Optimal residential load scheduling under dynamic pricing and demand-side management

Muhammad Hussain, Yan Gao, Falak Shair, Sherehe Semba
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Abstract

Balancing electricity consumption and generation in the residential market is essential for power grids. The imbalance of power scheduling between energy supply and demand would definitely increase costs to both the energy provider and customer. This paper proposes a control function to normalize the peak cost and customer discomfort. In this work, we modify an optimization power scheduling scheme by using the inclined-block rate (IBR) and real-time price (RTP) technique to achieve a desired trade-off between electricity payment and consumer discomfort level. For discomfort, an average time delay between peak and off-peak is proposed to minimize waiting time. The simulation results present our model more practical and realistic with respect to the consumption constrained at peak hours.
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动态定价与需求侧管理下的最优住宅负荷调度
平衡住宅市场的用电量和发电量对电网至关重要。能源供需之间的电力调度不平衡必然会增加能源供应商和用户的成本。本文提出了一种控制函数来规范峰值成本和顾客不适。在这项工作中,我们利用倾斜块率(IBR)和实时价格(RTP)技术修改了一个优化的电力调度方案,以实现电力支付和消费者不适程度之间的理想权衡。对于不舒服的情况,提出高峰与非高峰之间的平均时间延迟,以减少等待时间。仿真结果表明,对于高峰时段的用电约束,该模型更为实用和真实。
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