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Analysis of Power Balance Influenced by Voltage Configuration in Two-cell Multilevel CHB

机译:双细胞多级CHB电压配置影响的电力平衡分析

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Cascaded H-bridge (CHB) is widely used for its advantages of modularization, simplification and multilevel output. The power direction of each H-bridge in the CHB converter and its power imbalance range are affected by the DC side voltage. The DC voltage or power will be out of control when the unbalance of CHB power is out of this range. In this paper, detailed analysis and derivation on the exact stable operating range of two-cell cascaded multi-level converter (2C-CHB) is developed according to DC voltage settings. The operation of 2C-CHB is discussed in detail according to the power direction and the maximum output fundamental voltage of the H-bridge compared to grid voltage. By this analysis, the stable operating range of CHB based photovoltaic systems and energy storage systems can be calculated according to DC voltages of the CHB, among which the CHB is controlled to work in stable operating range in order to improve system performance. Finally, the correctness and feasibility of the method are verified by experiment.
机译:级联H-Bridge(CHB)广泛用于其模块化,简化和多级输出的优点。 CHB转换器中的每个H桥的功率方向及其功率不平衡范围受到直流侧电压的影响。当CHB电源的不平衡超出此范围时,直流电压或电源将失控。在本文中,根据直流电压设置开发了双单元级联多级转换器(2C-CHB)的确切稳定工作范围的详细分析和推导。与电网电压相比,根据电源方向和H桥的最大输出基极电压详细讨论了2C-CHB的操作。通过该分析,可以根据CHB的DC电压计算基于CHB的光伏系统和能量存储系统的稳定工作范围,其中CHB被控制在稳定的操作范围内工作,以提高系统性能。最后,通过实验验证了该方法的正确性和可行性。

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