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AC load conditioner and DC bus conditioner for a DC distribution power system

机译:用于直流配电电源系统的交流负载调节器和直流总线调节器

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A PEBB (power electronics building block) based power converter system is described to provide a secondary utility bus in a DC distributed power system on a ship. The power converter system consists of a main inverter and a multi-functional load conditioner to achieve low voltage distortion under unbalanced and/or nonlinear loads. A four-legged three-phase power converter topology is used for both the main inverter and the load conditioner. Modeling and control design aspects of the power converter system are addressed with emphasis on the impacts of different load conditions. Experimental results show that the utility sub-system has a high performance under different load conditions. However, when an unbalanced load or nonlinear load is connected to the secondary utility bus, the whole utility sub-system behaves like a nonlinear load to the DC distribution bus by drawing a low frequency ripple current. The nonlinear loading effect has been identified as one of the system level control issues which impacts greatly on the stability of the DC distribution bus in a large signal sense. Two approaches are suggested to eliminate the nonlinear loading effect and to improve the stability of the DC distribution bus. One is to use the load conditioner with a modified control reference, another is to use a DC bus conditioner, which is an extension of the AC load conditioner concept by performing active filter and damping functions. Simulation results prove that both approaches are effective. Tradeoffs and system design considerations are discussed.
机译:描述了基于PEBB(功率电子构建块)的功率转换器系统,以在船上的DC分布式电力系统中提供次级实用总线。功率转换器系统由主逆变器和多功能负载调节器组成,以在不平衡和/或非线性负载下实现低压失真。用于主逆变器和负载调节器的四足三相电力转换器拓扑。电力转换器系统的建模和控制设计方面被强调对不同负载条件的影响。实验结果表明,公用事业子系统在不同负载条件下具有高性能。然而,当不平衡负载或非线性负载连接到次级实用总线时,通过拉动低频纹波电流,整个公用事业子系统的表现类似于非线性负载到DC分配总线。非线性加载效果已被识别为系统级控制问题之一,这是在大信号感测的大小直流分配总线的稳定性上影响的系统级控制问题之一。建议两种方法消除非线性负荷效应,提高直流分配总线的稳定性。一个是使用具有修改的控制参考的负载调节器,另一个是使用直流总线调节器,通过执行有源滤波器和阻尼功能,这是AC负载调节器概念的扩展。仿真结果证明这两种方法都有效。讨论了权衡和系统设计考虑因素。

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