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A hierarchical two-stage energy management for a home microgrid using model predictive and real-time controllers

机译:使用模型预测和实时控制器的家庭微电网的分层两级能量管理

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This paper presents a hierarchical two-layer home energy management system to reduce daily household energy costs and maximize photovoltaic self-consumption. The upper layer comprises a model predictive controller which optimizes household energy usage using a mixed-integer linear programming optimization; the lower layer comprises a rule-based real-time controller, to determine the optimal power settings of the home battery storage system. The optimization process also includes load shifting and battery degradation costs. The upper layer determines the operating schedule for shiftable domestic appliances and the profile for energy storage for the next 24 h. This profile is then passed to the lower energy management layer, which compensates for the effects of forecast uncertainties and sample time resolution. The effectiveness of the proposed home energy management system is demonstrated by comparing its performance with a single-layer management system. For the same battery size, using the hierarchical two-layer home energy management system can achieve annual household energy payment reduction of 27.8% and photovoltaic self-consumption of 91.1% compared to using a single layer home energy management system. The results show the capability of the hierarchical home energy management system to reduce household utility bills and maximize photovoltaic self-consumption. Experimental studies on a laboratory-based house emulation rig demonstrate the feasibility of the proposed home energy management system.
机译:本文介绍了分层两层家庭能源管理系统,以减少日常家庭能源成本,最大化光伏自耗。上层包括模型预测控制器,该模型预测控制器使用混合整数线性编程优化优化家用能量使用;下层包括基于规则的实时控制器,以确定家用电池存储系统的最佳功率设置。优化过程还包括负载换档和电池劣化成本。上层确定可移动家用电器的操作时间表和未来24小时的能量存储轮廓。然后将该配置文件传递给较低的能量管理层,这补偿了预测不确定性和采样时间分辨率的影响。通过将其性能与单层管理系统进行比较来证明所提出的家庭能源管理系统的有效性。对于相同的电池尺寸,使用等级双层家用能源管理系统可实现27.8%,相比使用单层家庭能源管理系统的年度家庭能源支付27.8%,光伏自耗为91.1%。结果表明,等级归属能源管理系统的能力,以减少家用公用事业账单,最大化光伏自耗。基于实验室的房屋仿真钻机的实验研究证明了所提出的家庭能源管理系统的可行性。

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