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首页> 外文期刊>Journal of The Institution of Engineers (India): Series B >Analysis of Mesh Distribution Systems Considering Load Models and Load Growth Impact with Loops on System Performance
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Analysis of Mesh Distribution Systems Considering Load Models and Load Growth Impact with Loops on System Performance

机译:考虑负载模型和带环负载增长对系统性能的影响的网格分布系统分析

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The distribution system is the final link between bulk power system and consumer end. A distinctive load flow solution method is used for analysis of the load flow of radial and weakly meshed network based on Kirchhoff's Current Law (KCL) and KVL. This method has excellent convergence characteristics for both radial as well as weakly meshed structure and is based on bus injection to branch current and branch-current to bus-voltage matrix. The main contribution of the paper is: (ⅰ) an analysis has been carried out for a weekly mesh network considering number of loops addition and its impact on the losses, kW and kVAr requirements from a system, and voltage profile, (ⅱ) different load models, realistic ZIP load model and load growth impact on losses, voltage profile, kVA and kVAr requirements, (ⅲ) impact of addition of loops on losses, voltage profile, kVA and kVAr requirements from substation, and (ⅳ) comparison of system performance with radial distribution system. Voltage stability is a major concern in planning and operation of power systems. This paper also includes identifying the closeness critical bus which is the most sensitive to the voltage collapse in radial distribution networks. Node having minimum value of voltage stability index is the most sensitive node. Voltage stability index values are computed for meshed network with number of loops added in the system. The results have been obtained for IEEE 33 and 69 bus test system. The results have also been obtained for radial distribution system for comparison.
机译:配电系统是散装电源系统和用户端之间的最终链接。基于基尔霍夫电流定律(KCL)和KVL,一种独特的潮流解决方案方法用于分析径向和弱网格网络的潮流。该方法对于径向结构和弱网格结构都具有出色的收敛特性,并且基于母线注入支路电流和支路电流母线电压矩阵。该论文的主要贡献是:(ⅰ)对每周的网状网络进行了分析,其中考虑了添加回路的数量及其对损耗,系统的kW和kVAr要求以及电压曲线的影响,(ⅱ)不同负载模型,实际的ZIP负载模型和负载增长对损耗,电压曲线,kVA和kVAr要求的影响;(ⅲ)添加回路对损耗,电压曲线,变电站的kVA和kVAr要求的影响;以及(ⅳ)系统比较径向分配系统的性能。电压稳定性是电力系统规划和运行中的主要问题。本文还包括确定对径向分布网络中的电压崩溃最敏感的接近性关键总线。电压稳定性指标的最小值的节点是最敏感的节点。为网状网络计算电压稳定性指标值,并在系统中添加回路数。已经针对IEEE 33和69总线测试系统获得了结果。还获得了径向分布系统的结果以进行比较。

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