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A Decentralized Control Method for Distributed Generations in an Islanded DC Microgrid Considering Voltage Drop Compensation and Durable State of Charge

机译:考虑压降补偿和持久充电状态的孤岛直流微电网中分布式发电的分散控制方法

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This paper presents a decentralized control method for distributed generations (DGs) in an islanded direct current (DC) microgrid. In most typical DC microgrids, a decentralized control method is based on a voltage droop control method. However, the grid voltage differs from node to node due to line voltage drop, and hence the power sharing ratio among DGs cannot be matched with as desired value. Especially in an islanded DC microgrid including an energy storage system as a voltage source, it is difficult for DGs to maintain the charge state of the ESS in a decentralized way. To overcome this problem, state of charge ( SOC )-voltage droop control is applied to the ESS. By using the proposed droop method, the SOC information can be assigned to the grid voltage, and hence the other DGs are able to support the SOC in a decentralized way. For DGs to enhance the accuracy of the SOC estimation, voltage drop is compensated for based on forecasting data and line impedance data. The simulation is modeled and implemented using Power System Computer Aided Design/Electromagnetic Transients for DC (PSCAD/EMTDC, version 4.2, Winnipeg, Manitoba, Canada) and the simulation results show that the capability to maintain SOC as well as the system voltage profile are improved by using the proposed method.
机译:本文提出了一种在孤岛直流(DC)微电网中的分布式发电(DG)的分散控制方法。在大多数典型的直流微电网中,分散控制方法是基于电压降控制方法的。然而,由于线电压下降,节点之间的电网电压不同,因此DG之间的功率分配比不能与期望值匹配。特别是在包括能量存储系统作为电压源的孤岛式直流微电网中,DG难以以分散的方式维持ESS的充电状态。为了克服此问题,将充电状态(SOC)-电压下降控制应用于ESS。通过使用提出的下垂方法,可以将SOC信息分配给电网电压,因此其他DG可以以分散的方式支持SOC。为了使DG提高SOC估算的准确性,可基于预测数据和线路阻抗数据来补偿电压降。使用DC的电力系统计算机辅助设计/电磁瞬变(PSCAD / EMTDC,版本4.2,温尼伯,加拿大曼尼托巴,加拿大)对仿真进行建模和实施,仿真结果表明,保持SOC的能力以及系统电压曲线为通过使用建议的方法进行了改进。

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