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Dynamic Response Improvement for DAB Converter with Constant Power Load under Extended-Phase-Shift Control Based on Trajectory Control

机译:基于轨迹控制的延伸相移控制下DAB转换器的动态响应改进

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Microgrid has been regarded by many researchers as the fundamental building block for the next generation power grid, where DC-DC converter plays a crucial role as the interface between main DC bus, energy generation facilities, and energy storage systems. Among many different topologies of DC-DC converters, bidirectional isolated dual-active-bridge (DAB) converter receives increasingly more attentions because of its many merits, including allowance on bidirectional power flow, isolation between power supply and load, and voltage level conversion. However, as the control scheme used to regulate DAB converter evolves, its output voltage and current could be roughly regarded as constant, which implies the converter actually feeds a constant power load (CPL). Nevertheless, because of its equivalent negative resistance effect, CPL could introduce instability to the system, causing output power to oscillate or drops to zero. This paper comprehensively explains the impact of this negative resistance effect, and, to cope with this problem, a nonlinear control method called trajectory control based on the natural switching surfaces (NSS) of DAB converter with extended-phase-shift (EPS) control will be derived. To better demonstrate the advantages of using trajectory control, a traditional linear controller, PI controller, is implemented as a comparison. Finally, by comparing the simulation results between traditional PI control and trajectory control, it is found that the start-up stage for trajectory control is much shorter than that of PI control, and the system stability of DAB converter feeding CPL is improved.
机译:许多研究人员被认为是下一代电网的基本构建块所认为的微电网,其中DC-DC转换器在主直流总线,能量发电设施和能量存储系统之间的界面起着至关重要的作用。在DC-DC转换器的许多不同拓扑中,双向隔离双极 - 桥(DAB)转换器由于其许多优点而受到越来越多的关注,包括双向动力流量的津贴,电源和负载之间的隔离,以及电压电平转换。然而,由于用于调节DAB转换器的控制方案演变,其输出电压和电流可能大致被认为是常数,这意味着转换器实际馈送恒定功率负载(CPL)。然而,由于其等效的负电阻效应,CPL可能会对系统引入稳定性,导致输出功率振荡或落到零。本文全面解释了这种负阻力效应的影响,并应对这个问题,一种基于DAB转换器的自然切换表面(NSS)的轨迹控制的非线性控制方法,延伸相移(EPS)控制将得到。为了更好地证明使用轨迹控制的优点,传统的线性控制器PI控制器PI控制器被实现为比较。最后,通过比较传统的PI控制和轨迹控制之间的模拟结果,可以发现,对于轨迹控制的启动阶段比PI控制的要短得多,并且DAB转换器馈送CPL的系统稳定性提高。

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