Integrated approach for loss reduction in power system

Monika Manglani, S. Ola, M. Sharma, Bhavesh Vyas
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引用次数: 1

Abstract

Power system extends from generation to large distance load end, losses will be there in transmission & distribution section. This paper discusses the effect of capacitor placement, optimum voltage setting of generators, optimum dispatch of active power and SVC placement on power system losses and other technical parameters. IEEE 14 Bus system has been designed as test model in Mipower software. Separate case studies with individual and integrated applications are applied one after the other. Results have been organized for different case considerations. It is obtained that losses can be significantly reduced with optimum application and utilization of available loss reduction methods. The effect on network voltage profile, line loadings and bus angles has been compared with the base case. At the end integrated approach has been designed which is a combined model of applied loss reduction techniques on Test model. Comparison has also been obtained for 10 percent increased load of base condition.
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电力系统降低损耗的综合方法
电力系统从发电端延伸到远距离负荷端,输配电段必然存在损耗。讨论了电容器布置、发电机最佳电压整定、有功功率优化调度和SVC布置对电力系统损耗等技术参数的影响。在Mipower软件中设计了ieee14总线系统作为测试模型。一个接一个地应用具有单独和集成应用程序的单独案例研究。根据不同的情况对结果进行了整理。结果表明,优化应用和利用现有的减损方法可以显著降低损耗。并与基本情况比较了对网络电压分布、线路负荷和母线角度的影响。最后,设计了一种综合方法,即在测试模型上应用降损技术的组合模型。并对基础工况下负荷增加10%的情况进行了比较。
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