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Coordinated V-f and P-Q Control of Solar Photovoltaic Generators With MPPT and Battery Storage in Microgrids

机译:具有MPPT和微电网中电池存储功能的太阳能光伏发电机的V-f和P-Q协调控制

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摘要

The microgrid concept allows small distributed energy resources (DERs) to act in a coordinated manner to provide a necessary amount of active power and ancillary service when required. This paper proposes an approach of coordinated and integrated control of solar PV generators with the maximum power point tracking (MPPT) control and battery storage control to provide voltage and frequency (V-f) support to an islanded microgrid. Also, active and nonactive/reactive power (P-Q) control with solar PV, MPPT and battery storage is proposed for the grid connected mode. The control strategies show effective coordination between inverter V-f (or P-Q) control, MPPT control, and energy storage charging and discharging control. The paper also shows an effective coordination among participating microresources while considering the case of changing irradiance and battery state of charge (SOC) constraint. The simulation studies are carried out with the IEEE 13-bus feeder test system in grid connected and islanded microgrid modes. The results clearly verify the effectiveness of proposed control methods. The simulations are carried out in Matlab and Simpowersystems.
机译:微电网概念允许小型分布式能源(DER)以协调的方式起作用,以在需要时提供必要量的有功功率和辅助服务。本文提出了一种具有最大功率点跟踪(MPPT)控制和电池存储控制的太阳能光伏发电机协调和集成控制方法,以为孤岛微电网提供电压和频率(V-f)支持。此外,对于并网模式,提出了利用太阳能PV,MPPT和电池存储的有功和无功/无功功率(P-Q)控制。控制策略显示了逆变器V-f(或P-Q)控制,MPPT控制以及储能充放电控制之间的有效协调。本文还展示了参与的微资源之间的有效协调,同时考虑了辐照度变化和电池充电状态(SOC)约束的情况。仿真研究是使用IEEE 13总线馈线测试系统在并网和孤岛微网模式下进行的。结果清楚地证明了所提出的控制方法的有效性。仿真在Matlab和Simpowersystems中进行。

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