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Optimal operation of microgrid using hybrid differential evolution and harmony search algorithm

机译:混合微分进化与和谐搜索算法的微电网优化运行

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摘要

This paper proposes the generation scheduling approach for a microgrid comprised of conventional generators, wind energy generators, solar photovoltaic (PV) systems, battery storage, and electric vehicles. The electrical vehicles (EVs) play two different roles: as load demands during charging, and as storage units to supply energy to remaining load demands in the MG when they are plugged into the microgrid (MG). Wind and solar PV powers are intermittent in nature; hence by including the battery storage and EVs, the MG becomes more stable. Here, the total cost objective is minimized considering the cost of conventional generators, wind generators, solar PV systems and EVs. The proposed optimal scheduling problem is solved using the hybrid differential evolution and harmony search (hybrid DE-HS) algorithm including the wind energy generators and solar PV system along with the battery storage and EVs. Moreover, it requires the least investment.
机译:本文提出了一种微电网的发电调度方法,该电网包括常规发电机,风能发电机,太阳能光伏(PV)系统,电池存储和电动汽车。电动汽车(EV)扮演两个不同的角色:充电过程中的负载需求,以及当它们插入微电网(MG)时,作为向MG中剩余负载需求提供能量的存储单元。风能和太阳能光伏发电是间歇性的;因此,通过包括蓄电池和电动汽车,MG变得更加稳定。在这里,考虑到常规发电机,风力发电机,太阳能光伏系统和电动汽车的成本,总成本目标得以最小化。提出的最优调度问题通过使用混合差分进化与和谐搜索(混合DE-HS)算法解决,该算法包括风力发电机和太阳能光伏系统以及电池存储和电动汽车。而且,它需要最少的投资。

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