基于STEM策略和RPFC技术的AC-DC/DC-DC混合多端口智能控制器的性能评估与控制分析

C. Nagarajan, B. Tharani, S. Saravanan, R. Prakash
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引用次数: 3

摘要

控制系统将测量可再生能源发电功率,如果发电功率等于电网功率,则发电源直接连接到负载系统。当发电不处于持续水平时,控制器将使用DC-DC转换器和基于电池的能量管理系统对电源进行优化。电池系统的运行取决于可再生能源的发电可用性。在大功率RES期间,电池处于充电状态。当RES为低功率时,表示电池处于放电状态。此外,当电池电量较低时,也会进行基于燃料电池的能量补偿。能源路由器将根据每个发电厂的阈值监控上述所有发电厂,实质性的转型能源管理(STEM)策略和弹性潮流控制(RPFC)控制器将采取必要的行动,例如哪个发电厂连接到电网电力系统。在Mat lab / Simulink仿真平台上进行了仿真,结果表明了该控制策略对微网互联和柔性能流对应的有效性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Estimation and Control Analysis of AC-DC/DC-DC Hybrid Multi-Port Intelligent Controllers Based Power Flow Optimizing Using STEM Strategy and RPFC Technique
The control system will measure the renewable energy generation power, and if the generated power is equal to the grid power, the generation sources are directly connected to the load system. When the power generation is not at sustaining level, the controller will optimize the source using the DC-DC converter and Battery based Energy management system. The operation of the battery system depends upon the power generation availability of renewable energy resources. During the high power RES, the battery is charging condition. When the RES is low power means the battery is in discharged condition. Also, the fuel cell-based energy compensation will take place when the battery power is low. The Energy router will monitor all the above generation plants based on the threshold values of each power plant, substantial Transformative Energy Management (STEM) Strategy and Resilient Power Flow Control (RPFC) controller takes necessary action like which power plant is connected to the grid power system. The simulation is performed on Mat lab / Simulink simulation platforms, and the results show the effectiveness and reliability of the control strategy for micro-grid interconnection and flexible energy flow correspondence.
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