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A non-dissipative controllable charging equalizer for series connected high-capacity super-capacitors urban rail transport system

机译:用于串联高容量超电容城市轨道运输系统的非耗散可控充电均衡器

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In the high power application of urban rail transport system, the supercapacitors are important energy storage units, which are commonly connected in series to increase the energy storage capacity and the withstanding voltage. It is critical to balance the voltage among supercapacitors so that the charging equalizer is very essential. This paper proposes a novel charging equalizer employing a push-pull forward multi-winding transformer with synchronous rectifier, which can achieve rapid equalization offering large equalizing current. In the proposed charging equalizer, the full bridge rectifier is implemented by controllable power MOSFET rather than the conventional power diode, which can increase the equalizing speed and reduce the power loss during the voltage equalization with the little conduction resistance of MOSFET. Meanwhile, this paper uses an extended Kalman filter based state of charge estimator, which is able to estimate the state of SCs online and get an outstanding balancing performance. The operational principles and equalization algorithm of the proposed equalizer are presented and the equalization performance is verified by the simulation and experimental results of a charging equalizer prototype for eight series-connected supercapacitors.
机译:在城市轨道运输系统的高功率应用中,超级电容器是重要的能量存储单元,通常串联连接,以提高能量存储容量和耐压。平衡超级电容器之间的电压至关重要,以便充电均衡器非常重要。本文提出了一种采用具有同步整流器的推挽前多绕组变压器的新型充电均衡器,可以实现快速均衡提供大的均衡电流。在所提出的充电均衡器中,全桥式整流器由可控功率MOSFET而不是传统的电力二极管实现,这可以增加均衡速度并在电压均衡期间降低功率损耗,在电压均衡期间与MOSFET的一点传导电阻。同时,本文使用扩展的卡尔曼滤波器基于充电估计器状态,能够估计在线的SCS状态并获得出色的平衡性能。提出了所提出的均衡器的操作原理和均衡算法,并通过对八个系列连接的超级电容器的充电均衡器原型的仿真和实验结果来验证均衡性能。

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