000753231 000__ 05796cam\a2200565Ii\4500 000753231 001__ 753231 000753231 005__ 20230306141547.0 000753231 006__ m\\\\\o\\d\\\\\\\\ 000753231 007__ cr\cn\nnnunnun 000753231 008__ 160107s2016\\\\gw\a\\\\ob\\\\000\0\eng\d 000753231 019__ $$a933587274$$a935252422 000753231 020__ $$a9783662486276$$q(electronic book) 000753231 020__ $$a366248627X$$q(electronic book) 000753231 020__ $$z9783662486252 000753231 0247_ $$a10.1007/978-3-662-48627-6$$2doi 000753231 035__ $$aSP(OCoLC)ocn933847195 000753231 035__ $$aSP(OCoLC)933847195$$z(OCoLC)933587274$$z(OCoLC)935252422 000753231 040__ $$aGW5XE$$beng$$erda$$epn$$cGW5XE$$dYDXCP$$dN$T$$dOCLCF$$dEBLCP$$dDEBSZ$$dIDEBK$$dNUI$$dCOO$$dOCLCQ 000753231 049__ $$aISEA 000753231 050_4 $$aTK1007 000753231 08204 $$a621.31/7$$223 000753231 24500 $$aInterconnected power systems$$h[electronic resource] :$$bwide-area dynamic monitoring and control applications /$$cYong Li, Dechang Yang, Fang Liu, Yijia Cao, Christian Rehtanz. 000753231 264_1 $$aBerlin :$$bSpringer,$$c2016. 000753231 300__ $$a1 online resource (xv, 223 pages) :$$bcolor illustrations. 000753231 336__ $$atext$$btxt$$2rdacontent 000753231 337__ $$acomputer$$bc$$2rdamedia 000753231 338__ $$aonline resource$$bcr$$2rdacarrier 000753231 4901_ $$aPower systems,$$x1612-1287 000753231 504__ $$aIncludes bibliographical references. 000753231 5050_ $$aForeword; Preface; Outlines; Acknowledgments; Contents; 1 Introduction; 1.1 Status Quo and Trends of Interconnected Systems; 1.2 Stability Problems of Interconnected Systems; 1.3 WAMS Technology and Its Application in Interconnected Systems; 1.4 Low Frequency Oscillation Analysis Methods; 1.5 Challenges of Wide Area Dynamic Monitoring and Control; References; 2 Theoretical Foundation of Low-Frequency Oscillations; 2.1 The Basic Principles of Low-Frequency Oscillation; 2.1.1 Local Mode; 2.1.2 Inter-Area Mode; 2.2 Techniques Based on System Model; 2.2.1 Linearization of the State Equation. 000753231 5058_ $$a2.2.2 Calculation of Eigenvalues and Eigenvectors2.2.3 Determination of Oscillation Parameters; 2.2.4 Brief Summary of System Model Analysis Techniques; 2.3 Techniques Based on Measured Information; 2.3.1 Discrete Fourier Transform; 2.3.2 Prony Algorithm and Multi-Prony; 2.3.3 Wavelet Transform and Its Improvements; 2.3.4 Hilbert -- Huang Transform; 2.4 Summary; References; 3 Oscillatory Parameters Computation Based on Improved HHT; 3.1 Introduction of Improved Empirical Mode Decomposition (EMD); 3.1.1 The Selection of Stop Criterion for Sifting in EMD. 000753231 5058_ $$a3.1.2 End Effects and Extrema Symmetrical Extension3.1.3 Mode-Mixing and Frequency Heterodyne Technique (FHT); 3.1.4 The Improved EMD Based on ESE and FHT; 3.2 Time and Frequency Analysis of Intrinsic Mode Function; 3.3 Normalized Hilbert Transform (NHT); 3.3.1 Decompose the IMF into AM and FM Parts; 3.3.2 Calculation of the Instantaneous Frequency; 3.3.3 Calculation of the Instantaneous Amplitude and Damping Ratio; 3.4 The Flowchart of the Improved HHT; 3.5 Summary; References; 4 Oscillation Model Identification Based on Nonlinear Hybrid Method (NHM). 000753231 5058_ $$a4.1 Identification of Dominant Oscillation Mode4.2 The Processing of Oscillation Mode Identification; 4.2.1 Calculation of the Absolute Phase (AP) and Relative Phase (RP) of IMF; 4.2.2 Determination of Node Contribution Factor (NCF); 4.2.3 Computation of Approximate Mode Shape (AMS); 4.2.4 Coherency of the Measured Signals; 4.2.5 Flowchart of the Nonlinear Hybrid Method (NHM); 4.3 Study Case; 4.4 Summary; References; 5 Identification of Dominant Complex Orthogonal Mode (COM); 5.1 Introduction of Spatial and Temporal Behaviors of Oscillation Mode. 000753231 5058_ $$a5.2 Construction of the Complex Ensemble Measurement Matrix5.3 Implementations of Complex Orthogonal Decomposition (COD); 5.3.1 Complex Eigenvalues Decomposition (C-ED); 5.3.2 Complex Singular Value Decomposition (C-SVD); 5.3.3 Augmented Matrix Decomposition (AMD); 5.3.4 Definition of Relevant COMs; 5.4 Extraction of the Propagating Features; 5.4.1 Spatial Energy Distribution; 5.4.2 Temporal Dynamic Characteristics; 5.4.3 Energy Contribution Factor (ECF); 5.5 The Flowchart of Proposed COD; 5.6 Study Case; 5.6.1 Description of Sliding Window. 000753231 506__ $$aAccess limited to authorized users. 000753231 520__ $$aThis book reports on the latest findings in the application of the wide area measurement systems (WAMS) in the analysis and control of power systems. The book collects new research ideas and achievements including a delay-dependent robust design method, a wide area robust coordination strategy, a hybrid assessment and choice method for wide area signals, a free-weighting matrices method and its application, as well as the online identification methods for low-frequency oscillations. The main original research results of this book are a comprehensive summary of the authors? latest six-year study. The book will be of interest to academic researchers, R & D engineers and graduate students in power systems who wish to learn the core principles, methods, algorithms, and applications of the WAMS. 000753231 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed January 7, 2016). 000753231 650_0 $$aElectric power systems$$xControl. 000753231 650_0 $$aElectric power systems$$xManagement. 000753231 7001_ $$aLi, Yong,$$eauthor. 000753231 7001_ $$aYang, Dechang,$$eauthor. 000753231 7001_ $$aLiu, Fang,$$eauthor. 000753231 7001_ $$aCao, Yijia,$$eauthor. 000753231 7001_ $$aRehtanz, Christian,$$eauthor. 000753231 77608 $$iPrint version:$$aLi, Yong.$$tInterconnected Power Systems : Wide-Area Dynamic Monitoring and Control Applications.$$dBerlin, Heidelberg : Springer Berlin Heidelberg, ©2015$$z9783662486252 000753231 830_0 $$aPower systems. 000753231 852__ $$bebk 000753231 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-662-48627-6$$zOnline Access$$91397441.1 000753231 909CO $$ooai:library.usi.edu:753231$$pGLOBAL_SET 000753231 980__ $$aEBOOK 000753231 980__ $$aBIB 000753231 982__ $$aEbook 000753231 983__ $$aOnline 000753231 994__ $$a92$$bISE