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Optimal Power Control Strategy of a Hybrid Energy System Considering Demand Response Strategy and Customer Interruption Cost

机译:考虑需求响应策略和客户中断成本的混合能源系统的最优功率控制策略

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Background: The integration of distributed renewable energy sources into the conventional power system network has created opportunities for electricity customers to reduce their electricity cost. This paper investigates the optimal power scheduling of a hybrid energy system connected to the grid in the presence of demand response strategy and inconvenience cost. Methods: A new proposed method of calculating the inconvenience cost which is dependent on total home appliance load, Customer Interruption Cost (CIC) and delay time operation of home appliances is proposed. The hybrid energy system consists of solar photovoltaic (PV) module and battery bank storage system. The home appliance scheduling is formulated as a non-convex mixed integer programming with a binary decision variable to switch ON/OFF the home appliances. The optimization objective is to minimize both the total daily electricity cost and inconvenience cost of a residential customer with different time-shiftable, power shiftable home appliances and customer time preference constraints. Results: The results show that it is important to schedule home appliances and include their inconvenience cost so that home appliances are not only shifted to the lower electricity tariff periods but can also start at their customer preferred operation times. Conclusion: The results also show that the hybrid energy system is able to cater for all the energy requirements of home appliances during the day, reducing power demand from the grid by a significant percentage and thus, relieve the power system network and afford electricity consumers significant monetary savings.
机译:背景:分布式可再生能源集成到传统的电力系统网络中为电力客户提供了降低电力成本的机会。本文研究了在需求响应策略的存在和不便的成本中,对网格连接到网格的最佳功率调度。方法:提出了一种新的提出方法,计算依赖于家用电器总量的不便,客户中断成本(CIC)和家用电器的延迟时间运行。混合能量系统由太阳能光伏(PV)模块和电池组存储系统组成。家用电器调度被配制为具有二进制决策变量的非凸混合整数编程,以打开/关闭家用电器。优化目标是利用不同的可时移动,电力可移动家电和客户时偏好约束来最大限度地减少住宅每日电力成本和居住费用的不便。结果:结果表明,要安排家电并包括其不便的成本非常重要,以便家电不仅转移到较低的电力关税期间,还可以从其客户首选的操作时间开始。结论:结果还表明,混合能源系统能够满足当天家电的所有能源需求,从而减少了电网的功率需求,从而减轻了电力系统网络,并提供了电力消费者货币储蓄。

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