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DC Capacitor-Less Solid-State Variable Capacitor

机译:DC电容器较少的固态可变电容器

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H-bridge-based single-phase applications have second-order harmonics on the dc-link voltage. Conventionally, the second-order harmonics are filtered by bulky dc capacitors to maintain the constant dc-link voltage, which results in poor power density and low reliability. However, in applications, such as the solid-state variable capacitor (SSVC), the constant dc-link voltage is unnecessary since the dc link is disconnected from the load or source. This article proposes a dc capacitor-less SSVC, which removes the dc capacitors from the topology. The dc voltage is supported by the ac-side voltage directly. Only a 0.03 per unit (p.u.) capacitor is needed to filter the switching-frequency harmonics. This enables the proposed SSVC to use the snubber capacitors to achieve the function of the 0.03-p.u. filtering capacitor. Other capacitors can be removed from the dc-link busbar. The modulation, modeling, and control strategy of the proposed dc capacitor-less SSVC are provided in this article. The proposed dc capacitor-less SSVC is validated by the experiment.
机译:<斜体XMLNS:mml =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> h 基于桥下的单相应用在DC-Link电压上具有二阶谐波。传统上,二阶谐波由庞大的DC电容器过滤,以保持恒定的直流电压,这导致功率密度差和低可靠性。然而,在诸如固态可变电容器(SSVC)的应用中,不需要恒定的DC连杆电压,因为直流链路与负载或源断开。本文提出了一种DC电容器的SSVC,其从拓扑中移除DC电容器。直接电压直接由交流侧电压支撑。需要每单位0.03(p.u.)电容来过滤开关频率谐波。这使得提出的SSVC能够使用缓冲电容来实现0.03-P.U的功能。过滤电容器。可以从DC-Link母线中取出其他电容器。本文提供了所提出的DC电容器SSVC的调制,建模和控制策略。通过实验验证了所提出的DC电容器的SSVC。

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