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Development and validation of a real time flow control integrated MPPT charger for solar PV applications of vanadium redox flow battery

机译:开发和验证用于钒氧化还原液流电池的太阳能光伏应用的实时流量控制集成MPPT充电器

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In this paper a real time flow control integrated solar PV Maximum Power Point Tracking (MPPT) charge controller for Vanadium Redox Flow battery (VRFB) is developed and its performance is demonstrated under practical dynamic insolation profiles. Unlike the conventional Lead acid and Li-ion batteries the major challenge in designing the solar MPPT charger for VRFB lies in simultaneous control of charging current and corresponding flow rate for maintaining the maximum overall system efficiency of the VRFB besides achieving the maximum charging efficiency. In this work, the usual Perturb & Observe (P&O) algorithm for designing MPPT charger for conventional batteries has been significantly modified in case of VRFB charge controller by including the real time control of flow rate along with the charging current. The proposed charging algorithm has been validated by a practical 1 kW 6 h VRFB system operation. The modified MPPT based three stage constant current constant voltage (CC-CV) charging topology is found to be the most efficient for VRFB charging from solar PV. Solar MPPT charging of VRFB with a constant flow rate leads to premature thermal shut down of the charge controller resulting incomplete charging of VRFB which is prevented by the use of dynamic flow control integrated solar PV MPPT charging. Two practical case studies of sunny weather and cloudy weather conditions have been adopted for validation of the integrated MPPT charge controller. The proposed VRFB charging system is a generalised one and thus can be very useful for large scale VRFB application in solar PV power systems.
机译:本文开发了一种用于钒氧化还原液流电池(VRFB)的实时流量控制集成太阳能PV最大功率点跟踪(MPPT)充电控制器,并在实际的动态日照剖面下演示了其性能。与传统的铅酸和锂离子电池不同,设计用于VRFB的太阳能MPPT充电器的主要挑战在于如何同时控制充电电流和相应的流量,以保持VRFB的最大整体系统效率,同时又要实现最大的充电效率。在这项工作中,在VRFB充电控制器的情况下,通过包括对流速和充电电流的实时控制,对用于设计常规电池MPPT充电器的常用“扰动与观察”(P&O)算法进行了重大修改。所提出的充电算法已通过实际的1 kW 6 h VRFB系统运行进行了验证。发现改进的基于MPPT的三级恒流恒压(CC-CV)充电拓扑对于从太阳能PV进行VRFB充电最有效。流量恒定的VRFB的太阳能MPPT充电会导致充电控制器过早热关断,从而导致VRFB的充电不完全,这可以通过使用动态流量控制集成的太阳能PV MPPT充电来防止。已通过两个晴天和多云天气的实际案例研究来验证集成式MPPT充电控制器。拟议的VRFB充电系统是一种通用的系统,因此对于太阳能光伏发电系统中的大规模VRFB应用非常有用。

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