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Priority-Based Residential Energy Management With Collaborative Edge and Cloud Computing

机译:基于优先的住宅能源管理,具有协作边缘和云计算

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摘要

Residential energy management (REM) is an important way to encourage users to reduce or shift energy demand with dynamic pricing. It could significantly affect the supply-demand relationship between electricity service providers (ESPs) and users, reduce energy cost and consumption, and contribute to sustainable development. To improve latency and processing performance, a three-tier edge-cloud collaborative REM (ECCREM) architecture is presented. In consideration of matching the architecture, a two-stage energy management mechanism is proposed with system reliability and resource utilization requirements taken into account. At the first stage, the interaction between real-time pricing and energy demand is modeled by a Stackelberg and Lyapunov-based pricing and energy demand joint optimization (SLPEDO) algorithm. At the second stage, two procedures, i.e., energy scheduling between a cloud tier and an access tier, and energy scheduling between an access tier and an infrastructure tier, are implemented. A priority-based demand ratio sequentially scheduling strategy is proposed to address energy scheduling in these two procedures, respectively. Simulation results show that compared with the existing demand ratio-based scheduling and equally scheduling strategies, the proposed strategy can improve overall satisfaction of users by up to 20%. In addition, energy cost can be reduced and demand fluctuation relieved.
机译:住宅能源管理(REM)是鼓励用户通过动态定价减少或移动能源需求的重要途径。它可能会显着影响电力服务提供商(ESP)和用户之间的供需关系,降低能源成本和消费,并有助于可持续发展。为了提高延迟和处理性能,提出了一个三层边缘云协作REM(ECCREM)架构。考虑到匹配架构,提出了一种具有系统可靠性和资源利用要求的两级能源管理机制。在第一阶段,实时定价与能源需求之间的相互作用是由Stackelberg和基于Lyapunov的定价和能量需求联合优化(SLPEDO)算法的建模。在第二阶段,实现了两个过程,即云层和访问层之间的能量调度,以及访问层和基础设施层之间的能量调度。提出了基于优先的需求比顺序调度策略分别在这两个程序中解决了能量调度。仿真结果表明,与现有的基于需求比的调度和同等调度策略相比,该策略可以提高用户总体满意度高达20%。此外,能量成本可以减少和需求波动缓解。

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