基于启发式优化算法的考虑电池/风能/光伏电源的DC/AC混合微电网能量调度

Q4 Engineering
J. Ebrahimi, T. Niknam, B. Bahmanifirouzi
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引用次数: 0

摘要

本文研究了含有混合电源的DC/AC微电网(MG)中的最优能量管理,以在成本最小化的情况下为负载供电。在这种混合电力网络中,能源以直流和交流的方式利用,其中独立系统运营商(ISO)应在它们之间提供实际的协调,以最佳地获得需求负载。本文提出了一个框架,即在具有完全约束的混合微电网中,所有可用资源都是用数学公式表示的,以及需求响应(DR)程序的实施。所考虑的网络可以在并网模式和自主模式下运行,以管理电力交换。还考虑了配备最大功率点跟踪器(MPPT)的光伏(PV)、风力涡轮机(WT)、储能系统(ESS)和DR程序的不确定性和间歇性,以实现最佳控制和运行。ESS能够连接直流和交流链路,并且充电状态(SOC)保持在允许范围内。所提出的DG控制框架和运行调度促进了使用动态规划方法的可再生能源能源管理。通过在IEEE 33总线配电网上验证的三种场景进行了24小时时间范围的模拟和讨论,以表明所提出的能源管理策略对保持整个混合电网稳定的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Scheduling in a Hybrid DC/AC Micro-Grid Considering Battery/Wind/Photovoltaic Power Sources using Heuristic Optimization Algorithm
This paper is treated with optimum energy management in a DC/AC Microgrid (MG) containing hybrid power sources to supply the load within cost minimization. In this hybrid electrical networks, energy sources are exploited as DC and AC manner, in which the Independent System Operator (ISO) should provide a practical coordination between them in order to procure the demand load optimally. This paper presents a framework that all available resources are formulated mathematically in hybrid microgrid with full constraints along with Demand Response (DR) programs implementation. The network under consideration can operate both in grid-tied and autonomous modes to manage power exchanging. Uncertainty and intermittent of Photovoltaic (PV) with Maximum Power Point Tracker (MPPT) equipped, Wind Turbine (WT), Energy Storage Systems (ESS) and DR programs are also considered to achieve the optimal control and operation. The ESSs are capable to connect both DC and AC links and the State of Charge (SOC) is maintained within permissible range. The proposed DG control framework and operation scheduling has facilitated the energy management of renewables using dynamic programing approach. A 24-hour time horizon simulation and discussion through three scenarios verified on a IEEE 33 bus distribution network, is done to represent the effectiveness of proposed energy management strategy to keep the whole hybrid grid stable.
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来源期刊
Majlesi Journal of Electrical Engineering
Majlesi Journal of Electrical Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.20
自引率
0.00%
发文量
9
期刊介绍: The scope of Majlesi Journal of Electrcial Engineering (MJEE) is ranging from mathematical foundation to practical engineering design in all areas of electrical engineering. The editorial board is international and original unpublished papers are welcome from throughout the world. The journal is devoted primarily to research papers, but very high quality survey and tutorial papers are also published. There is no publication charge for the authors.
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