首页> 外文会议>2012 IEEE Industry Applications Society Annual Meeting. >Active power management of a super capacitor-battery hybrid energy storage system for standalone operation of DFIG based wind turbines
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Active power management of a super capacitor-battery hybrid energy storage system for standalone operation of DFIG based wind turbines

机译:用于基于DFIG的风力发电机组独立运行的超级电容器-电池混合储能系统的有功功率管理

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This paper presents an energy management strategy for a hybrid energy storage system for a wind dominated remote area power supply (RAPS) system consisting of a doubly-fed induction generator (DFIG), a battery storage system, a super-capacitor, a dump load and main loads. Operation of a battery storage system is coordinated with a supercapacitor with a view to improve the life span of the battery. In this regard, the battery storage system is connected to the load side of the system while the supercapacitor is connected to DC bus of the back-to-back converter of the DFIG. The operation of the hybrid energy storage system is coordinated through the implementation of an energy management algorithm (EMA) which is developed with a view to reduce the depth of discharge (DOD) and ripple content of the battery current. The dump load is connected to the load side of the system which utilises the power in situations that can not be handled via energy storage system. In addition, a novel coordination method has been proposed to coordinate the power flows among all system components with a view to regulate the power flow and thereby ensuring the robust voltage and frequency control on the load side and capturing the maximum power from wind.
机译:本文提出了一种用于混合能源存储系统的能源管理策略,该混合能源存储系统由双馈感应发电机(DFIG),电池存储系统,超级电容器,自卸负载组成,用于风力主导的偏远地区电源(RAPS)系统和主要负载。电池存储系统的操作与超级电容器配合使用,以期延长电池的使用寿命。在这方面,电池存储系统连接到系统的负载侧,而超级电容器连接到DFIG的背对背转换器的DC总线。混合能源存储系统的运行通过实施能量管理算法(EMA)进行协调,该算法旨在减少电池深度的放电深度(DOD)和纹波含量。倾卸负载连接到系统的负载侧,该负载侧在无法通过储能系统处理的情况下利用电源。另外,已经提出了一种新颖的协调方法,以协调所有系统组件之间的功率流,以调节功率流,从而确保负载侧的鲁棒的电压和频率控制并从风中获取最大功率。

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