LEADER 07751nam 2200673 450 001 9910146086403321 005 20221206174738.0 010 $a1-282-03108-2 010 $a9786612031083 010 $a0-470-42391-9 010 $a0-470-42390-0 024 7 $a10.1002/9780470423912 035 $a(CKB)1000000000719614 035 $a(EBL)427836 035 $a(SSID)ssj0000233518 035 $a(PQKBManifestationID)11186644 035 $a(PQKBTitleCode)TC0000233518 035 $a(PQKBWorkID)10220713 035 $a(PQKB)10906189 035 $a(MiAaPQ)EBC427836 035 $a(CaBNVSL)mat05361025 035 $a(IDAMS)0b00006481178831 035 $a(IEEE)5361025 035 $a(PPN)257489290 035 $a(OCoLC)441888442 035 $a(EXLCZ)991000000000719614 100 $a20090930h20152009 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aReal-time stability assessment in modern power system control centers /$fedited by Savu C. Savulescu 210 1$aPiscataway, New Jersey :$cIEEE Press,$dc2009. 210 2$a[Piscataqay, New Jersey] :$cIEEE Xplore,$d[2009] 215 $a1 online resource (455 p.) 225 1 $aIEEE Press series on power engineering ;$v42 300 $aDescription based upon print version of record. 311 $a0-470-23330-3 320 $aIncludes bibliographical references and index. 327 $aPreface -- Contributors -- 1 The Real-Time and Study-Mode Data Environment in Modern SCADA/EMS (Sudhir Virmani and Savu C. Savulescu) -- 1.1 Introduction -- 1.2 SCADA/EMS Architectures -- 1.3 Integrating Stability Applications with the SCADA/EMS -- 1.4 References -- 2 Overview of Key Stability Concepts Applied for Real-Time Operations (Savu C. Savulescu) -- 2.1 Introduction -- 2.2 In Search of the Stability Limits -- 2.3 Transient and Voltage Stability Limits -- 2.4 Steady-State Stability Limits -- 2.5 Concluding Remarks -- 2.6 References -- Annex 1-1. Reactive Power Steady-State Stability Criterion daL Q/dV -- 3 LIPA Implementation of Real-Time Stability Monitoring in a CIM Compliant Environment (Loris Arnold, Janos Hajagos, Susan M. Manessis, and Anie Philip) -- 3.1 Introduction -- 3.2 Static and Dynamic Security Assessment at LIPA -- 3.3 Benchmarking the Real-Time Stability Application -- 3.4 Practical Experience and Outlook -- 3.5 References -- 4 Real-Time Stability Monitoring at the Independent System Operator in Bosnia and Herzegovina (Dusko Vickovic and Roland Eichler) -- 4.1 Introduction -- 4.2 Interim Implementation of Real-Time Stability Assessment at NOS BiH -- 4.3 Real-Time Stability Assessment in the New SCADA/EMS Environment -- 4.4 Conclusions and Recommendations -- 4.5 References -- Annex 4-1. TSL, TTC, and the Stability Envelope -- Annex 4-2. Siemens Implementation of the Continuation Power Flow -- 5 Experience with Real-Time Stability Assessment at Transelectrica (Horia S. Campeanu, Cornel Erbasu, and Cornel Aldea) -- 5.1 Introduction -- 5.2 Security Assessment Philosophy and Criteria -- 5.3 Real-Time Steady-State Stability Assessment and Monitoring -- 5.4 Off-Line Stability Tools in Support of System Operations -- 5.5 Conclusions and Outlook -- 5.6 References -- 6 Implementation of Online Dynamic Security Assessment at Southern Company (Kip Morison, Lei Wang, Fred Howell, James Viikinsalo, and Alan Martin) -- 6.1 Introduction -- 6.2 DSA Implementation Fundamentals. 327 $a6.3 Transient Security Assessment Implementation at Southern Company -- 6.4 Conclusions -- 6.5 References -- Annex 6-1. Further Details of the DSA Software and Hardware Architecture -- Description of the Core DSA Software -- Online DSA Implementation Using DSATools -- 7 Online Security Assessment for the Brazilian System?A Detailed Modeling Approach (Jorge L. Jardim) -- 7.1 Introduction -- 7.2 Security Criteria and Functions -- 7.3 Solution Methods and Architecture -- 7.4 Practical Implementation Aspects -- 7.5 User Interface And Performance -- 7.6 Concluding Remarks -- 7.7 Acknowledgments -- 7.8 References -- 8 Dynamic Network Security Analysis in a Load Dispatch Center (Guenther Beissler, Olaf Ruhle, and Roland Eichler) -- 8.1 Introduction -- 8.2 Siemens Approach to Dynamic Security Assessment -- 8.3 Case Studies: Challenges, Implementation Approach, and Solution Features -- 8.4 References -- Annex 8-1. Further Dynamic Simulation Capabilities -- Time Frame for Dynamic Simulations -- Simulation in the Frequency Domain -- Eigenvalue and Modal Analysis -- 9 Real-Time Transient Security Assessment in Australia at NEMMCO (Stephen J. Boroczky) -- 9.1 Introduction -- 9.2 Transient Security Assessment at NEMMCO -- 9.3 Performance and Reliability -- 9.4 Experience, Benefits, and Outlook -- 9.5 References -- 10 Online Voltage Security Assessment in the Hellenic Interconnected System (Costas Vournas, George Christoforidis, and Thierry Van Cutsem) -- 10.1 Introduction -- 10.2 The Control Center of HTSO -- 10.3 Online VSA in the Hellenic System -- 10.4 Use of Online VSA For Arming Load-Shedding Protection -- 10.5 Conclusion -- 10.6 References -- Annex 10-1. Quasi-Steady-State Simulation -- Principle of the QSS Approximation -- Handling of Frequency in QSS Simulation -- QSS Model of the Synchronous Machine and its Regulations -- Numerical Integration of the QSS Model -- 11 The Real-Time Supervision of Transmission Capacity in the Swedish Grid (Lars Sandberg and Klas Rouden) -- 11.1 Introduction. 327 $a11.2 Prior and Current Application Development at SVK -- 11.3 Voltage Security Assessment with SPICA -- 11.4 Benefiting from the Knowledge of the Current Transmission Capacity -- 11.5 Additional SPICA Functionality -- 11.6 Summary -- Appendix A Dimo?s Approach to Steady-State Stability Assessment: Methodology Overview, Numerical Example, and Algorithm Validation (Roberto D. Molina Mylius, Martin Cassano, and Savu C. Savulescu) -- A.1 Methodology Overview -- A.2 Numerical Example?Independent Testing of Algorithm Implementation -- -- A.3 Benchmarking the Methodology -- A.4 Conclusions -- A.5 References -- Appendix B SIME: A Comprehensive Approach to Transient Stability (Mania Pavella, Daniel Ruiz-Vega, and Mevludin Glavic) -- B.1 Introduction -- B.2 Basic Formulation -- B.3 Preventive SIME -- B.4 Emergency SIME -- B.5 Postface -- B.6 References -- Notation -- Abbreviations and Acronyms -- Appendix C Detection and Evaluation of Stability Constrained (Marius Pomarleanu and Savu C. Savulescu) -- C.1 Introduction -- C.2 Approach -- C.3 Conclusions -- C.4 References -- Index. 330 $aThis book answers the need for a practical, hands-on guide for assessing power stability in real time, rather than in offline simulations. Since the book is primarily geared toward the practical aspects of the subject, theoretical background is reduced to the strictest minimum. For the benefit of readers who may not be quite familiar with the underlying theoretical techniques, appendices describing key algorithms and theoretical issues are included at the end of the book. It is an excellent source for researchers, professionals, and advanced undergraduate and graduate students. 410 0$aIEEE Press series on power engineering ;$v42 606 $aElectric power system stability 606 $aReal-time control 615 0$aElectric power system stability. 615 0$aReal-time control. 676 $a621.31 676 $a621.31/7 701 $aSavulescu$b Savu Crivat$025629 801 0$bCaBNVSL 801 1$bCaBNVSL 801 2$bCaBNVSL 906 $aBOOK 912 $a9910146086403321 996 $aReal-time stability assessment in modern power system control centers$91887781 997 $aUNINA