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Optimize globally, control locally: Coordinated optimal local voltage control in hybrid AC/DC microgrid

机译:全局优化,局部控制:混合AC / DC微电网中的协调最佳局部电压控制

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The increasing penetration of photovoltaic (PV) generation leads to voltage violations in hybrid AC/DC microgrids. Due to the uncertainty and volatility of PV outputs, fast-responding voltage control devices are obliged to coordinate with each other and regulate nodal voltages in real time. This paper follows the concept of optimizing globally and controlling locally to propose a combined central and local voltage control strategy based on a two-stage voltage control framework. In the first stage, minutely optimal power flow based on predicted PV outputs within one hour is performed in microgrid central controller (MGCC) to calculate voltage and optimal power settings for each controllable device. The uncertainty of PV is considered using chance constraint optimal power flow (CCOPF) method. In the second stage, according to minutely voltage and power settings, local controller (LC) generates improved voltage control curves based on curve fitting method. With minutely measurements of nodal voltages, power outputs of PVs, smart loads (SLs) energy storage systems (ESSs) and VSC are cooperated based on improved local control curves to minimize power losses without communication requirements. In order to coordinate the active and reactive power of SLs ESSs, and VSC, a combined P(V) and Q(V) curve is proposed. The piecewise linear curve fitting method is used to generate optimal voltage control curves due to its higher fitting accuracy compared with other fitting methods. Simulations are performed to verify the effectiveness of the proposed voltage control strategy in mitigating voltage rise problems and reducing power losses.
机译:光伏(PV)发电的渗透率不断提高,导致AC / DC混合微电网中的电压违规。由于光伏输出的不确定性和波动性,快速响应的电压控制设备必须相互协调并实时调节节点电压。本文遵循全局优化和局部控制的概念,提出了基于两阶段电压控制框架的中央和局部组合电压控制策略。在第一阶段,在微电网中央控制器(MGCC)中基于一个小时内的预测PV输出执行微小的最佳功率流,以计算每个可控设备的电压和最佳功率设置。使用机会约束最佳潮流(CCOPF)方法考虑PV的不确定性。在第二阶段,根据微小的电压和功率设置,本地控制器(LC)根据曲线拟合方法生成改进的电压控制曲线。通过精确测量节点电压,PV,智能负载(SLs)储能系统(ESSs)和VSC的功率输出基于改进的本地控制曲线进行了协作,以在没有通信要求的情况下将功率损耗降至最低。为了协调SLs ESS和VSC的有功功率和无功功率,提出了组合的P(V)和Q(V)曲线。由于分段线性曲线拟合方法与其他拟合方法相比具有较高的拟合精度,因此可用于生成最佳电压控制曲线。进行仿真以验证所提出的电压控制策略在缓解电压上升问题和减少功率损耗方面的有效性。

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