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Parallel interfacing converters under unbalanced voltage: Active power oscillation cancellation with peak current sharing

机译:不平衡电压下的并行接口转换器:峰值电流共享的有功功率振荡消除

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Unbalanced voltage has adverse effects on power electronic interfacing converters (IFCs) operation such as output power oscillations, DC link voltage oscillations and peak current increase. These adverse effects can be aggregated in parallel IFCs with common DC and AC link, which are commonly used to connect AC and DC subsystems in hybrid AC/DC microgrid or to interface high-power distributed generations/storage elements to AC subsystem. In this paper, two novel control strategies for parallel IFCs operation under unbalanced voltage are proposed, which are focusing on active power oscillation cancellation and sharing of collective peak current of parallel IFCs among IFCs considering their power ratings. In the first proposed control strategy, IFCs' power coefficient factors are controlled for cancellation of active power oscillation and collective peak current sharing of parallel IFCs. In the second proposed control strategy, IFCs' peak currents are controlled for controlling targets. In this paper, individual and parallel IFCs' peak currents are thoroughly studied, and their relationship with active power oscillation cancellation are analyzed. Based on analysis, it is proven that collective peak current of parallel IFCs is constant under zero active power oscillation in the fixed average active powers output. Both proposed control strategies ensure the peak currents of individual IFCs to be approximately in-phase with collective peak current of parallel IFCs, which provide minimum peak currents summation of IFCs.
机译:电压不平衡会对功率电子接口转换器(IFC)的运行产生不利影响,例如输出功率振荡,直流母线电压振荡和峰值电流增加。这些不利影响可以在具有公共DC和AC链路的并行IFC中聚集,通常用于连接AC / DC混合微电网中的AC和DC子系统,或将高功率分布式发电/存储元件连接到AC子系统。在本文中,提出了两种新颖的用于不平衡电压下并联IFC操作的控制策略,它们集中在有功功率消除和IFC之间并联IFC的集体峰值电流的共享上。在第一个提出的控制策略中,控制IFC的功率系数因数以消除有功功率振荡和并联IFC的集体峰值电流共享。在第二个提出的控制策略中,控制IFC的峰值电流以控制目标。在本文中,对单个和并联IFC的峰值电流进行了深入研究,并分析了它们与有功功率振荡消除的关系。通过分析,证明了在固定的平均有功功率输出中,并联IFC的集体峰值电流在零有功功率振荡下是恒定的。两种建议的控制策略均确保单个IFC的峰值电流与并联IFC的集体峰值电流近似同相,从而提供IFC的最小峰值电流总和。

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