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Enhanced Effectiveness in the Appliance Scheduling and Energy Storage Control by utilizing the Particle Swarm Technique for a Nearly Zero Energy Building

机译:利用粒子群技术为几乎零能耗的建筑物提高设备调度和能量存储控制的效率

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This paper proposes an electric energy management system (EEMS) based on the particle swarm optimization (PSO) technique that can provide enhanced effectiveness in the appliance scheduling and energy storage control of a nearly zero energy building (nZEB). Specifically, the PSO online finds the optimal operating condition by properly time shifting the controllable loads of a nZEB and regulating the direction of the energy flow and the current of the electric energy storage system (EESS). Therefore, shaving of the consumption peaks of the household energy demand as well as improved exploitation of the energy storage capability and protection of the lifespan of the EESS are accomplished. The above both provide efficiency increase and enhancement of the stability and the seamless operation of the nZEB electric microgrid. The EESS consists of Li-ion batteries. The effectiveness of the proposed EEMS is evaluated by using a hardware-in-the-loop (HiL) simulator that consists of a microcontroller board of ST that houses the control software and the DS1104 controller board of dSPACE that accommodates the models of the renewable energy sources (RES), the EESS with Li-ion batteries and the electric loads of the nZEB. The developed HiL provides a comparable advantage that is the easy adaptation to any potential changes of the layout of the nZEB microgrid. In order to validate the feasibility and demonstrate the competitive advantages of the EEMS as well as the effectiveness of the developed HiL, several testing results are presented and discussed.
机译:本文提出了一种基于粒子群优化(PSO)技术的电能管理系统(EEMS),该系统可以在几乎为零的能源建筑物(nZEB)的设备调度和能量存储控制中提供增强的有效性。具体而言,PSO在线通过适当地时移nZEB的可控制负载并调节能量流的方向和电能存储系统(EESS)的电流来找到最佳的运行条件。因此,可以减少家庭能源需求的消耗高峰,并提高对储能能力的利用并保护EESS的寿命。以上两者均提高了效率,增强了nZEB电微网的稳定性和无缝运行。 EESS由锂离子电池组成。通过使用硬件在环(HiL)仿真器评估提议的EEMS的有效性,该仿真器由ST的微控制器板和dSPACE的DS1104控制器板组成,ST的微控制器板装有控制软件,而dSPACE的DS1104控制器板可容纳可再生能源的模型源(RES),带锂离子电池的EESS和nZEB的电负载。研发的HiL具有可比较的优势,即可以轻松适应nZEB微电网布局的任何潜在变化。为了验证可行性并证明EEMS的竞争优势以及开发的HiL的有效性,提出并讨论了一些测试结果。

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