Energy management system for AC/DC HMGS integrated with interconnected renewable sources and interlinking converter

Syed Abdul Razzaq, V. Jayasankar
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引用次数: 1

Abstract

AC/DC hybrid micro grid system (HMGS) is designed with renewable energy sources (RES) and battery energy storage system (BESS) with unique control schemes, interfaced with multi terminal interlinking converters (ILCs). This ILC operates on droop control scheme to guarantee bidirectional power sharing to AC/DC sub grids. The power sources in AC/DC sub grids like PV, Fuel cell, BESS are controlled by advance control methods for maximum power extraction with power quality. A three-level control structure is designed for optimal energy management system (EMS). The first level confirms the power balance in AC/DC sub grid with autonomous bidirectional power transfer via ILC in islanded mode. The second level tracks the batteries state of charge (SoC), based on the minimum and maximum SoC the battery operates for charging and discharging. The third level gives the power redundant capability for critical loads connected in AC/DC sub grid for DC system and single-phase system.
具有互联可再生能源和互联变换器的交/直流HMGS能源管理系统
交/直流混合微电网系统(HMGS)采用可再生能源(RES)和电池储能系统(BESS)设计,具有独特的控制方案,并与多终端互连转换器(ILCs)接口。该ILC采用下垂控制方案,以保证交流/直流子电网的双向电力共享。交直流子电网中的电源,如光伏、燃料电池、BESS等,采用先进的控制方法进行控制,以实现最大功率提取和电能质量。为优化能源管理系统(EMS)设计了一个三级控制结构。第一级确认了孤岛模式下通过ILC自主双向输电的交直流子电网的功率平衡。第二级跟踪电池的充电状态(SoC),基于电池充电和放电的最小和最大SoC。第三级为直流系统和单相系统交直流分网中连接的关键负载提供电源冗余能力。
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