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Energy-Balance Based Voltage Regulation Method for Multiple DC-links in Asymmetrical Cascaded Multilevel Inverters

机译:不对称级联多级逆变器中多个直流链路的能量平衡电压调节方法

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This paper presents a dc-link voltage regulation method for the asymmetrical cascaded multilevel inverter (ACMI). Such method is based on energy-balance analysis and is here evaluated in the context of a single-phase grid-connected photovoltaic (PV) system. However, the proposed strategy can be easily extended to different kinds of applications related to distributed generation with multiple primary power sources. There are several works that deal with the dc-link voltage control for conventional PWM inverters, but such methods cannot be applied to multilevel topologies due to the presence of multiple and isolated dc-links in the ACMI topology. Regarding the proper operation of this topology, the dc-link voltages must be strictly held in a particular set of scalable values. Therefore, a method for regulating the dc-link voltages is required. Although the here proposed method could be applied to any N number of h-bridge inverter series-connected cells, this work analyses a 3 h-bridge ACMI case, which is able to provide an (up to) 19 levels output voltage. A computational model built in the MATLAB/SIMULINK? platform was considered in order to evaluate the dynamic performance of the proposed control method on continuous time-domain under two different scenarios: with proportional (P) controllers; and with a set of proportional and PI (P+PI) controllers. Simulation results show that the proposed method is suitable, offering appropriate transient and steady-state responses even during load and available power variations.
机译:本文提出了一种非对称级联多级逆变器(ACMI)的直流链路电压调节方法。这种方法是基于能量平衡分析,并在单相电网连接的光伏(PV)系统的上下文中,这里进行评价。然而,所提出的策略可以容易地扩展到不同种类的相关分布式发电用多个主功率源的应用程序。有几种作品该处理为常规PWM逆变器的直流链路电压控制,但是,这种方法不能被应用到多级拓扑结构由于在ACMI拓扑和多个隔离DC-链接的存在。对于这种拓扑结构的正常工作,直流母线电压必须严格在特定的一组可扩展的价值观举行。因此,需要用于调节直流链路电压的方法。虽然这里提出的方法可以被应用到逆变器串联连接的细胞的任何N个H桥的,这项工作分析3 H-桥ACMI情况下,其能够提供一个(最多)19级的水平的输出电压。建在MATLAB / SIMULINK的计算模型?平台以评价在两种不同情景对连续时域所提出的控制方法的动态性能被认为是:通过比例(P)控制器;和与一组比例和PI(P + PI)控制器。仿真结果表明,所提出的方法是合适的,即使是在负载和可用功率的变化,提供适当的瞬态和稳态响应。

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