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Virtual circuit design of grid-connected half-bridge converters with higher-order filters

机译:具有高阶滤波器的并网半桥转换器的虚拟电路设计

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This paper presents a structured design method for half-bridge converters with higher-order lossless output filters, focusing on the popular LCL filters. The method builds on the theory of terminated ladder networks and on a control algorithm actively emulating the ladder network's termination. Given a desired transfer function, a normalized ladder network is accordingly synthesized and scaled to meet the physical requirements. The component sizing and the active damping of filter resonances are simultaneously tackled. The associated digital-control architecture for LCL filters is explained. A Kalman observer is employed to deal with the inherent sample delay. An LCL filter is designed based on the proposed method and is experimentally validated with the half-bridge converters operating as active front end. The grid reactive currents are stepped and the results show properly damped responses. The system has good disturbance rejection and is passive according to the simulated input admittance. The robustness of the system is also demonstrated by numerical sensitivity analysis. These excellent characteristics can facilitate the design of the upper-layer or incorporated outer-loop controller, and can enhance the performance of the complete system.
机译:本文针对流行的LCL滤波器,针对具有高阶无损输出滤波器的半桥转换器,提出了一种结构化设计方法。该方法建立在端接梯形网络的理论和主动模拟梯形网络的端接的控制算法的基础上。在给定期望的传递函数的情况下,归一化梯形网络相应地被合成和缩放以满足物理需求。同时解决了组件大小调整和滤波器共振的主动阻尼问题。解释了用于LCL滤波器的相关数字控制体系结构。使用卡尔曼观测器来处理固有的采样延迟。基于所提出的方法设计了一个LCL滤波器,并通过半桥转换器作为有源前端进行了实验验证。电网无功电流呈阶梯状,结果显示出适当的阻尼响应。该系统具有良好的抗干扰能力,并且根据模拟的输入导纳是无源的。该系统的鲁棒性也通过数值灵敏度分析得到证明。这些出色的特性可以简化上层或合并的外环控制器的设计,并可以增强整个系统的性能。

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