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首页> 外文期刊>Electric Power Components and Systems >Energy Management System for Smart Hybrid AC/DC Microgrids in Remote Communities
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Energy Management System for Smart Hybrid AC/DC Microgrids in Remote Communities

机译:远程社区中智能混合AC / DC微电网的能源管理系统

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摘要

This article proposes a new energy management system (EMS) for hybrid AC/DC microgrids (MGs) in remote communities. The major goal of the proposed EMS is to minimize the daily operational costs while supplying sufficient clean water to the remote community, meeting customers' preferences, and maintaining the technical operational limits of the MG. To achieve this goal, the proposed EMS performs real-time supervisory control on all local controllers of all system assets in both generation and demand sides. On the generation side, distributed renewable and nonrenewable generation units are integrated into the system. Renewable sources of energy are controlled through a maximum power point tracking algorithm for increased efficiency, while nonrenewable DG units are controlled through droop parameters to satisfy the demand. On the demand side, optimal operational schedules for residential appliances and water desalination units are developed to satisfy customers' requirements and achieve minimum operating costs. Moreover, the EMS controls the AC/DC interlinking converters (ICs) allowing bidirectional flow of power to and from both AC and DC sections of the MG. For practical real-time operation, the proposed EMS utilizes an adaptive rolling-time horizon when responding to changes/disturbances in the system or in user inputs. The assets scheduling problem is modeled as a mixed integer nonlinear programing. Simulation studies were conducted on a hybrid AC/ DC MG to demonstrate the effectiveness of the proposed microgrid EMS.
机译:本文提出了一种针对偏远社区的混合AC / DC微电网(MG)的新能源管理系统(EMS)。提议的EMS的主要目标是最大程度地降低日常运营成本,同时为偏远社区提供足够的清洁水,满足客户的喜好,并保持MG的技术运行限制。为了实现此目标,建议的EMS对发电和需求端的所有系统资产的所有本地控制器执行实时监督控制。在发电方面,分布式可再生和不可再生发电机组已集成到系统中。可再生能源通过最大功率点跟踪算法进行控制以提高效率,而不可再生DG机组则通过下垂参数进行控制以满足需求。在需求方面,制定了家用电器和海水淡化装置的最佳运行时间表,以满足客户的需求并实现最低的运行成本。此外,EMS控制AC / DC互连转换器(IC),从而允许双向电源往返MG的AC和DC部分。对于实际的实时操作,建议的EMS在响应系统或用户输入中的更改/干扰时会利用自适应滚动时间范围。资产调度问题被建模为混合整数非线性规划。在混合AC / DC MG上进行了仿真研究,以证明所提出的微电网EMS的有效性。

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