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Estimation of Dynamic Compensation for Renewable-Based Hybrid DG in Radial Distribution System Using Least Error Iterative Method

机译:使用最低次数迭代方法估算可再生式混合DG动态补偿的动态补偿

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In this paper, wind diesel-based hybrid electrical system is proposed as distributed generator (DG) for radial distribution system (RDS). Since renewable-based DGs and especially wind operated electric generating system requires reactive power for its excitation along with the reactive power demand for maintaining the voltage profile at all buses in RDS, a fast and adequate dynamic compensation is required along with DG. The main contribution of this paper is to optimize the amount of reactive power supplied by dynamic compensator using new proposed approach of least error voltage constraint iterative approach. The paper is starting with the selection procedure of most sensitive bus satisfying three voltage stability indices fast voltage security index, line quality factor and voltage stability index followed by the selection of DG optimal size using optimization approach with multiconstraints all together, namely total real and reactive power loss, voltage limits voltage stability indices and voltage stability indices. The result shows how the dynamic compensator can maintain voltage level by releasing additional reactive power with the adjustment of firing angle for different levels for multidynamic load changes.
机译:在本文中,提出了一种基于风柴油的混合电气系统作为径向分布系统(RDS)的分布发电机(DG)。由于基于可再生的DGS和尤其是风力操作的发电系统,因此需要激励电动功率以及对RDS中所有总线的电压曲线的无功功率需求,并且需要快速和充分的动态补偿以及DG。本文的主要贡献是利用最低误差电压约束迭代方法的新提出方法优化动态补偿器提供的无功功率的量。本文从最敏感总线的选择过程开始,满足三个电压稳定指数的快速电压安全指标,线路质量因数和电压稳定性指数,然后使用优化方法选择DG最佳尺寸,包括多数组,即总实际和反应功率损耗,电压限制电压稳定性指标和电压稳定性指标。结果显示了动态补偿器如何通过针对多动负载变化的不同级别的触发角度释放额外的无功功率来维持电压电平。

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