IEC 61850 demystified /:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Norwood, MA :
Artech House,
[2019]
|
Schriftenreihe: | Artech House power engineering series.
|
Schlagworte: | |
Online-Zugang: | DE-862 DE-863 |
Beschreibung: | 1 online resource (xiv, 303 pages) : illustrations, charts |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781630816612 1630816612 |
Internformat
MARC
LEADER | 00000cam a2200000 i 4500 | ||
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020 | |z 163081329X |q (hardcover) | ||
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100 | 1 | |a Falk, Herbert, |e author. | |
245 | 1 | 0 | |a IEC 61850 demystified / |c Herbert Falk. |
246 | 3 | |a IEC sixty-one thousand eight hundred and fifty demystified | |
246 | 3 | |a International Electrotechnical Commission sixty-one thousand eight hundred and fifty demystified | |
264 | 1 | |a Norwood, MA : |b Artech House, |c [2019] | |
264 | 4 | |c ©2019 | |
300 | |a 1 online resource (xiv, 303 pages) : |b illustrations, charts | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
490 | 1 | |a Artech House power engineering series | |
504 | |a Includes bibliographical references and index. | ||
505 | 8 | |a Intro; IEC 61850 Demystified; Contents; Preface; Introduction; Chapter 1 What Makes IEC 61850 Different?; 1.1 Designed for the Future; 1.2 Functions and Semantics Instead of Numbers; 1.3 Automation Instead of SCADA Focus; 1.4 Engineering Workflow and File Exchange Standardization; 1.5 Adoption and Barriers; Reference; Chapter 2 History of IEC 61850; 2.1 Prior to 1980; 2.1.1 Foundational Principles; 2.1.2 The 1970s: Moore's Law and Computational Power; 2.1.3 Computer Communication and Internet; 2.2 1980 to 1989; 2.2.1 Foundational Principles; 2.2.2 Computers: Personal Computers | |
505 | 8 | |a 2.2.3 Communications; 2.2.4 The Rise and Demise of MAP/TOP; 2.2.5 The Rise of the Utility Communication Architecture; 2.3 1990 to 1999; 2.3.1 Founcational Technologies; 2.3.2 Communications; 2.3.3 Utility Communication Architecture; 2.3.4 IEC 61850 Begins; 2.4 2000 to 2009; 2.4.1 Security; 2.4.2 Synchrophasor; 2.4.3 IEC 61850; 2.5 2010 to Today; References; Chapter 3 The Need for Speed: Networking versus Hardwire; 3.1 Use Case for Digital Network-Based Protection; 3.1.1 Signal Distribution Requirements; 3.1.2 Timing; 3.1.3 Quality of Message Delivery Service | |
505 | 8 | |a 3.1.4 Requirements and Decisions Based on Use Cases; 3.2 Mathematical Analysis of the Technologies; 3.2.1 Profibus; 3.2.2 Ethernet; 3.3 Mathematical Truth but Numbers Can Lie; 3.3.1 Profibus versus Ethernet Test Results; 3.3.2 Skepticism and Ethernet Scalability Test Results; 3.3.3 Wondering What Happened; Chapter 4 Harmonizing IEC 61850 and IEEE TR 1550; Chapter 5 Structure of the IEC 61850 Standard; Chapter 6 Read Before Proceeding: Use of UML in This Book; 6.1 Classes, Attributes, Operations, and Multiplicity; 6.2 Generalization; 6.3 Association, Composition, and Aggregation | |
505 | 8 | |a 6.4 Dependency, Instantiation, and Stereotypes; 6.5 Stereotype; 6.6 UML Cheat Sheet; Chapter 7 Integration Patterns; 7.1 Client and Server; 7.2 Publish and Subscribe; Chapter 8 Basic IEC 61850; 8.1 Intelligent Electronic Devices; 8.1.1 IED and Their Applications; 8.1.2 Naming of IEDs; 8.1.3 When Is an IED Not a Physical Box; 8.1.4 Access Point; 8.2 Logical Device and Logical Nodes; 8.2.1 Logical Device; 8.2.2 Logical Nodes; Chapter 9 IEC 61850-7-2 and IEC 61850-7-3; 9.1 Base Types; 9.1.1 Timestamp and Synchronization; 9.1.2 Quality (IEC 61850-7-3); Chapter 10 Engineering | |
505 | 8 | |a 10.1 Workflow Specifics; 10.1.1 Specification Phase; 10.1.2 Binding to IEDs; 10.1.3 Information Exchange Requirements; 10.1.4 Communication Configuration; 10.1.5 Iteration and Export; 10.2 SCL Service Declarations; 10.2.1 Server Capabilities; 10.2.2 Client Capabilities; Chapter 11 Client and Server Communications; 11.1 History of IEC 61850 Client/Server; 11.2 IEC 61850 Client/Server Over the Wire; 11.3 ASN. 1; 11.3.1 Protocol Definition Syntax (Bakus-Naur Form Notation); 11.3.2 Encoding Rules; Chapter 12 Impact of Cybersecurity; 12.1 SCL; 12.2 61850 Application Role-Based Access Control | |
505 | 8 | |a 12.3 Protocol Related | |
588 | 0 | |a Print version record. | |
650 | 0 | |a Electric power |x Data processing |x Standards. | |
650 | 0 | |a Electric substations |x Data processing |x Standards. | |
650 | 6 | |a Électricité |x Informatique |x Normes. | |
650 | 6 | |a Postes de réseau électrique |x Informatique |x Normes. | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Mechanical. |2 bisacsh | |
653 | |a Technology, Engineering, Agriculture | ||
653 | |a Technologie, Ingenieurswissenschaft, Landwirtschaft | ||
653 | |a Technologie, ingénierie et agriculture | ||
653 | |a Energy technology & engineering | ||
653 | |a Energietechnik, Elektrotechnik und Energiemaschinenbau | ||
653 | |a Génie industriel | ||
653 | |a Electrical engineering | ||
653 | |a Elektrotechnik | ||
653 | |a Electrotechnique | ||
655 | 4 | |a Electronic book. | |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-on1080434058 |
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adam_text | |
any_adam_object | |
author | Falk, Herbert |
author_facet | Falk, Herbert |
author_role | aut |
author_sort | Falk, Herbert |
author_variant | h f hf |
building | Verbundindex |
bvnumber | localFWS |
callnumber-first | T - Technology |
callnumber-label | TK1751 |
callnumber-raw | TK1751 .F35 2019eb |
callnumber-search | TK1751 .F35 2019eb |
callnumber-sort | TK 41751 F35 42019EB |
callnumber-subject | TK - Electrical and Nuclear Engineering |
collection | ZDB-4-EBA |
contents | Intro; IEC 61850 Demystified; Contents; Preface; Introduction; Chapter 1 What Makes IEC 61850 Different?; 1.1 Designed for the Future; 1.2 Functions and Semantics Instead of Numbers; 1.3 Automation Instead of SCADA Focus; 1.4 Engineering Workflow and File Exchange Standardization; 1.5 Adoption and Barriers; Reference; Chapter 2 History of IEC 61850; 2.1 Prior to 1980; 2.1.1 Foundational Principles; 2.1.2 The 1970s: Moore's Law and Computational Power; 2.1.3 Computer Communication and Internet; 2.2 1980 to 1989; 2.2.1 Foundational Principles; 2.2.2 Computers: Personal Computers 2.2.3 Communications; 2.2.4 The Rise and Demise of MAP/TOP; 2.2.5 The Rise of the Utility Communication Architecture; 2.3 1990 to 1999; 2.3.1 Founcational Technologies; 2.3.2 Communications; 2.3.3 Utility Communication Architecture; 2.3.4 IEC 61850 Begins; 2.4 2000 to 2009; 2.4.1 Security; 2.4.2 Synchrophasor; 2.4.3 IEC 61850; 2.5 2010 to Today; References; Chapter 3 The Need for Speed: Networking versus Hardwire; 3.1 Use Case for Digital Network-Based Protection; 3.1.1 Signal Distribution Requirements; 3.1.2 Timing; 3.1.3 Quality of Message Delivery Service 3.1.4 Requirements and Decisions Based on Use Cases; 3.2 Mathematical Analysis of the Technologies; 3.2.1 Profibus; 3.2.2 Ethernet; 3.3 Mathematical Truth but Numbers Can Lie; 3.3.1 Profibus versus Ethernet Test Results; 3.3.2 Skepticism and Ethernet Scalability Test Results; 3.3.3 Wondering What Happened; Chapter 4 Harmonizing IEC 61850 and IEEE TR 1550; Chapter 5 Structure of the IEC 61850 Standard; Chapter 6 Read Before Proceeding: Use of UML in This Book; 6.1 Classes, Attributes, Operations, and Multiplicity; 6.2 Generalization; 6.3 Association, Composition, and Aggregation 6.4 Dependency, Instantiation, and Stereotypes; 6.5 Stereotype; 6.6 UML Cheat Sheet; Chapter 7 Integration Patterns; 7.1 Client and Server; 7.2 Publish and Subscribe; Chapter 8 Basic IEC 61850; 8.1 Intelligent Electronic Devices; 8.1.1 IED and Their Applications; 8.1.2 Naming of IEDs; 8.1.3 When Is an IED Not a Physical Box; 8.1.4 Access Point; 8.2 Logical Device and Logical Nodes; 8.2.1 Logical Device; 8.2.2 Logical Nodes; Chapter 9 IEC 61850-7-2 and IEC 61850-7-3; 9.1 Base Types; 9.1.1 Timestamp and Synchronization; 9.1.2 Quality (IEC 61850-7-3); Chapter 10 Engineering 10.1 Workflow Specifics; 10.1.1 Specification Phase; 10.1.2 Binding to IEDs; 10.1.3 Information Exchange Requirements; 10.1.4 Communication Configuration; 10.1.5 Iteration and Export; 10.2 SCL Service Declarations; 10.2.1 Server Capabilities; 10.2.2 Client Capabilities; Chapter 11 Client and Server Communications; 11.1 History of IEC 61850 Client/Server; 11.2 IEC 61850 Client/Server Over the Wire; 11.3 ASN. 1; 11.3.1 Protocol Definition Syntax (Bakus-Naur Form Notation); 11.3.2 Encoding Rules; Chapter 12 Impact of Cybersecurity; 12.1 SCL; 12.2 61850 Application Role-Based Access Control 12.3 Protocol Related |
ctrlnum | (OCoLC)1080434058 |
dewey-full | 621.31 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.31 |
dewey-search | 621.31 |
dewey-sort | 3621.31 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Electronic eBook |
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genre | Electronic book. |
genre_facet | Electronic book. |
id | ZDB-4-EBA-on1080434058 |
illustrated | Illustrated |
indexdate | 2025-04-11T08:46:41Z |
institution | BVB |
isbn | 9781630816612 1630816612 |
language | English |
oclc_num | 1080434058 |
open_access_boolean | |
owner | MAIN DE-862 DE-BY-FWS DE-863 DE-BY-FWS |
owner_facet | MAIN DE-862 DE-BY-FWS DE-863 DE-BY-FWS |
physical | 1 online resource (xiv, 303 pages) : illustrations, charts |
psigel | ZDB-4-EBA FWS_PDA_EBA ZDB-4-EBA |
publishDate | 2019 |
publishDateSearch | 2019 |
publishDateSort | 2019 |
publisher | Artech House, |
record_format | marc |
series | Artech House power engineering series. |
series2 | Artech House power engineering series |
spelling | Falk, Herbert, author. IEC 61850 demystified / Herbert Falk. IEC sixty-one thousand eight hundred and fifty demystified International Electrotechnical Commission sixty-one thousand eight hundred and fifty demystified Norwood, MA : Artech House, [2019] ©2019 1 online resource (xiv, 303 pages) : illustrations, charts text txt rdacontent computer c rdamedia online resource cr rdacarrier Artech House power engineering series Includes bibliographical references and index. Intro; IEC 61850 Demystified; Contents; Preface; Introduction; Chapter 1 What Makes IEC 61850 Different?; 1.1 Designed for the Future; 1.2 Functions and Semantics Instead of Numbers; 1.3 Automation Instead of SCADA Focus; 1.4 Engineering Workflow and File Exchange Standardization; 1.5 Adoption and Barriers; Reference; Chapter 2 History of IEC 61850; 2.1 Prior to 1980; 2.1.1 Foundational Principles; 2.1.2 The 1970s: Moore's Law and Computational Power; 2.1.3 Computer Communication and Internet; 2.2 1980 to 1989; 2.2.1 Foundational Principles; 2.2.2 Computers: Personal Computers 2.2.3 Communications; 2.2.4 The Rise and Demise of MAP/TOP; 2.2.5 The Rise of the Utility Communication Architecture; 2.3 1990 to 1999; 2.3.1 Founcational Technologies; 2.3.2 Communications; 2.3.3 Utility Communication Architecture; 2.3.4 IEC 61850 Begins; 2.4 2000 to 2009; 2.4.1 Security; 2.4.2 Synchrophasor; 2.4.3 IEC 61850; 2.5 2010 to Today; References; Chapter 3 The Need for Speed: Networking versus Hardwire; 3.1 Use Case for Digital Network-Based Protection; 3.1.1 Signal Distribution Requirements; 3.1.2 Timing; 3.1.3 Quality of Message Delivery Service 3.1.4 Requirements and Decisions Based on Use Cases; 3.2 Mathematical Analysis of the Technologies; 3.2.1 Profibus; 3.2.2 Ethernet; 3.3 Mathematical Truth but Numbers Can Lie; 3.3.1 Profibus versus Ethernet Test Results; 3.3.2 Skepticism and Ethernet Scalability Test Results; 3.3.3 Wondering What Happened; Chapter 4 Harmonizing IEC 61850 and IEEE TR 1550; Chapter 5 Structure of the IEC 61850 Standard; Chapter 6 Read Before Proceeding: Use of UML in This Book; 6.1 Classes, Attributes, Operations, and Multiplicity; 6.2 Generalization; 6.3 Association, Composition, and Aggregation 6.4 Dependency, Instantiation, and Stereotypes; 6.5 Stereotype; 6.6 UML Cheat Sheet; Chapter 7 Integration Patterns; 7.1 Client and Server; 7.2 Publish and Subscribe; Chapter 8 Basic IEC 61850; 8.1 Intelligent Electronic Devices; 8.1.1 IED and Their Applications; 8.1.2 Naming of IEDs; 8.1.3 When Is an IED Not a Physical Box; 8.1.4 Access Point; 8.2 Logical Device and Logical Nodes; 8.2.1 Logical Device; 8.2.2 Logical Nodes; Chapter 9 IEC 61850-7-2 and IEC 61850-7-3; 9.1 Base Types; 9.1.1 Timestamp and Synchronization; 9.1.2 Quality (IEC 61850-7-3); Chapter 10 Engineering 10.1 Workflow Specifics; 10.1.1 Specification Phase; 10.1.2 Binding to IEDs; 10.1.3 Information Exchange Requirements; 10.1.4 Communication Configuration; 10.1.5 Iteration and Export; 10.2 SCL Service Declarations; 10.2.1 Server Capabilities; 10.2.2 Client Capabilities; Chapter 11 Client and Server Communications; 11.1 History of IEC 61850 Client/Server; 11.2 IEC 61850 Client/Server Over the Wire; 11.3 ASN. 1; 11.3.1 Protocol Definition Syntax (Bakus-Naur Form Notation); 11.3.2 Encoding Rules; Chapter 12 Impact of Cybersecurity; 12.1 SCL; 12.2 61850 Application Role-Based Access Control 12.3 Protocol Related Print version record. Electric power Data processing Standards. Electric substations Data processing Standards. Électricité Informatique Normes. Postes de réseau électrique Informatique Normes. TECHNOLOGY & ENGINEERING Mechanical. bisacsh Technology, Engineering, Agriculture Technologie, Ingenieurswissenschaft, Landwirtschaft Technologie, ingénierie et agriculture Energy technology & engineering Energietechnik, Elektrotechnik und Energiemaschinenbau Génie industriel Electrical engineering Elektrotechnik Electrotechnique Electronic book. has work: IEC 61850 demystified (Text) https://id.oclc.org/worldcat/entity/E39PCGHRWft633GbpVKf7Kq373 https://id.oclc.org/worldcat/ontology/hasWork Print version: Falk, Herbert. IEC 61850 demystified. Norwood, MA : Artech House, [2019] 163081329X (OCoLC)1051689771 Artech House power engineering series. http://id.loc.gov/authorities/names/no2013082523 |
spellingShingle | Falk, Herbert IEC 61850 demystified / Artech House power engineering series. Intro; IEC 61850 Demystified; Contents; Preface; Introduction; Chapter 1 What Makes IEC 61850 Different?; 1.1 Designed for the Future; 1.2 Functions and Semantics Instead of Numbers; 1.3 Automation Instead of SCADA Focus; 1.4 Engineering Workflow and File Exchange Standardization; 1.5 Adoption and Barriers; Reference; Chapter 2 History of IEC 61850; 2.1 Prior to 1980; 2.1.1 Foundational Principles; 2.1.2 The 1970s: Moore's Law and Computational Power; 2.1.3 Computer Communication and Internet; 2.2 1980 to 1989; 2.2.1 Foundational Principles; 2.2.2 Computers: Personal Computers 2.2.3 Communications; 2.2.4 The Rise and Demise of MAP/TOP; 2.2.5 The Rise of the Utility Communication Architecture; 2.3 1990 to 1999; 2.3.1 Founcational Technologies; 2.3.2 Communications; 2.3.3 Utility Communication Architecture; 2.3.4 IEC 61850 Begins; 2.4 2000 to 2009; 2.4.1 Security; 2.4.2 Synchrophasor; 2.4.3 IEC 61850; 2.5 2010 to Today; References; Chapter 3 The Need for Speed: Networking versus Hardwire; 3.1 Use Case for Digital Network-Based Protection; 3.1.1 Signal Distribution Requirements; 3.1.2 Timing; 3.1.3 Quality of Message Delivery Service 3.1.4 Requirements and Decisions Based on Use Cases; 3.2 Mathematical Analysis of the Technologies; 3.2.1 Profibus; 3.2.2 Ethernet; 3.3 Mathematical Truth but Numbers Can Lie; 3.3.1 Profibus versus Ethernet Test Results; 3.3.2 Skepticism and Ethernet Scalability Test Results; 3.3.3 Wondering What Happened; Chapter 4 Harmonizing IEC 61850 and IEEE TR 1550; Chapter 5 Structure of the IEC 61850 Standard; Chapter 6 Read Before Proceeding: Use of UML in This Book; 6.1 Classes, Attributes, Operations, and Multiplicity; 6.2 Generalization; 6.3 Association, Composition, and Aggregation 6.4 Dependency, Instantiation, and Stereotypes; 6.5 Stereotype; 6.6 UML Cheat Sheet; Chapter 7 Integration Patterns; 7.1 Client and Server; 7.2 Publish and Subscribe; Chapter 8 Basic IEC 61850; 8.1 Intelligent Electronic Devices; 8.1.1 IED and Their Applications; 8.1.2 Naming of IEDs; 8.1.3 When Is an IED Not a Physical Box; 8.1.4 Access Point; 8.2 Logical Device and Logical Nodes; 8.2.1 Logical Device; 8.2.2 Logical Nodes; Chapter 9 IEC 61850-7-2 and IEC 61850-7-3; 9.1 Base Types; 9.1.1 Timestamp and Synchronization; 9.1.2 Quality (IEC 61850-7-3); Chapter 10 Engineering 10.1 Workflow Specifics; 10.1.1 Specification Phase; 10.1.2 Binding to IEDs; 10.1.3 Information Exchange Requirements; 10.1.4 Communication Configuration; 10.1.5 Iteration and Export; 10.2 SCL Service Declarations; 10.2.1 Server Capabilities; 10.2.2 Client Capabilities; Chapter 11 Client and Server Communications; 11.1 History of IEC 61850 Client/Server; 11.2 IEC 61850 Client/Server Over the Wire; 11.3 ASN. 1; 11.3.1 Protocol Definition Syntax (Bakus-Naur Form Notation); 11.3.2 Encoding Rules; Chapter 12 Impact of Cybersecurity; 12.1 SCL; 12.2 61850 Application Role-Based Access Control 12.3 Protocol Related Electric power Data processing Standards. Electric substations Data processing Standards. Électricité Informatique Normes. Postes de réseau électrique Informatique Normes. TECHNOLOGY & ENGINEERING Mechanical. bisacsh |
title | IEC 61850 demystified / |
title_alt | IEC sixty-one thousand eight hundred and fifty demystified International Electrotechnical Commission sixty-one thousand eight hundred and fifty demystified |
title_auth | IEC 61850 demystified / |
title_exact_search | IEC 61850 demystified / |
title_full | IEC 61850 demystified / Herbert Falk. |
title_fullStr | IEC 61850 demystified / Herbert Falk. |
title_full_unstemmed | IEC 61850 demystified / Herbert Falk. |
title_short | IEC 61850 demystified / |
title_sort | iec 61850 demystified |
topic | Electric power Data processing Standards. Electric substations Data processing Standards. Électricité Informatique Normes. Postes de réseau électrique Informatique Normes. TECHNOLOGY & ENGINEERING Mechanical. bisacsh |
topic_facet | Electric power Data processing Standards. Electric substations Data processing Standards. Électricité Informatique Normes. Postes de réseau électrique Informatique Normes. TECHNOLOGY & ENGINEERING Mechanical. Electronic book. |
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