distinguishing future climate change scenariosZachary Labe
 
Quarter 4_Grade 8_Digestive System Structure and Functions
Quarter 4_Grade 8_Digestive System Structure and FunctionsQuarter 4_Grade 8_Digestive System Structure and Functions
Quarter 4_Grade 8_Digestive System Structure and FunctionsCharlene Llagas
 
FBI Profiling - Forensic Psychology.pptx
FBI Profiling - Forensic Psychology.pptxFBI Profiling - Forensic Psychology.pptx
FBI Profiling - Forensic Psychology.pptxPayal Shrivastava
 
Oxo-Acids of Halogens and their Salts.pptx
Oxo-Acids of Halogens and their Salts.pptxOxo-Acids of Halogens and their Salts.pptx
Oxo-Acids of Halogens and their Salts.pptxfarhanvvdk
 
final waves properties grade 7 - third quarter
final waves properties grade 7 - third quarterfinal waves properties grade 7 - third quarter
final waves properties grade 7 - third quarterHanHyoKim
 
CHROMATOGRAPHY PALLAVI RAWAT.pptx
CHROMATOGRAPHY  PALLAVI RAWAT.pptxCHROMATOGRAPHY  PALLAVI RAWAT.pptx
CHROMATOGRAPHY PALLAVI RAWAT.pptxpallavirawat456
 
WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11
WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11
WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11GelineAvendao
 
DNA isolation molecular biology practical.pptx
DNA isolation molecular biology practical.pptxDNA isolation molecular biology practical.pptx
DNA isolation molecular biology practical.pptxGiDMOh
 
DECOMPOSITION PATHWAYS of TM-alkyl complexes.pdf
DECOMPOSITION PATHWAYS of TM-alkyl complexes.pdfDECOMPOSITION PATHWAYS of TM-alkyl complexes.pdf
DECOMPOSITION PATHWAYS of TM-alkyl complexes.pdfDivyaK787011
 
linear Regression, multiple Regression and Annova
linear Regression, multiple Regression and Annovalinear Regression, multiple Regression and Annova
linear Regression, multiple Regression and AnnovaMansi Rastogi
 
Observational constraints on mergers creating magnetism in massive stars
Observational constraints on mergers creating magnetism in massive starsObservational constraints on mergers creating magnetism in massive stars
Observational constraints on mergers creating magnetism in massive starsSérgio Sacani
 

Kürzlich hochgeladen (20)

Introduction of Human Body & Structure of cell.pptx
Introduction of Human Body & Structure of cell.pptxIntroduction of Human Body & Structure of cell.pptx
Introduction of Human Body & Structure of cell.pptx
 
KDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdf
KDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdfKDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdf
KDIGO-2023-CKD-Guideline-Public-Review-Draft_5-July-2023.pdf
 
How we decide powerpoint presentation.pptx
How we decide powerpoint presentation.pptxHow we decide powerpoint presentation.pptx
How we decide powerpoint presentation.pptx
 
LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2
LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2
LESSON PLAN IN SCIENCE GRADE 4 WEEK 1 DAY 2
 
AZOTOBACTER AS BIOFERILIZER.PPTX
AZOTOBACTER AS BIOFERILIZER.PPTXAZOTOBACTER AS BIOFERILIZER.PPTX
AZOTOBACTER AS BIOFERILIZER.PPTX
 
Interferons.pptx.
Interferons.pptx.Interferons.pptx.
Interferons.pptx.
 
Environmental acoustics- noise criteria.pptx
Environmental acoustics- noise criteria.pptxEnvironmental acoustics- noise criteria.pptx
Environmental acoustics- noise criteria.pptx
 
办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书
办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书
办理麦克马斯特大学毕业证成绩单|购买加拿大文凭证书
 
Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...
Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...
Charateristics of the Angara-A5 spacecraft launched from the Vostochny Cosmod...
 
Explainable AI for distinguishing future climate change scenarios
Explainable AI for distinguishing future climate change scenariosExplainable AI for distinguishing future climate change scenarios
Explainable AI for distinguishing future climate change scenarios
 
Quarter 4_Grade 8_Digestive System Structure and Functions
Quarter 4_Grade 8_Digestive System Structure and FunctionsQuarter 4_Grade 8_Digestive System Structure and Functions
Quarter 4_Grade 8_Digestive System Structure and Functions
 
FBI Profiling - Forensic Psychology.pptx
FBI Profiling - Forensic Psychology.pptxFBI Profiling - Forensic Psychology.pptx
FBI Profiling - Forensic Psychology.pptx
 
Oxo-Acids of Halogens and their Salts.pptx
Oxo-Acids of Halogens and their Salts.pptxOxo-Acids of Halogens and their Salts.pptx
Oxo-Acids of Halogens and their Salts.pptx
 
final waves properties grade 7 - third quarter
final waves properties grade 7 - third quarterfinal waves properties grade 7 - third quarter
final waves properties grade 7 - third quarter
 
CHROMATOGRAPHY PALLAVI RAWAT.pptx
CHROMATOGRAPHY  PALLAVI RAWAT.pptxCHROMATOGRAPHY  PALLAVI RAWAT.pptx
CHROMATOGRAPHY PALLAVI RAWAT.pptx
 
WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11
WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11
WEEK 4 PHYSICAL SCIENCE QUARTER 3 FOR G11
 
DNA isolation molecular biology practical.pptx
DNA isolation molecular biology practical.pptxDNA isolation molecular biology practical.pptx
DNA isolation molecular biology practical.pptx
 
DECOMPOSITION PATHWAYS of TM-alkyl complexes.pdf
DECOMPOSITION PATHWAYS of TM-alkyl complexes.pdfDECOMPOSITION PATHWAYS of TM-alkyl complexes.pdf
DECOMPOSITION PATHWAYS of TM-alkyl complexes.pdf
 
linear Regression, multiple Regression and Annova
linear Regression, multiple Regression and Annovalinear Regression, multiple Regression and Annova
linear Regression, multiple Regression and Annova
 
Observational constraints on mergers creating magnetism in massive stars
Observational constraints on mergers creating magnetism in massive starsObservational constraints on mergers creating magnetism in massive stars
Observational constraints on mergers creating magnetism in massive stars
 

from linked data & knowledge graphs to linked intelligence & intelligence graphs

  • 1. from linked data & knowledge graphs to linked intelligence & intelligence graphs …or the potential of the semantic Web to break the walls between semantic networks and computational networks Fabien Gandon, http://fabien.info IRI IRI IRI IRI
  • 2. SEMANTIC NETWORKS  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos' backpropagation algorithm for training of multi-layer network  1970’s Pouzin, Cerf & Kahn work on packet switching network  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 3. SEMANTIC NETWORKS representing semantic relations between concepts so the meaning of a concept is related to its position relative to the other concepts  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos' backpropagation algorithm for training of multi-layer network  1970’s Pouzin, Cerf & Kahn work on packet switching network  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 4. COMPUTATIONAL NETWORKS  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos’ backpropagation algorithm for training of multi-layer networks  1970’s Pouzin, Cerf & Kahn work on packet switching network  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 5. COMPUTATIONAL NETWORKS represent operand relations between the input and output of computation nodes  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos’ backpropagation algorithm for training of multi-layer networks  1970’s Pouzin, Cerf & Kahn work on packet switching network  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 6. HYPERMEDIA NETWORKS  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos’ backpropagation algorithm for training of multi-layer networks  1970’s Pouzin, Cerf & Kahn work on packet switching network  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 7. HYPERMEDIA NETWORKS hyperlinks between resources of a nonlinear medium of information including text, graphics, audio, video, etc.  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos’ backpropagation algorithm for training of multi-layer networks  1970’s Pouzin, Cerf & Kahn work on packet switching network  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 8. THE WEB AS A POINT OF CONVERGENCE FOR ALL NETWORKS  1896 existential graphs of Peirce to express logics as diagrams  1943 McCulloch & Pitts, neural network as electrical circuits  1945 Bush proto-hypertext system MemEx  1949 Hebb : neural pathways are strengthened each time they are used  1958 Rosenblatt works on the Perceptron  1965 Nelson defines hypertext and hypermedia  1968 Quillian works on semantic networks to capture memory of concepts  1975 Werbos’ backpropagation algorithm for training of multi-layer networks  1976 Sowa introduces conceptual graphs to represent schemas of databases  1979 Brachman KL-ONE, hierarchy of classes and finite number of primitives  1987 Atkinson's HyperCard is among the first successful hypermedia systems  1989 Berners-Lee defines the Web hypermedia architecture  1997 Schmidhuber & Hochreiter: recurrent neural network and LSTM  1998 LeCun : Gradient-Based Learning Applied to Document Recognition  1998 Berners-Lee drafts the semantic Web road map  1999 Lassila & Swick: first version of the RDF recommendation  2000 Fielding defines the REST, the architectural style of the Web
  • 9. A WEB IDENTIFYING EVERYTHING IRI & RESOURCES identify on the networks anything we want
  • 10. A WEB IDENTIFYING EVERYTHING IRI IRI IRI
  • 11. A WEB LINKING (META)DATA RDF & LINKED DATA distributed (meta)data networks IRI & RESOURCES identify on the networks anything we want ex. the SOLID approach
  • 12. A WEB LINKING DESCRIPTIONS IRI IRI IRI IRI IRI IRI IRI
  • 13. A WEB LINKING COMPUTATIONS RDF & LINKED DATA distributed (meta)data networks IRI & RESOURCES identify on the networks anything we want REST & LINKED COMPUTATIONS decentralized computation networks ex. Linked Functions in LDScript [Corby et al. 20xx] ex. edge AI over the Web [WebML @ W3C] ex. the SOLID approach
  • 14. A WEB LINKING COMPUTATIONS IRI IRI IRI IRI IRI IRI IRI f(x,y,z) {…}
  • 15. A WEB LINKING ALL NETWORKS RDF & LINKED DATA distributed (meta)data networks REST & LINKED COMPUTATIONS decentralized computation networks ex. Linked Functions in LDScript [Corby et al. 20xx] ex. edge AI over the Web [WebML @ W3C] ONTOLOGIES & LINKED SEMANTICS extensible network of models ex. FAIRNet ontology [Nguyen et al. arXiv:1907.11569] IRI & RESOURCES identify on the networks anything we want ex. the SOLID approach
  • 16. A WEB LINKING ALL NETWORKS IRI IRI IRI IRI IRI IRI IRI IRI IRI IRI IRI f(x,y,z) {…}
  • 17. BEYOND NETWORKS, A WEB LINKING ALL KINDS OF INTELLIGENCE
  • 18. BEYOND NETWORKS, A WEB LINKING ALL KINDS OF INTELLIGENCE Connected Animals Herdsourcing Connected plants IoT, Wot
  • 19. THE INTELLIGENCE WEB NEEDS THE SEMANTIC WEB Connected Animals Herdsourcing Connected plants IoT, Wot
  • 20. AND FOR OTHER IDEAS… http://bit.ly/websci2020