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Active voltage sensorless supercapacitor bank balancer with peak current protection

机译:有源电流无传感器超级电容器组平衡器,具有峰值电流保护

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In this paper, average modeling of a dual-supercapacitor bank, actively balanced by a bidirectional buck-boost converter is presented. In such a system, natural balancing is achieved when the converter is operated in open loop with 50% duty cycle, eliminating the need for measuring the voltage of each storage device. Nevertheless, excessive currents arise even for slight voltage misbalance because of the highly underdamped nature of the system. In order to remedy this drawback, bidirectional pulse-by-pulse inductor current limitation is introduced, which is equivalent to adding a peak-current-mode-like control loop to the system. Since the duty cycle never exceeds 50%, compensation ramp is not required to maintain stability. On the other hand, while the uncontrolled system dynamics is linear, introducing the current limit mechanism turns the closed loop dynamics into a nonlinear one, burdening the analysis task and thus calling for suitable average model to perform fast simulations for system analysis. Dynamical equations of the system are developed in order to derive the switching-cycle-averaged model. Simulations support the presented findings.
机译:本文提出了双超级电容器组的平均建模,该模型由双向降压-升压转换器主动平衡。在这种系统中,当转换器以占空比为50%的开环方式工作时,可实现自然平衡,从而无需测量每个存储设备的电压。然而,由于系统的高度欠阻尼特性,即使轻微的电压失衡,也会产生过大的电流。为了解决此缺点,引入了双向逐脉冲电感器电流限制,这等效于向系统中添加类似峰值电流模式的控制环路。由于占空比永远不会超过50%,因此不需要补偿斜坡来保持稳定性。另一方面,虽然不受控制的系统动力学是线性的,但引入限流机制会将闭环动力学变成非线性的,这给分析任务带来了负担,因此需要合适的平均模型来对系统分析进行快速仿真。开发系统的动力学方程,以便得出开关周期平均模型。模拟支持提出的发现。

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