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A New Backward Euler Stabilized Optimum Controller for NPC Back-to-Back Five Level Converters

机译:用于NPC背靠背五电平转换器的新型向后Euler稳定最佳控制器

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This paper presents a backward Euler stabilized-based control strategy applied to a neutral point clamped (NPC) back-to-back connected five level converters. A generalized method is used to obtain the back-to-back NPC converter system model. The backward Euler stabilized-based control strategy uses one set of calculations to compute the optimum voltage vector needed to reach the references and to balance the voltage of the DC-bus capacitors. The output voltage vector is selected using a modified cost functional that includes variable tracking errors in the functional weights, whereas in classic approaches, the weights are considered constant. The proposed modified cost functional enables AC current tracking and DC-bus voltage balancing in a wide range of operating conditions. The paper main contributions are: (i) a backward Euler stabilized-based control strategy applied to a double, back-to-back connected, five level NPC converter; (ii) the use of cost functional weight varying as a function of the controlled variable tracking errors to enforce the controlled variables and to balance the DC capacitor voltages; and (iii) the demonstration of system feasibility for this type of converter topology and control strategy, ensuring a high enough computational efficiency and extending the modulation index from 0.6 to 0.93. Experimental results are presented using a prototype of a five level NPC back-to-back converter.
机译:本文提出了一种适用于中性点钳位(NPC)背对背连接的五电平转换器的基于反向欧拉稳定的控制策略。使用通用方法获得背对背NPC转换器系统模型。向后的基于稳定器的Euler控制策略使用一组计算来计算达到基准所需的最佳电压矢量,并平衡DC总线电容器的电压。使用修改后的成本函数选择输出电压矢量,该函数在函数权重中包含可变的跟踪误差,而在经典方法中,权重被认为是恒定的。拟议的改进成本功能可在各种工作条件下实现交流电流跟踪和直流总线电压平衡。本文的主要贡献是:(i)一种基于反向欧拉稳定的控制策略,该策略适用于双背靠背连接的五级NPC转换器; (ii)使用成本函数权重作为受控变量跟踪误差的函数而变化,以强制执行受控变量并平衡直流电容器电压; (iii)演示了这种转换器拓扑和控制策略的系统可行性,确保了足够高的计算效率并将调制指数从0.6扩展到0.93。使用五级NPC背靠背转换器的原型展示了实验结果。

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