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Titlebook: Second Harmonic Current Reduction Techniques for Single-Phase Power Electronics Converter Systems; Xinbo Ruan,Li Zhang,Shiqi Kan Book 2022

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Second Harmonic Current Reduction for Two-Stage Single-Phase Inverter with Boost-Derived Front-End ontrolled converter (BVCC). To reduce the SHC, a virtual series impedance, which has high impedance at twice the output frequency (2.) while low impedance at other frequencies, is introduced in series with the boost-diode (or the boost-inductor) to increase the impedance of the boost-diode (or boost
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Second Harmonic Current Reduction for Two-Stage DC-AC Inverter with DCX-, Resonant Converter in theverter is studied. The small-signal model of the DCX-. resonant converter is derived and based on which, the unified small-signal model of the preregulator + . converter is built. Then, the basic ideas for reducing the SHC are proposed, including the determination of the filter capacitors in the pre
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Second Harmonic Current Reduction for Two-Stage Single-Phase Inverter with Front-End Bus-Current Co inverter where the front-end dc-dc converter is operated as a bus-current controlled converter (BCCC). To limit the SHC in the BCCC and the PV panel, the input voltage loop gain of the BCCC should be high enough at twice the output frequency (2.). Since there is a −180° phase abrupt at the resonant
发表于 2025-3-25 21:54:14 | 显示全部楼层
Second Harmonic Current Reduction for DC-DC Converter in Two-Stage PFC Converters,ction (PFC) converter. The dc-dc stage is used to regulate the output voltage or the dc bus voltage in different applications, When the dc-dc stage regulates the output voltage, it is pointed out that the control bandwidth of the dc-dc stage is required to be high enough and the dc bus capacitor sho
发表于 2025-3-26 03:40:31 | 显示全部楼层
Control Schemes for Reducing Second Harmonic Current in AC-DC-AC Converter System,h propagates to the dc-dc converter, leading to poor performance. In this chapter, the generation and propagation mechanism of the SHC in the ac-dc-ac converter system is analyzed. Then, from a perspective of control bandwidth and dc bus port-impedance, the basic ideas for reducing the SHC in the dc
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One-Cycle Control for Electrolytic Capacitor-Less Second Harmonic Current Compensator, modes, namely, charging mode and discharging mode. To attain an excellent SHC compensation performance, a hybrid one-cycle control (OCC) is proposed to regulate the port current of the SHCC, ensuring stable operation in both charging modes and discharging mode. To avoid the mode detection required
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