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Capacitor voltage predictor-corrector balancing approach with single sensor for single-phase modular multilevel converter

机译:电容器电压预测校正器平衡方法,单相模块化多电平转换器

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摘要

This paper presents a predictor-corrector approach for submodule (SM) capacitor voltage measurement in singlephase modular multilevel converter (MMC). The single voltage sensor is applied to each arm for SM capacitor voltage measurement instead of using a large number of individual voltage sensors, simplifying the measurement hardware structure. With only one voltage sensor in each arm, the proposed approach utilizes measured arm voltage variation between adjacent control periods to correct the predicted capacitor voltages, improving the predictor accuracy. Additionally, the proposed approach divides the SMs into several categories in terms of their switching states variation and arm voltage level variation, and then the approach corrects the predicted capacitor voltages according to the categories, achieving the voltage-balancing of SMs. Further, the convergence capability is explained and the sensitivity against parameter perturbation and voltage unbalance condition is validated. Extensive comparison simulation and experimental tests for individual measurement, a two-step estimation algorithm, and the proposed approach are carried out. Both steady-state and transient performances are evaluated by the tests to support the feasibility and effectiveness of the proposed approach.
机译:本文介绍了单双相模块化多电平转换器(MMC)中子模块(SM)电容器电压测量的预测校正器方法。单电压传感器应用于每个臂进行SM电容器电压测量,而不是使用大量的单独电压传感器,简化测量硬件结构。只有在每个臂中只有一个电压传感器,所提出的方法利用相邻控制时段之间的测量臂电压变化来校正预测的电容电压,提高预测的准确度。此外,在其开关状态变化和臂电压电平变化方面,所提出的方法将SMS分为几个类别,然后该方法根据类别校正预测的电容电压,实现SMS的电压平衡。此外,解释了收敛能力,并且验证了对参数扰动和电压不平衡条件的灵敏度。进行各个测量的广泛比较模拟和实验测试,进行两步估计算法和所提出的方法。通过测试评估稳态和瞬态性能,以支持所提出的方法的可行性和有效性。

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