A Novel Teamwork Optimization Algorithm for Simultaneous Optimal Placement and Sizing of Biomass DGs and DSTATCOMs Considering Voltage Dependent Load Models

S. Dash, A. Sahoo, Shruti Ray, Tamanna Samantaray, N. Nayak
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引用次数: 0

Abstract

This manuscript presents a novel teamwork optimization algorithm based simultaneous allocation of active devices (biomass DGs and DSTATCOMs) for three different voltage dependent loading scenarios namely constant power, constant current, and constant impedance in power distribution network. Both the placements and sizes of these active devices are optimized concurrently for different numbers of devices in a multi-objective framework that includes real power loss reduction, reactive power loss reduction, voltage deviation reduction, and voltage stability index enhancement. The proposed technique has been successfully validated on a standard 33 bus distribution network, and simulation results show that the performance of the power distribution network improves significantly in the presence of optimally allocated biomass DGs and DSTATCOMs for the studied loading scenarios.
考虑电压相关负载模型的生物质dg和dstatcom同时优化布局和尺寸的新型团队优化算法
本文提出了一种基于群控优化算法的新型有源设备(生物质dg和DSTATCOMs)在配电网中恒功率、恒电流和恒阻抗三种不同电压负载情况下的同步分配。在一个多目标框架中,这些有源器件的放置和尺寸同时针对不同数量的器件进行优化,包括减少实际功率损耗、减少无功功率损耗、减少电压偏差和增强电压稳定指数。该技术已在标准33总线配电网上成功验证,仿真结果表明,在所研究的负载场景下,优化分配生物质dg和dstatcom后,配电网的性能显著提高。
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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