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A Multilevel Inverter Bridge Control Structure with Energy Storage Using Model Predictive Control for Flat Systems

机译:平面系统模型预测控制的储能多电平逆变桥控制结构

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The paper presents a novel technique to control the current of an electromagnetic linear actuator fed by a multilevel IGBT voltage inverter with dynamic energy storage. The technique uses a “cascade model predictive control (MPC),” which consists of two MPCs. A predictive control of the trajectory position predicts the optimal current, which is considered to be the desired current for the second MPC controller in which a hysteresis control technique is also integrated. Energy is stored in a capacitor using energy recovery. The current MPC can handle a capacitor voltage higher than the source voltage to guarantee high dynamic current and disturbance compensation. The main contribution of this paper is the design of an optimal control structure that guarantees a capacitor recharge. In this context, the approach is quite new and can represent a general emerging approach allowing to reduce the complexity of the new generation of inverters and, in the meantime, to guarantee precision and acceptable switching frequency. The proposed technique shows very promising results through simulations with real actuator data in an innovative transportation technology.
机译:本文提出了一种新颖的技术来控制由具有动态能量存储的多级IGBT电压逆变器馈电的电磁线性致动器的电流。该技术使用由两个MPC组成的“级联模型预测控制(MPC)”。轨迹位置的预测控制可预测最佳电流,该电流被认为是第二MPC控制器的理想电流,其中还集成了磁滞控制技术。使用能量回收将能量存储在电容器中。当前的MPC可以处理高于电源电压的电容器电压,以确保高动态电流和干扰补偿。本文的主要贡献是保证电容器充电的最佳控制结构的设计。在这种情况下,该方法是相当新颖的,可以代表一种通用的新兴方法,该方法可以降低新一代逆变器的复杂性,同时可以保证精度和可接受的开关频率。通过在创新的运输技术中使用实际执行器数据进行仿真,所提出的技术显示出非常有希望的结果。

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