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Efficient Energy-Management System Using A Hybrid Transactive-Model Predictive Control Mechanism for Prosumer-Centric Networked Microgrids

机译:高效的能量管理系统,使用混合透气模型预测控制机制,用于预测集中的微电网

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摘要

With the development of distributed energy resources (DERs) and advancements in technology, microgrids (MGs) appear primed to become an even more integral part of the future distribution grid. In order to transition to the smart grid of the future, MGs must be properly managed and controlled. This paper proposes a microgrid energy management system (MGEMS) based on a hybrid control algorithm that combines Transactive Control (TC) and Model Predictive Control (MPC) for an efficient management of DERs in prosumer-centric networked MGs. A locally installed home energy management system (HEMS) determines a charge schedule for the battery electric vehicle (BEV) and a charge−discharge schedule for the solar photovoltaic (PV) and battery energy storage system (BESS) to reduce residential customers’ operation cost and to improve their overall savings. The proposed networked MGEMS strategy was implemented in IEEE 33-bus test system and evaluated under different BEV and PV-BESS penetration scenarios to study the potential impact that large amounts of BEV and PV-BESS systems can have on the distribution system and how different pricing mechanisms can mitigate these impacts. Test results indicate that our proposed MGEMS strategy shows potential to reduce peak load and power losses as well as to enhance customers’ savings.
机译:随着分布式能源(分布式能源)和先进科技,微电网(MGS)的发展出现引成为未来配电网的更加不可或缺的一部分。为了过渡到未来的智能电网,必须的MG进行适当的管理和控制。此提出了一种基于混合动力控制算法微电网能量管理系统(MGEMS),结合有中介控制(TC)和模型预测控制(MPC),用于分布式能源的在专业消费者为中心的网络的MG的有效管理。本地安装的家庭能量管理系统(HEMS)确定用于电池电动车辆(BEV)和用于太阳能光伏(PV)和电池能量存储系统(BESS)的充放电计划的电荷日程以减少住宅客户的操作成本并提高他们的整体储蓄。所提出的联网MGEMS策略是在IEEE 33节点测试系统的实施,并且在不同的BEV和PV-BESS渗透的情况进行评估,研究可能产生的影响是大量的BEV和光伏储能系统可以有分配制度和定价如何不同机制可以减轻这些影响。测试结果表明,我们提出的MGEMS策略显示潜力,以减少高峰负荷和电源损耗,以及提高客户的储蓄。

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