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Voltage-load sensitivity matrix based demand response for voltage control in high solar penetration distribution feeders

机译:基于电压负荷灵敏度矩阵的高太阳能渗透分配馈线电压控制的需求响应

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This paper presents a voltage-load sensitivity matrix (VLSM) based voltage control method to deploy demand response resources for controlling voltage in high solar penetration distribution feeders. The IEEE 123-bus system in OpenDSS is used for testing the performance of the preliminary VLSM-based voltage control approach. A load disaggregation process is applied to disaggregate the total load profile at the feeder head to each load nodes along the feeder so that loads are modeled at residential house level. Measured solar generation profiles are used in the simulation to model the impact of solar power on distribution feeder voltage profiles. Different case studies involving various PV penetration levels and installation locations have been performed. Simulation results show that the VLSM algorithm performance meets the voltage control requirements and is an effective voltage control strategy.
机译:本文介绍了一种基于电压负荷灵敏度矩阵(VLSM)的电压控制方法,用于部署用于控制高太阳能穿透分配馈线的电压的需求响应资源。 OEEEE 123总线系统用于测试初步VLSM的电压控制方法的性能。施加负载分解过程以将进料头处的总负载轮廓分解给沿馈线的每个负载节点分解,以便在住宅房屋级别进行载荷。测量的太阳能发电轮廓用于模拟以模拟太阳能对分配馈线电压型材的影响。已经进行了涉及各种PV渗透水平和安装位置的不同案例研究。仿真结果表明,VLSM算法性能符合电压控制要求,是有效的电压控制策略。

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