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首页> 外文期刊>Energy Conversion, IEEE Transactions on >DC-Bus Voltage Control Technique for Parallel-Integrated Permanent Magnet Wind Generation Systems
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DC-Bus Voltage Control Technique for Parallel-Integrated Permanent Magnet Wind Generation Systems

机译:并联集成永磁风力发电系统的直流总线电压控制技术

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摘要

This paper presents a dc-bus voltage control technique for a new power conversion topology feasible for parallel-integrated permanent magnet (PM) wind generation systems. This technique is based on a master–slave hysteresis control scheme in order to solve discrepancy problems that could happen between the controllers. A three-phase semicontrolled rectifier topology is proposed here as an effective interface circuit between each wind generator and the dc-bus. The proposed system provides interconnection extension ability of multiwind converter units sharing the same dc-bus and more economic utilization of the wind generator; by ensuring unity power factor operation. More advantages include voltage disturbance compensation capability, robustness: since a short circuit through a leg is not possible and high efficiency: due to the reduced number of switching elements. The rectifier topology concept, the principle of operation, the control scheme, and test results are presented. The developed technique is also implemented on a 12 kW parallel-connected PM laboratory setup in order to confirm the effectiveness of the proposed system.
机译:本文提出了一种用于新型功率转换拓扑结构的直流总线电压控制技术,该拓扑结构适用于并联集成式永磁(PM)风力发电系统。该技术基于主从磁滞控制方案,以解决可能在控制器之间发生的差异问题。在此提出了一种三相半控整流器拓扑结构,作为每个风力发电机与直流母线之间的有效接口电路。所提出的系统提供了共享相同的直流总线的多风变流器单元的互连扩展能力,并提高了风力发电机的经济性;通过确保统一的功率因数操作。更多的优点包括电压干扰补偿功能,坚固性:由于不可能通过支路短路以及高效率:由于减少了开关元件的数量。介绍了整流器拓扑的概念,工作原理,控制方案和测试结果。为了确认所提出系统的有效性,还在12 kW并联PM实验室设置中实施了开发的技术。

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