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An efficient active ripple filter for use in single-phase DC-AC conversion system

机译:有效的主动纹波滤波器,用于单相DC-AC转换系统

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摘要

The objective of this paper is to propose an active ripple filter (ARF) for eliminating the double-line-frequency (DLF) current ripple of a single-phase DC/AC conversion system. The proposed ARF and its control strategies can not only prolong the usage life of battery energy device but also improve the DC/AC system performance. At first, the phenomena of DLF current ripple and the operation principle of the ARF are illustrated. Then, steady-state analysis, small-signal model and control loop design of the ARF circuit architecture are derived. The proposed control system structure includes: (1) a current control loop to provide the excellent ripple cancelling performance on the output of the battery energy device; (2) a voltage control loop for the high-side capacitor voltage of ARF circuit to achieve good steady-state and transient-state responses; (3) a voltage feed-forward control loop for the low-side voltage of ARF circuit to cancel the voltage fluctuation caused by the instability of the battery energy device. Finally, the feasibility of proposed concept can be verified by the system simulation, and the results show that the low DLF current ripple can be achieved.
机译:本文的目的是提出一种用于消除单相DC / AC转换系统的双线频率(DLF)电流纹波的主动纹波滤波器(ARF)。拟议的ARF及其控制策略不仅可以延长电池能量设备的使用寿命,还可以提高DC / AC系统性能。首先,说明了DLF电流纹波的现象和ARF的操作原理。然后,导出了稳态分析,小信号模型和ARF电路架构的控制回路设计。所提出的控制系统结构包括:(1)电流控制回路,为电池能量装置的输出提供优异的纹波消除性能; (2)ARF电路高侧电容器电压的电压控制回路,实现良好的稳态和瞬态响应; (3)ARF电路低侧电压的电压前馈控制回路,以取消由电池能量装置的不稳定性引起的电压波动。最后,可以通过系统仿真验证所提出的概念的可行性,结果表明,可以实现低DLF电流纹波。

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