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电力系统工程-第2版

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出版社:清华大学出版社出版时间:2009-12-01
开本: 32开 页数: 1074
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电力系统工程-第2版 版权信息

电力系统工程-第2版 本书特色

《电力系统工程(第2版)》:“书中的算例和练习题对帮助学生建立进而开发解决问题的分析程序非常有帮助。”《电力系统工程(第2版)》的写作风格在很多方面都非常出色:讲解清楚、语言流畅并且思路清晰等等。新增章节电压稳定地下电缆架空线路绝缘子输电线路机械设计中性点接地电晕高压直流输电配电系统新增附录电能质量,变电站等

电力系统工程-第2版 内容简介

本版电力系统工程较上版进行了广泛的修订,新增若干专题的介绍并更新了与*新技术发展相关的内容。此外,所有的专题都有多母线结构的例子进行说明。
突出特点
系统地解释现代电力系统运行、控制和分析相关的基本原理
详细介绍电力系统暂态、断路器和保护
给出多个系统研究的算法
附录给出matlab和simulink用于电力系统分析的仿真程序

电力系统工程-第2版 目录

preface to the second edition
preface to the first edition
1.introduction
2.inductance and resistadce of transmission lines
3.capacitance of transmission lines
4.representation of power system cmponets
5.characteristics and perfromance of power transmission lines
6.load flow studies
7.optimal system operation
8.automatic generation and voltage control
9.symmetrical foult analysis
10.symmetrical components
11.unsymmetrical fault analysis
12.power system stability
13.power system transients
14.circuit breakers
15.power system protection
16.underground cables
17.insulators for overhead lines
18.mechanical design of transmission lines
19.corona
20.high voltage dc(hvdc)transmission
21.distribution systems
22.voltage stability
multiple choice questions
answer to problems
index
展开全部

电力系统工程-第2版 节选

《电力系统工程(第2版)》内容简介:本版电力系统工程较上版进行了广泛的修订,新增若干专题的介绍并更新了与*新技术发展相关的内容。此外,所有的专题都有多母线结构的例子进行说明。突出特点:系统地解释现代电力系统运行、控制和分析相关的基本原理。详细介绍电力系统暂态、断路器和保护。给出多个系统研究的算法。附录给出MATLAB和SIMULINK用于电力系统分析的仿真程序。

电力系统工程-第2版 相关资料

插图:Intensification of Efforts to Develop Alternative Sources of Energy Including Unconventional Sources like Solar, Tidal Energy, etc.Distant hopes are pitched on fusion energy but the scientific and technological advances have a long way to go in this regard. Fusion when harnessed could provide an inexhaustible source of energy. A break-through in the conversion from solar to electric energy could provide another answer to the world's steeply rising energy needs.Recycling of Nuclear WastesFast breeder reactor technology is expected to provide the answer for extending nuclear energy resources to last much longer.Development and Application of Antipollution TechnologiesIn this regard, the developing countries already have the example of the developed countries whereby they can avoid going through the phases of intense pollution in their programmes of energy development. Bulk power generating stations are more easily amenable to control of pollution since centralized one-point measures can be adopted.Electric energy today constitutes about 30% of the total annual energy consumption on a worldwide basis. This figure is expected to rise as oil supply for industrial uses becomes more stringent. Transportation can be expected to go electric in a big way in the long run, when non-conventional energy resources are well developed or a breakthrough in fusion is achieved. To understand some of the problems that the power industry faces let us briefly review some of the characteristic features of generation and transmis- sion. Electricity, unlike water and gas, cannot be stored economically (except in very small quantities——in batteries), and the electric utility can exercise little control over the load (power demand) at any time. The power system must, therefore, be capable of matching the output from generators to the demand at any time at a specified voltage and frequency

电力系统工程-第2版 作者简介

D P Kothari is Professor, Centre for Energy Studies,Indian Institute of Technology, Delhi. He hasbeen Head of the Centre for Energy Studies(1995-97) and Principal (1997-98) VisvesvarayaRegional Engineering College, Nagpur. He has been Director-incharge, liT Delhi (2005), Deputy Director (Admn.) (2003-2006). Earlier (1982-83 and 1989), he was a visiting fellow at RMIT,Melbourne, Australia. He obtained his BE, ME and Ph.D degrees from BITS, Pilani. A fellow of the Institution of Engineers (India), fellow of National Academy of Engineering,fellow of National Academy of Sciences, Senior Member IEEE, Member IEE,Life Member ISTE, Professor Kothari has published/presented around 500papers in national and international journals/conferences. He has authored/co-authored more than 18 books, including Power System Optimization, ModernPower System Analysis, Electric Machines, Power System Transients, Theoryand Problems of Electric Machines and Basic Electrical Engineering. Hisresearch interests include power system control, optimization, reliability andenergy conservation. He has received the National Khosla award for LifetimeAchievements in Engineering for 2005 from liT Roorkee.

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