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New Inter- and Inner-Phase Power Control Method for Cascaded H-Bridge Based on Simplified PWM Strategy

机译:基于简化PWM策略的级联H网桥新型和内部电功率控制方法

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摘要

Cascaded H-bridge (CHB) converters characterized with high scalability have been widely used in photovoltaic and energy storage systems. However, the three-phase power and the voltages are often unequal due to various reasons, making the system less efficient. Therefore, the ability to deal with unequal power is necessarily required in CHB. This article proposes three interphase power control methods (PCMs) based on simplified pulsewidth modulation (PWM) strategy to improve the efficiency of the system. A control method with better performance both in dynamic and steady states is adopted to adjust power distribution. The relationship between duration times and dc power is analyzed. On the basis of controlling the interphase power, an inner-phase PCM is proposed by redistributing the duration time of each submodule, to further enhance the power control ability of the system. The simulation and experimental results show that under the condition of balanced or unbalanced voltage, the interphase and inner-phase power can be controlled, which verifies the feasibility and practicability of several modulation strategies proposed in this article.
机译:具有高可扩展性的级联H桥(CHB)转换器已广泛用于光伏和储能系统。然而,由于各种原因,三相功率和电压通常不相等,使系统效率较低。因此,在CHB中必须需要处理不等功率的能力。本文提出了基于简化的脉冲宽度调制(PWM)策略的三种相互作用的功率控制方法(PCM),以提高系统的效率。采用具有更好动态和稳态状态的控制方法来调整电力分布。分析了持续时间和直流电力之间的关系。在控制相互作用的基础上,通过重新分配每个子模块的持续时间来提出内部相位PCM,以进一步提高系统的功率控制能力。仿真和实验结果表明,在平衡或不平衡电压的条件下,可以控制间间和内相电源,这验证了本文提出的几种调制策略的可行性和实用性。

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