Nonlinear phenomena in power electronics : attractors, bifurcations, chaos, and nonlinear control

Nonlinear phenomena in power electronics : attractors, bifurcations, chaos, and nonlinear control
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发表时间:
2001
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通讯作者:
S. Banerjee;G. Verghese
S. Banerjee;G. Verghese
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其他
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作者:
S. Banerjee;G. Verghese

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前言。致谢。贡献作者名单。第一章:引言(D. C. Hamill, S. Banerjee, G. C. Verghese)。1.1电力电子学简介。1.2一个例子:Buck DC/DC变换器5 1.3电力电子学中的非线性动力学和混沌研究15 1.4结论20第二章:电力变换器的动态模型2.1电力电子转换器和模型介绍(G. C. Verghese和A. M. Stankovic)。2.2仔细观察电源转换器的采样数据模型(F. Vasca, M. di Bernardo和G. Olivar)。第三章:分岔和混沌理论的基础。3.1《非线性动力学与混沌导论》(S. Banerjee)。3.2光滑映射的分岔[H. B. Deane]。3.3分段平滑映射中的分岔(S. Banerjee和C. Grebogi)。3.4不连续映射中的非标准分岔(/。Dobson和S. Banerjee)。3.5 Schwarzian导数法(C. K. Tse)。3.6共存的吸引子、吸引盆地和危机(E. Fossas和G. Olivar)。第四章:研究非线性现象的实验和计算技术。4.1实验调查技术(谢家强)。4.2数值研究技术(S. Banerjee和D. C. Hamill)。4.3混沌下的平均计算(J. L . Rodriguez Marrero, G. C. Verghese, R. Santos Bueno和S. H. Isabelle)。4.4混沌DC/DC变换器中谱峰的计算[J. H. B. Deane]。4.5稳定性和分岔现象分析的计算机方法(Y. Kuroe)。4.6运行模式边界的计算(Y. Kuroe, T. Kato,和G. C. Verghese)。第五章:dc / dc变换器中的非线性现象。5.1电流模式控制升压变换器中的边界碰撞分岔(S. Banerjee和P. Ranjan)。5.2带锁存器的压控Buck变换器中的分岔和混沌(S. Banerjee, D. Kastha, and S. Das)。5.3无锁存器的电压控制Buck变换器的混沌路径(M. di Bernardo, G. Olivar, and F. Vasca)。5.4 PWM DC/DC变换器中的鞍节点和内马克分岔(c.c.fang和e.h. Abed)。5.5断续-传导模式下的非线性分析(谢国强)。5.6 Cuk变换器中的非线性现象(谢国强)。第六章:晶闸管和二极管电路的非线性动力学。多布森)。6.1简介。6.2理想二极管和晶闸管开关规则。6.3静态VAR系统示例。6.4庞加莱图。6.5庞加莱图的雅可比矩阵。6.6开关阻尼。6.7开关时间分岔。6.8二极管电路。6.9发射角控制。第七章:其他电力电子系统中的非线性现象。7.1非线性电感电路建模(J. H. B. Deane)。7.2公差带控制下的逆变器(A. Magauer)。7.3电源变换器中的非线性噪声效应(P. T. Krein和P. Midya)。7.4感应电动机电流控制中的非线性现象(/。Nagy和Z. Suto)。7.5电力电子感应电机驱动系统的稳定性与分岔分析[j]。第八章:非线性控制与混沌控制。8.1电力电子中的传统非线性控制(P. T. Krein)。8.2滑模和切换面控制(P. T. Krein)。8.3电力电子中基于能量的控制(A. M. Stankovic, G. Escobar, Ft. Ortega和S. R. Sanders)。8.4纹波相关控制(P. T. Krein)8.5混沌控制(M. di Bernardo, G. Olivar, C. Battle)。8.6混沌运行的闭环调控(J. L . Rodriguez Marrero, R. Santos Bueno,和G. C. Verghese)8.7分岔控制(C. K. Tse, Y.—M.)Lai)。8.8混沌的同步(谢家强)。索引。关于编辑。
Preface. Acknowledgments. List of Contributing Authors. CHAPTER 1: INTRODUCTION (D. C. Hamill, S. Banerjee, and G. C. Verghese). 1.1 Introduction to Power Electronics. 1.2 An Example: The Buck DC/DC Converter 5 1.3 Study of Nonlinear Dynamics and Chaos in Power Electronics 15 1.4 Conclusions 20 CHAPTER 2: DYNAMIC MODELS OF POWER CONVERTERS. 2.1 Introduction to Power Electronic Converters and Models (G. C. Verghese and A. M. Stankovic). 2.2 A Closer Look at Sampled--Data Models for Power Converters (F. Vasca, M. di Bernardo, and G. Olivar). CHAPTER 3: BASICS OF BIFURCATION AND CHAOS THEORY. 3.1 Introduction to Nonlinear Dynamics and Chaos (S. Banerjee). 3.2 Bifurcations of Smooth Maps J. H. B. Deane). 3.3 Bifurcations in Piecewise--Smooth Maps (S. Banerjee and C. Grebogi). 3.4 Nonstandard Bifurcations in Discontinuous Maps (/. Dobson and S. Banerjee). 3.5 The Method of Schwarzian Derivatives (C. K. Tse). 3.6 Coexisting Attractors, Basins of Attraction, and Crises (E. Fossas and G. Olivar). CHAPTER 4: EXPERIMENTAL AND COMPUTATIONAL TECHNIQUES FOR INVESTIGATION OF NONLINEAR PHENOMENA. 4.1 Techniques of Experimental Investigation (C K. Tse). 4.2 Techniques of Numerical Investigation (S. Banerjee and D. C. Hamill). 4.3 Computation of Averages Under Chaos (J. L Rodriguez Marrero, G. C. Verghese, R. Santos Bueno, and S. H. Isabelle). 4.4 Calculation of Spectral Peaks in a Chaotic DC/DC Converter (J. H. B. Deane). 4.5 Computer Methods to Analyze Stability and Bifurcation Phenomena (Y. Kuroe). 4.6 Computation of Operating--Mode Boundaries (Y. Kuroe, T. Kato, and G. C. Verghese). CHAPTER 5: NONLINEAR PHENOMENA IN DC/DC CONVERTERS. 5.1 Border Collision Bifurcations in the Current--Mode--Controlled Boost Converter (S. Banerjee and P. Ranjan). 5.2 Bifurcation and Chaos in the Voltage--Controlled Buck Converter with Latch (S. Banerjee, D. Kastha, and S. Das). 5.3 Routes to Chaos in the Voltage--Controlled Buck Converter without Latch (M. di Bernardo, G. Olivar, and F. Vasca). 5.4 Saddle--Node and Neimark Bifurcations in PWM DC/DC Converters (C. C. Fang and E. H. Abed). 5.5 Nonlinear Analysis of Operation in Discontinuous--Conduction Mode (C. K. Tse). 5.6 Nonlinear Phenomena in the Cuk Converter (C. K. Tse). CHAPTER 6: NONLINEAR DYNAMICS IN THYRISTOR AND DIODE CIRCUITS (/. Dobson). 6.1 Introduction. 6.2 Ideal Diode and Thyristor Switching Rules. 6.3 Static VAR System Example. 6.4 Poincare Map. 6.5 Jacobian of Poincare Map. 6.6 Switching Damping. 6.7 Switching Time Bifurcations. 6.8 Diode Circuits. 6.9 Firing Angle Control. CHAPTER 7: NONLINEAR PHENOMENA IN OTHER POWER ELECTRONIC SYSTEMS. 7.1 Modeling a Nonlinear Inductor Circuit (J. H. B. Deane). 7.2 Inverters Under Tolerance Band Control (A. Magauer). 7.3 Nonlinear Noise Effects in Power Converters (P. T. Krein and P. Midya). 7.4 Nonlinear Phenomena in the Current Control of Induction Motors (/. Nagy and Z. Suto). 7.5 Analysis of Stability and Bifurcation in Power Electronic Induction Motor Drive Systems (Y. Kuroe). CHAPTER 8: NONLINEAR CONTROL AND CONTROL OF CHAOS. 8.1 Conventional Nonlinear Controls in Power Electronics (P. T. Krein). 8.2 Sliding Mode and Switching Surface Control (P. T. Krein). 8.3 Energy--Based Control in Power Electronics (A. M. Stankovic, G. Escobar, Ft. Ortega, and S. R. Sanders). 8.4 Ripple Correlation Control (P. T. Krein). 8.5 Control of Chaos (M. di Bernardo, G. Olivar, and C. Battle). 8.6 Closed--Loop Regulation of Chaotic Operation (J. L Rodriguez Marrero, R. Santos Bueno, and G. C. Verghese). 8.7 Control of Bifurcation (C. K. Tse and Y.--M. Lai). 8.8 Synchronization of Chaos (C. K. Tse). Index. About the Editors.