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首页> 外文期刊>Journal of Energy Storage >Energy storage system utilisation to increase photovoltaic penetration in low voltage distribution feeders
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Energy storage system utilisation to increase photovoltaic penetration in low voltage distribution feeders

机译:利用能量存储系统来增加低压配电馈线中的光伏渗透

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This work introduces a new droop control for energy storage system (ESS) dispatch commands generation. The droop characteristic generates the ESS dispatch commands as a function of the power surplus at the substation transformer. The ESS with the new droop control aims to increase the level of Photovoltaic (PV) penetration in low voltage (LV) distribution networks, for the most economical solution in terms of ESS placement and sizing. The new droop control maintains two independent modes of operation; the first mode is fixed droop (FD) control, and the second mode is variable droop (VD) control. When FD control is employed, the droop characteristic remains invariable during hours of excessive PV generation, while the dispatch commands maintain the total of the grid parameters within the allowable range at all times. When VD control is" performed, the slope of the droop characteristic was modified hourly, providing a sound grid operation at all times, while the accuracy of the dispatch commands was enhanced compared to the FD control mode. For the research, a real-life LV network case study that maintains a loop arrangement was utilised for modelling purposes. The operational grid constraints include transmission lines loading, terminal voltage variation, and substation transformer loading. Simulation results revealed that both of the proposed control modes maintain a sound grid operation for 70% PV penetration. The VD control performed better resulting in a lower cost ESS. The study demonstrated that an ESS located in the LV network performed a number of positive functions, including load management, peak load levelling and voltage support.
机译:这项工作引入了一种用于能量存储系统(ESS)调度命令生成的新的下垂控制。下垂特性根据变电站变压器上的剩余功率生成ESS调度命令。具有新的下垂控制功能的ESS旨在提高低压(LV)配电网络中的光伏(PV)渗透水平,这是ESS放置和尺寸调整方面最经济的解决方案。新的下垂控制保持两种独立的操作模式;第一种模式是固定下垂(FD)控制,第二种模式是可变下垂(VD)控制。当采用FD控制时,在过多的PV产生的小时内,下垂特性保持不变,而调度命令始终将总电网参数保持在允许范围内。当执行“ VD控制”时,下垂特性的斜率每小时进行一次修改,始终提供良好的网格操作,而与FD控制模式相比,调度命令的准确性得到了提高。低压网络案例研究以维持回路布置为建模目的,电网运行的约束条件包括输电线路负荷,终端电压变化和变电站变压器负荷,仿真结果表明,所提出的两种控制模式均能保持70个电网的正常运行%PV渗透率VD控制性能更好,导致ESS成本更低研究表明,位于LV网络中的ESS具有许多积极功能,包括负载管理,峰值负载均衡和电压支持。

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