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Model predictive control of a DC-DC converter for battery emulation

机译:用于电池仿真的DC-DC转换器的模型预测控制

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A battery emulator is used instead of a real traction battery to supply an electric motor inverter on a test bed for hybrid and electric powertrains under deterministic conditions. The use of virtual battery models eliminates the need for expensive battery prototypes. Virtual battery properties such as chemistry, state of charge or state of health can be changed instantly. However, the control of a battery emulator is a challenging problem. Very fast reference tracking is required for battery impedance emulation but motor inverters act as constant power loads that have a negative influence on the tracking performance and can even lead to instability. In this paper an MPC strategy is proposed for solving this problem. Scheduling of local controllers is utilized in order to handle the nonlinear and destabilizing load. Furthermore, a fast algorithm is presented that allows real-time MPC subject to input and output constraints. Experimental results obtained with a battery emulator supplying an electric drive inverter demonstrate the performance of the stabilizing controller.
机译:在确定性条件下,使用电池仿真器代替实际的牵引电池为测试台上的混合动力和电动动力总成提供电动机逆变器。虚拟电池模型的使用消除了对昂贵电池原型的需求。虚拟电池的属性(例如化学性质,充电状态或健康状态)可以立即更改。但是,电池仿真器的控制是一个具有挑战性的问题。电池阻抗仿真需要非常快速的参考跟踪,但是电机逆变器会充当恒定功率负载,这会对跟踪性能产生负面影响,甚至可能导致不稳定。本文提出了一种MPC策略来解决这个问题。利用本地控制器的调度来处理非线性和不稳定负载。此外,提出了一种允许实时MPC受到输入和输出约束的快速算法。使用为电驱动逆变器供电的电池仿真器获得的实验结果证明了稳定控制器的性能。

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