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Economic Power Schedule and Transactive Energy through an Intelligent Centralized Energy Management System for a DC Residential Distribution System

机译:通过智能集中式能源管理系统为DC住宅配电系统分配经济功率和有功电能

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Direct current (DC) residential distribution systems (RDS) consisting of DC living homes will be a significant integral part of future green transmission. Meanwhile, the increasing number of distributed resources and intelligent devices will change the power flow between the main grid and the demand side. The utilization of distributed generation (DG) requires an economic operation, stability, and an environmentally friendly approach in the whole DC system. This paper not only presents an optimization schedule and transactive energy (TE) approach through a centralized energy management system (CEMS), but also a control approach to implement and ensure DG output voltages to various DC buses in a DC RDS. Based on data collection, prediction and a certain objectives, the expert system in a CEMS can work out the optimization schedule, after this, the voltage droop control for steady voltage is aligned with the command of the unit power schedule. In this work, a DC RDS is used as a case study to demonstrate the process, the RDS is associated with unit economic models, and a cost minimization objective is proposed that is to be achieved based on the real-time electrical price. The results show that the proposed framework and methods will help the targeted DC residential system to reduce the total cost and reach stability and efficiency.
机译:由直流居住房屋组成的直流(DC)住宅配电系统(RDS)将成为未来绿色传输的重要组成部分。同时,越来越多的分布式资源和智能设备将改变主电网和需求方之间的潮流。在整个直流系统中,分布式发电(DG)的使用要求经济运行,稳定且采用环保方法。本文不仅提出了通过集中式能源管理系统(CEMS)的优化计划和无功能源(TE)方法,而且还提出了一种控制方法来实现并确保DG向DC RDS中的各种DC总线输出电压。基于数据收集,预测和特定目标,CEMS中的专家系统可以制定出优化计划,然后,将稳定电压的电压下降控制与单位功率计划的命令对齐。在这项工作中,以DC RDS作为案例研究来演示该过程,RDS与单位经济模型相关联,并提出了基于实时电价要实现的成本最小化目标。结果表明,所提出的框架和方法将有助于目标DC住宅系统降低总成本并达到稳定性和效率。

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