Numerical Simulation of Optimized Placement of Distibuted Generators in Standard Radial Distribution System Using Improved Computations

Puneet Sharma, Pawan Kumar Tiwari
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引用次数: 6

Abstract

The need for energy globally has increased recently. Additionally, the idea of distributed generation is propelled by the absence of suitable transmission capacity, exaggerated transmission and distribution disasters, and the release of power advertising. Numerous benefits of distributed generation (DG) include a decrease in energy loss during force transfer and a reduction in the length and width of electrical cables. By lowering power quality and other problems, the use of the DGs with the current force distribution arrangements may enhance the intensity standard. The impacts of distributed generators (DGs) are discussed in this article in relation to various operating situations and the voltage measurement output of the regulator, which is typically accessible in grid interface. The investigation's goals are to locate the best DG connection point in the DS, reduce the power and voltage profile, and improve compliance with the power efficiency limitations. The procedure has been simulated in the MATLAB Simulink system using the Institute of Electricity's test system (IEEE), and the results are displayed using numerical simulation. As a result, the system voltage profile was improved.
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基于改进计算的标准径向配电系统中分布式发电机优化布置的数值模拟
最近,全球对能源的需求有所增加。此外,由于缺乏合适的输电能力,输电和配电灾害被夸大,以及电力广告的释放,推动了分布式发电的想法。分布式发电(DG)的许多好处包括减少力传递过程中的能量损失,减少电缆的长度和宽度。通过降低电能质量和其他问题,在目前的力分配安排下使用DGs可以提高强度标准。本文讨论了分布式发电机(dg)对各种运行情况和稳压器电压测量输出的影响,这通常是在电网接口上可访问的。调查的目标是在DS中找到最佳的DG连接点,减少功率和电压分布,并提高对功率效率限制的遵从性。利用IEEE的测试系统,在MATLAB Simulink系统中对该过程进行了仿真,并通过数值仿真的方式对结果进行了显示。结果表明,系统电压分布得到了改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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