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Volt/var/THD control in distribution networks considering reactive power capability of solar energy conversion

机译:考虑太阳能转换的无功功率的配电网电压/无功/ THD控制

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摘要

Voltage and reactive power (volt/var) control have been widely employed to reduce power losses and satisfy the main distribution system operational constraints. In the proposed volt/var/THD control the reactive power capability from PV solar is considered as additional control variable in presence of non-linear loads. So, the limitations on deliverable power for each operation point affect inverter reactive power scheduling. Therefore, the main aim is to find proper dispatch schedules for the substation capacitors (SCs), along feeder capacitors (FCs), on-load tap changer (OLTC) tap positions, and photovoltaic systems (PVs) inverter reactive power considering power quality constraints. In order to reduce effect of uncertainty in the forecast plan and to reduce switching operations for OLTC, a new load and generation time-interval division (over 24-h period) is introduced based on both load curve and solar power output curve. Optimization problem is formulated for minimizing fuzzy membership functions values based on a multi-objective genetic algorithm solution method. For improving the search ability by multi-objective approach a method which guarantees the suppression of maximum allowable daily SCs switching and effectively corrects the convergence process is utilized. For more practical application of the proposed method, simulation is carried out in the large distorted distribution system with a number of non-linear loads and solar energy generation system.
机译:电压和无功功率(volt / var)控制已被广泛采用,以减少功率损耗并满足主要配电系统的运行限制。在提出的volt / var / THD控制中,在存在非线性负载的情况下,PV太阳能的无功功率能力被视为附加控制变量。因此,每个操作点可输出功率的限制会影响逆变器的无功功率调度。因此,主要目的是在考虑电能质量约束的情况下,为变电站电容器(SC),馈电电容器(FC),有载分接开关(OLTC)的分接位置以及光伏系统(PVs)逆变器无功功率找到合适的调度时间表。为了减少预测计划中不确定性的影响并减少OLTC的开关操作,基于负荷曲线和太阳能输出曲线引入了新的负荷和发电时间间隔划分(超过24小时)。提出了基于多目标遗传算法求解方法的最小化模糊隶属函数值的优化问题。为了通过多目标方法提高搜索能力,采用了一种方法,该方法可以确保抑制最大允许的每日SC切换,并有效地校正收敛过程。为了使该方法更实际地应用,在具有大量非线性负载的大型畸变配电系统和太阳能发电系统中进行了仿真。

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