Optimal Placement and Sizing of Distributed Generator in Meshed Distribution System

Hafiz Waleed Ahmad, Qais Ali, Syed Ali Abbas Kazmi
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引用次数: 1

Abstract

Voltage stability and reliability is the major concern in radial distribution system (RDS). Customer far away from the substation faces voltage reliability and system fluctuation issues. These issues should be resolved through different methodologies under smart grid paradigm. Studies proved that loop and mesh distribution systems (MDS) show better voltage reliability and stability than RDS. A comparative study of different load models is done in terms of losses, voltage profile and cost of active power losses in both radial and mesh distribution system. Two different multiple-criteria decision analysis (MCDA) techniques PROMETHEE and Weighted product model (WPM) are used to identifying the best decision by considering active power loss, voltage and cost of active power cost attributes. A distinctive voltage stability index (VSI) is used to find the critical bus which is highly sensitive to voltage collapse. The bus having lowest VSI value is the most critical bus which is optimal location for siting the distributed generation unit (DG). VSI is evaluated for both radial and mesh distribution network. Different load models; constant power (CP) and constant impedance (CZ) models are used in this paper. The impacts of CZ and CP load models have been observed on voltage profiles and system losses on IEEE 33 bus system.
网状配电系统中分布式发电机的优化配置与尺寸
电压的稳定性和可靠性是径向配电系统的主要问题。远离变电站的用户面临电压可靠性和系统波动问题。这些问题需要在智能电网模式下通过不同的方法来解决。研究表明,环网配电网具有较好的电压可靠性和稳定性。对径向配电网和网状配电网中不同负荷模型的损耗、电压分布和有功损耗成本进行了比较研究。采用PROMETHEE和加权产品模型(WPM)两种不同的多准则决策分析(MCDA)技术,综合考虑有功损耗、电压和有功成本等属性,确定最佳决策。采用独特电压稳定指数(VSI)来寻找对电压崩溃高度敏感的临界母线。VSI值最低的母线是最关键的母线,是分布式发电机组的最佳选址。对径向配电网和网状配电网的VSI进行了计算。不同负荷模式;本文采用恒功率(CP)和恒阻抗(CZ)模型。研究了CZ和CP负载模型对IEEE 33总线系统电压分布和系统损耗的影响。
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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