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Techno-environmental impact analysis of optimally incorporated DSTATCOM and DG using modified shuffled frog leaping algorithm

机译:使用改进的混洗蛙跳跃算法的最佳掺入的DSTATCOM和DG的技术环境影响分析

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In this study, a modified shuffled frog leaping algorithm (MSFLA) is formulated for the optimal placement of distributed static compensator (DSTATCOM) and distributed generation (DG) in a 33-bus distribution network (DN) with an aim to reduce line losses, improve system voltage, and decrease the environmental pollution. Voltage stability index (VSI) is applied to determine the weaker zones of the DN and considering that zones only, the optimal placement is performed. Innovative indexes are developed to measure the techno-environmental impact of these devices. In the modified version of SFLA (MSFLA), new frog leaping rules are formulated to improve the convergence characteristics of standard SFLA. The proposed MSFLA is conducted for the optimal placement of these devices at different load levels and the techno-environmental performances are accomplished to identify the most suitable device for DN. The proposed algorithm is also compared with the other algorithms to show its effectiveness.
机译:在这项研究中,配制了修改的洗机青蛙跨越算法(MSFLA),用于在33总线分配网络(DN)中的分布式静态补偿器(DSTATCOM)和分布式发电(DG)的最佳放置,其目的是降低线路损耗,提高系统电压,降低环境污染。施加电压稳定性索引(VSI)以确定DN的较弱区域,并考虑仅执行该区域,执行最佳放置。开发了创新指标,以衡量这些设备的技术影响。在SFLA(MSFLA)的修改版本中,配制了新的青蛙跳跃规则,以改善标准SFLA的收敛特性。所提出的MSFLA是为了在不同负载水平下最佳地放置这些装置,并且完成了技术性能以识别DN最合适的装置。该算法也与其他算法进行了比较以显示其有效性。

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