智能电网中的传导电磁干扰.pdf 🔍
智能电网中的传导电磁干扰.pdf 北京:机械工业出版社, Springer Nature, London, 2012
中文 [zh] · PDF · 85.1MB · 2012 · 📘 非小说类图书 · 🚀/duxiu/lgli/upload/zlib · Save
描述
As power systems develop to incorporate renewable energy sources, the delivery systems may be disrupted by the changes involved. The grid’s technology and management must be developed to form Smart Grids between consumers, suppliers and producers. Conducted Electromagnetic Interference (EMI) in Smart Grids considers the specific side effects related to electromagnetic interference (EMI) generated by the application of these Smart Grids.Conducted Electromagnetic Interference (EMI) in Smart Grids presents specific EMI conducted phenomena as well as effective methods to filter and handle them once identified. After introduction to Smart Grids, the following sections cover dedicated methods for EMI reduction and potential avenues for future development including chapters dedicated to:•potential system services,•descriptions of the EMI spectra shaping methods,•methods of interference voltage compensation, and theoretical analysis of experimental results. By focusing on these key aspects, Conducted Electromagnetic Interference (EMI) in Smart Grids provides a concise and comprehensive coverage of an extensive subject matter. It constitutes a key resource for any industry practitioners, researchers or system designers with interest in Smart Grids, particularly their electromagnetic compatibility in the conducted EMI frequency range.
Erscheinungsdatum: 23.03.2012
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upload/cmpedu/AB03-电力系统/智能电网中的传导电磁干扰.pdf
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upload/cmpedu/ZC02-国际电气工程先进技术译丛/智能电网中的传导电磁干扰.pdf
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upload/shukui_net_cdl/109_2/37443509.pdf
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lgli/智能电网中的传导电磁干扰.pdf - 智能电网中的传导电磁干扰.pdf.pdf
备用文件名
zlib/Engineering/Energy & Power Resources/智能电网中的传导电磁干扰.pdf/智能电网中的传导电磁干扰.pdf_15359604.pdf
备选标题
Conducted Electromagnetic Interference (EMI) in Smart Grids (Power Systems)
备选作者
Smolenski, Robert
备选作者
Robert Smoleński
备选作者
ROBERT SMOLENSKI
备选作者
(波)斯莫林斯基
备选作者
作者
备用出版商
Springer London Ltd
备用出版商
China Machine Press
备用出版商
Springer-Verlag
备用版本
Guo ji dian qi gong cheng xian jin ji zhu yi cong, Bei jing, 2014
备用版本
Guo ji dian qi gong cheng xian jin ji shu yi cong, Bei jing, 2014
备用版本
United Kingdom and Ireland, United Kingdom
备用版本
Power Systems Ser, New York, March 2012
备用版本
Power Systems, London, cop. 2012
备用版本
China, People's Republic, China
元数据中的注释
producers:
生产者
元数据中的注释
Bookmarks: p1 (p1): 第1章 智能电网中的电力电子接口
p1-1 (p1): 1.1智能电网概述
p1-2 (p3): 1.2智能电网中电力电子变换器的作用
p1-3 (p8): 1.3作为传导EMI源的电力电子变换器
p1-4 (p14): 参考文献
p2 (p21): 第2章 传导电磁干扰的标准化测量
p2-1 (p21): 2.1超外差式电磁干扰接收机
p2-1-1 (p22): 2.1.1测量选择性
p2-1-2 (p24): 2.1.2测量检波器
p2-2 (p26): 2.2线路阻抗稳定网络
p2-3 (p27): 2.3系统和设备的EMC法规要求
p2-4 (p30): 参考文献
p3 (p32): 第3章 智能电网中的传导电磁干扰问题
p3-1 (p32): 3.1低压和中压电网中干扰的流动
p3-2 (p41): 3.2电力电子变换器产生的干扰的叠加
p3-2-1 (p41): 3.2.1一组具有确定和随机调制的变换器产生的传导EMI
p3-2-2 (p53): 3.2.2叠加干扰基于Pearson随机游走的数学模型
p3-3 (p60): 3.3智能电网中与电磁兼容有关的危害
p3-4 (p65): 参考文献
p4 (p67): 第4章 智能电网中EMI特性的改变
p4-1 (p67): 4.1无源EMI滤波器
p4-2 (p81): 4.2智能电网中好的工程实践
p4-3 (p83): 参考文献
p5 (p85): 第5章 电力电子接口中干扰源的补偿
p5-1 (p85): 5.1逆变器的共模补偿器
p5-2 (p93): 5.2多电平逆变器中的共模电压补偿
p5-3 (p107): 5.3用于有源整流器的共模补偿器
p5-4 (p114): 5.4四象限变频器中的共模电压补偿
p5-5 (p119): 5.5用于DC/DC变换器的共模补偿器
p5-6 (p124): 参考文献
p6 (p128): 第6章 智能电网中的EMI测量程序
p6-1 (p128): 6.1频域测量
p6-2 (p128): 6.2时域测量
p6-3 (p129): 参考文献
p7 (p131): 第7章 结论
p7-1 (p131): 7.1结果的总结
p7-2 (p133): 7.2将来的研究工作
p7-3 (p134): 参考文献
p8 (p135): 附录 基本参数
p9 (p137): 术语
p10 (p141): 缩略语
备用描述
Annotation As power systems develop to incorporate renewable energy sources, the delivery systems may be disrupted by the changes involved. The grids technology and management must be developed to form Smart Grids between consumers, suppliers and producers. Conducted Electromagnetic Interference (EMI) in Smart Grids considers the specific side effects related to electromagnetic interference (EMI) generated by the application of these Smart Grids. Conducted Electromagnetic Interference (EMI) in Smart Grids presents specific EMI conducted phenomena as well as effective methods to filter and handle them once identified. After introduction to Smart Grids, the following sections cover dedicated methods for EMI reduction and potential avenues for future development including chapters dedicated to:potential system services, descriptions of the EMI spectra shaping methods, methods of interference voltage compensation, and theoretical analysis of experimental results. By focusing on these key aspects, Conducted Electromagnetic Interference (EMI) in Smart Grids provides a concise and comprehensive coverage of an extensive subject matter. It constitutes a key resource for any industry practitioners, researchers or system designers with interest in Smart Grids, particularly their electromagnetic compatibility in the conducted EMI frequency range
备用描述
As Power Systems Develop To Incorporate Renewable Energy Sources, The Delivery Systems May Be Disrupted By The Changes Involved. The Grid’s Technology And Management Must Be Developed To Form Smart Grids Between Consumers, Suppliers And Producers. Conducted Electromagnetic Interference (emi) In Smart Grids Considers The Specific Side Effects Related To Electromagnetic Interference (emi) Generated By The Application Of These Smart Grids. Conducted Electromagnetic Interference (emi) In Smart Grids Presents Specific Emi Conducted Phenomena As Well As Effective Methods To Filter And Handle Them Once Identified. After Introduction To Smart Grids, The Following Sections Cover Dedicated Methods For Emi Reduction And Potential Avenues For Future Development Including Chapters Dedicated To: •potential System Services, •descriptions Of The Emi Spectra Shaping Methods, •methods Of Interference Voltage Compensation, And Theoretical Analysis Of Experimental Results. By Focusing On These Key Aspects, Conducted Electromagnetic Interference (emi) In Smart Grids Provides A Concise And Comprehensive Coverage Of An Extensive Subject Matter. It Constitutes A Key Resource For Any Industry Practitioners, Researchers Or System Designers With Interest In Smart Grids, Particularly Their Electromagnetic Compatibility In The Conducted Emi Frequency Range.
备用描述
Ben shu xiang xi di jiang shu le zhi neng dian wang zhong de chuan dao dian ci gan rao(Electromagnetic Interference, EMI)Wen ti. Zuo zhe tong guo hen duo shi yan he fang zhen, Shi du zhe geng jin yi bu di ren shi he li jie zhi neng dian wang zhong chuan dao dian ci gan rao de xing cheng ji li, Gan rao yuan, Ce liang fang fa, Ce liang fa gui yi ji zhei xie gan rao yuan de yi zhi ji shu, Bing jiang qi yong yu zi ji de she ji shi jian. Quan shu gong fen 7 zhang, Nei rong bao kuo zhi neng dian wang zhong de dian li dian zi jie kou, Chuan dao dian ci gan rao de biao zhun hua ce liang, Zhi neng dian wang zhong de chuan dao dian ci gan rao wen ti, Zhi neng dian wang zhong EMI te xing de gai bian, Dian li dian zi jie kou zhong gan rao yuan de bu chang, Zhi neng dian wang zhong de EMI ce liang cheng xu yi ji dui ben shu de zong jie
备用描述
科目
关键字
智能电网中的传导电磁干扰 1
前折页 2
书名页 3
版权页 4
译者序 5
致谢 6
引言 7
目录 18
第1章 智能电网中的电力电子接口 21
1.1 智能电网概述 21
1.2 智能电网中电力电子变换器的作用 23
1.3 作为传导EMI源的电力电子变换器 28
参考文献 34
第2章 传导电磁干扰的标准化测量 41
2.1 超外差式电磁干扰接收机 41
2.1.1 测量选择性 42
2.1.2 测量检波器 44
2.2 线路阻抗稳定网络 46
2.3 系统和设备的EMC法规要求 47
参考文献 50
第3章 智能电网中的传导电磁干扰问题 52
3.1 低压和中压电网中干扰的流动 52
3.2 电力电子变换器产生的干扰的叠加 61
3.2.1 一组具有确定和随机调制的变换器产生的传导EMI 61
3.2.2 叠加干扰基于Pearson随机游走的数学模型 73
3.3 智能电网中与电磁兼容有关的危害 80
参考文献 85
第4章 智能电网中EMI特性的改变 87
4.1 无源EMI滤波器 87
4.2 智能电网中好的工程实践 101
参考文献 103
第5章 电力电子接口中干扰源的补偿 105
5.1 逆变器的共模补偿器 105
5.2 多电平逆变器中的共模电压补偿 113
5.3 用于有源整流器的共模补偿器 127
5.4 四象限变频器中的共模电压补偿 134
5.5 用于DC/DC变换器的共模补偿器 139
参考文献 144
第6章 智能电网中的EMI测量程序 148
6.1 频域测量 148
6.2 时域测量 148
参考文献 149
第7章 结论 151
7.1 结果的总结 151
7.2 将来的研究工作 153
参考文献 154
附录 基本参数 155
术语 157
缩略语 161
后折页 163
绉戠洰 (as-gbk-encoding)
备用描述
As more renewable energy sources come on line, power distribution systems may be disrupted by the changes involved. This volume examines the electromagnetic interference accompanying the implementation of the 'smart grids' needed for greener electricity.
开源日期
2021-05-31
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