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Optimizing and testing of batteries for a smart grid

机译:优化和测试智能电网的电池

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This paper presents optimization and testing processes for the deployment of batteries in rural networks. The injection of real power in the single wire earth return (SWER) networks offers advantages of reduced voltage drop and increased loadability. This paper shows how the sizing and location of battery systems can be designed and how the battery system for control of voltage can be tested. The optimal size and location of batteries is found through discrete particle swarm optimization (DPSO). It is seen that each kVA of batteries increases loadability of SWER network by 2kVA. The testing of such a smart battery system has been accomplished through use of a real timer hardware-in-the-loop simulator (OPAL-RT) interfaced to the full battery system.
机译:本文介绍了农村网络中电池部署的优化和测试过程。在单线接地回路(SWER)网络中注入有功功率具有降低压降和增加负载能力的优势。本文展示了如何设计电池系统的尺寸和位置,以及如何测试用于控制电压的电池系统。电池的最佳尺寸和位置可通过离散粒子群优化(DPSO)找到。可以看出,每kVA电池将SWER网络的负载能力提高了2kVA。通过使用连接到完整电池系统的实时计时器硬件在环仿真器(OPAL-RT),可以完成对这种智能电池系统的测试。

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