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Analysis of Multiaxis Current Controller for Power System Friendly Front-End Converter Employing Two-Level and Three-Level Topologies

机译:用于电力系统友好前端转换器的多轴电流控制器分析,采用两级和三级拓扑

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摘要

It is highly essential to develop a control technique that can be applied to conventional two-level as well as high-power multilevel front-end converters (FECs). Multiaxis current controlled, unity power factor (PF), regenerative FEC is described in this article. Current error space phasor is controlled by multiaxis current monitoring and its movement is confined within the prescribed hexagonal boundary. It is shown that the needed information on sector change detection can be derived from instantaneous values of supply voltages for the two-level FECs. However, similar approach cannot be extended for three-level FECs. Hence, sector change detection technique employing additional outer hysteresis band is proposed. With the help of experimental results, for steady state and dynamic conditions of FEC, it is demonstrated that the proposed current-controlled technique is equally applicable to two-level and three-level FECs. A three-level flying capacitor topology is considered, where voltage balancing of flying capacitors is guaranteed by effective utilization of redundant switching states. Results clearly depict the power system friendly nature of the presented scheme, i.e., unity PF, low total-harmonic distortion in supply current, good load and line regulations, and capacitor voltage balancing with regenerative capability of the converter. All the schemes are implemented on OPAL-RT hardware-in-loop platform.
机译:开发一种可以应用于传统的两级以及高功率多级前端转换器(FECS)是非常重要的。本文描述了多轴电流控制,Unity Power因数(PF),再生FEC。当前误差空间相量由Multiaxis电流监控控制,其移动限制在规定的六边形边界内。结果表明,可以从两级FECs的电源电压的瞬时值导出关于扇区变化检测的所需信息。但是,三级FECs无法扩展类似的方法。因此,提出了采用额外的外滞段频带的扇区改变检测技术。在实验结果的帮助下,对于FEC的稳态和动态条件,证明所提出的电流控制技术同样适用于两级和三级FECs。考虑了一种三级飞行电容拓扑,其中通过有效利用冗余开关状态,保证了飞行电容的电压平衡。结果清楚地描绘了所提出的方案的电力系统友好性,即Unity PF,电源电流,良好的负载和线路规则中的低总谐波失真,以及电容器电压平衡,具有转换器的再生能力。所有方案都在Opal-RT硬件环路平台上实现。

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