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Utility Oriented Demand Side Management Using Smart AC and Micro DC Grid Cooperative

机译:使用智能交流和微型直流电网合作的面向公用事业的需求侧管理

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DC microgrid provides a viable and more efficient option to cater for DC loads in the building space and, in particular, data centers. This paper investigates the opportunities associated for utilities to optimize industrial demand response for smart AC and DC microgrid environment thus facilitating distribution utility to reduce peak energy on the existing AC distribution system. A load shifting demand side management (DSM) technique is used to shift AC industrial loads in response to time of day (TOD) tariff. Hence, an attempt has been made to study the impact of DSM strategies with optimal shifting of AC devices in the presence of DC microgrid. Simulations are carried out on a practical distribution system having large industrial loads but it has been assumed that the AC distribution system has DC microgrid with renewables and battery storage systems (BSSs). DSM results for AC distribution grid are compared and analyzed with differing DC microgrid set ups, for example with and without battery storage. It has been observed that the DSM strategy with DC microgrid in the presence of solar renewables and battery storage can substantially reduce average energy cost for demand to response and peak load burden on AC distribution utilities.
机译:直流微电网提供了一种可行且更有效的选择,可以满足建筑物空间(尤其是数据中心)中的直流负载。本文研究了公用事业相关的机会,以优化智能交流和直流微电网环境的工业需求响应,从而促进配电事业减少现有交流配电系统上的峰值能耗。负载转移需求侧管理(DSM)技术用于响应一天中的时间(TOD)费率转移AC工业负载。因此,已经尝试研究在存在直流微电网的情况下,采用交流设备的最佳移动对DSM策略的影响。在具有较大工业负载的实际配电系统上进行了仿真,但是已经假定交流配电系统具有带有可再生能源和电池存储系统(BSS)的直流微电网。对于交流配电网的DSM结果,使用不同的直流微电网设置进行比较和分析,例如有无电池存储。已经观察到,在存在太阳能可再生能源和电池存储的情况下,具有直流微电网的DSM策略可以显着降低响应所需的平均能源成本,并降低交流配电公司的峰值负荷。

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