Instantaneous power theory and applications to power conditioning

Instantaneous power theory and applications to power conditioning
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DOI:
10.1002/9781119307181
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发表时间:
2007
期刊:
--
影响因子:
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通讯作者:
H. Akagi;E. Watanabe;M. Aredes
H. Akagi;E. Watanabe;M. Aredes
中科院分区:
其他
文献类型:
--
作者:
H. Akagi;E. Watanabe;M. Aredes

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序言。1.导论. 1.1.电力理论的概念和演变。1.2. p-q理论在电力电子装置中的应用。1.3.电力系统中的谐波电压。1.4.已识别和未识别的谐波产生负载。1.5.谐波电流和电压源。1.6.谐波补偿的基本原理。1.7.潮流控制的基本原理。参考资料。2.电力定义:背景。2.1.正弦条件下的功率定义。2.2.电压和电流相量以及复阻抗。2.3.复功率和功率因数。2.4.非正弦条件下的功率概念-传统方法。2.5.三相系统中的电力。2.6.摘要参考资料。3、瞬时功率理论。3.1. p-q理论的基础。3.2.三相三线系统中的p-q理论3.3.三相四线系统中的p-q理论。3.4.瞬时abc理论。3.5. p-q理论与abc理论的比较3.6.摘要参考资料。4个并联有源滤波器。4.1.并联有源滤波器的一般说明。4.2.三相三线并联有源滤波器。4.3.三相四线并联有源滤波器。4.4.并联选择性谐波补偿。4.5.摘要参考资料。5混合和串联有源滤波器。5.1.基本系列有源滤波器。5.2.串联有源滤波器和并联无源滤波器组合。5.3.与双串联二极管整流器集成的串联有源滤波器。5.4.混合有源滤波器和纯有源滤波器的比较。5.5.结论.参考资料。6组合式串联和并联功率调节器。6.1.统一潮流控制器(UPFC)。6.2.统一电能质量调节器(UPQC)。6.3.通用有源电力线调节器(UPLC)。6.4.摘要参考资料。指数.
Preface. 1. Introduction. 1.1. Concepts and Evolution of Electric Power Theory. 1.2. Applications of the p-q Theory to Power Electronics Equipment. 1.3. Harmonic Voltages in Power Systems. 1.4. Identified and Unidentified Harmonic-Producing Loads. 1.5. Harmonic Current and Voltage Sources. 1.6. Basic Principles of Harmonic Compensation. 1.7. Basic Principles of Power Flow Control. References. 2. Electric Power Definitions: Background. 2.1. Power Definitions Under Sinusoidal Conditions. 2.2. Voltage and Current Phasors and the Complex Impedance. 2.3. Complex Power and Power Factor. 2.4. Concepts of Power Under Non-Sinusoidal Conditions -Conventional Approaches. 2.5. Electric Power in Three-Phase Systems. 2.6. Summary. References. 3 The Instantaneous Power Theory. 3.1. Basis of the p-q Theory. 3.2. The p-q Theory in Three-Phase, Three-Wire Systems. 3.3. The p-q Theory in Three-Phase, Four-Wire Systems. 3.4. Instantaneous abc Theory. 3.5. Comparisons between the p-q Theory and the abc Theory. 3.6. Summary. References. 4 Shunt Active Filters. 4.1. General Description of Shunt Active Filters. 4.2. Three-Phase, Three-Wire Shunt Active Filters. 4.3. Three-Phase, Four-Wire Shunt Active Filters. 4.4. Shunt Selective Harmonic Compensation. 4.5. Summary. References. 5 Hybrid and Series Active Filters. 5.1. Basic Series Active Filter. 5.2. Combined Series Active Filter and Shunt Passive Filter. 5.3. Series Active Filter Integrated with a Double-Series Diode Rectifier. 5.4. Comparisons Between Hybrid and Pure Active Filters. 5.5. Conclusions. References. 6 Combined Series and Shunt Power Conditioners. 6.1. The Unified Power Flow Controller (UPFC). 6.2. The Unified Power Quality Conditioner (UPQC). 6.3. The Universal Active Power Line Conditioner (UPLC). 6.4. Summary. References. Index.