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Improved RLS Algorithm for Voltage Regulation of Wind-Solar Rural Renewable Energy System

机译:风力 - 太阳能农村可再生能源系统电压调节RLS算法

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Dispersed rural renewable energy systems (RRESs) are often located near the end of long distribution feeders. The RRESs connected to weak distribution network, cause voltage regulation issue at its point of common intersection with local loads. The erratic nature of renewable sources like wind and solar, renders use of fixed-step line voltage regulators, impractical. Corrective voltage compensation for RRES, through an additional distribution static synchronous compensator (DSTATCOM) yields better performance, however, with increased cost. This paper deals with the operation of a wind-solar based RRES with integrated DSTATCOM capabilities. The grid side power converter control for RRES is configured to tackle voltage disturbances caused due to renewable power variations and unbalanced and/or non-sinusoidal load currents. An improved recursive least squares (IRLS) algorithm is utilized for estimation of reference grid currents. This control scheme for voltage regulation in RRES fed by a weak grid is validated through simulations in Matlab platform.
机译:分散的农村可再生能源系统(RRESS)通常位于长分配馈线的尽头。 RRES连接到弱分配网络,导致其与本地负载共同交叉点的电压调节问题。可再生能源如风和太阳能等不稳定性,使固定步进线电压稳压器的使用变得不切实际。 RRE的校正电压补偿,通过附加分布静态同步补偿器(DSTATCOM)产生更好的性能,而且增加了成本。本文涉及综合DSTATCOM能力的风力太阳能基于RRE的运行。用于RRE的电网侧功率转换器控制器被配置为在可再生功率变化和不平衡和/或非正弦载荷电流引起的电压干扰引起的。用于估计参考网格电流的改进的递归最小二乘(IRLS)算法。通过MATLAB平台中的模拟验证了通过MATLAB平台的模拟验证了通过MATLAB平台的模拟验证了该控制方案。

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