基于弹性潮流控制(RPFC)技术的混合多端口AC-DC/DC-DC嵌入式能量流优化性能分析

C. Nagarajan, B. Tharani, S. Saravanan, M. Muruganandam
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引用次数: 2

摘要

近几十年来,可再生能源的利用已被证明具有更普遍的可靠和清洁的生命力,并具有实现高效和可再生能源发电的具体最终目标。该系统改善了微电网与主电网之间的能量稳定流动。本文采用弹性潮流控制系统对各可再生能源发电进行监测和控制,并对电网系统的能量流变化进行了分析和描述。这一工作证明了能量路由器在优化电网系统高效、灵活的能量稳定方式中的作用。该分析模型建立了整个系统,包括电源路由器、互联微电路和主电网。通过功率路由器实现的各种控制器对互联微电路进行了分析,并制定了相应的控制策略。实验结果表明,该控制策略对微网互联和灵活的能量流对应是有效和可靠的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of Hybrid Multi-Port AC-DC/DC-DC Embedded Based Energy Flow Optimizing Using Resilient Power Flow Control (RPFC) Technique
In recent decades, the utilization of renewable power sources has proven to be a reliable and clean vitality more universal, and with specific ultimate goals to achieve efficient and renewable energy power generation. The proposed system is improve the stabilize energy flow between micro grids and the main grid. The power generation of the each and every renewable sources are monitored and controlled by the proposed Resilient Power Flow Control (RPFC) system and also the energy flow variation of the grid system is analyzed and presented in this paper. This work demonstrates the role of energy routers in optimizing the efficient and flexible way of energy stabilization in grid system. This analysis model establishes the entire system, including power routers, interconnected microcircuits, and the main grid. Interconnected microcircuits were analyzed by various controller facilitated by power routers, and corresponding control strategies were developed. The proposed system shows the effectiveness and reliability of the control strategy for micro-grid interconnection and flexible energy flow correspondence.
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