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首页> 外文期刊>IEEE Transactions on Power Electronics >An Energy Injection Method to Improve Power Transfer Capability of Bidirectional WPT System With Multiple Pickups
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An Energy Injection Method to Improve Power Transfer Capability of Bidirectional WPT System With Multiple Pickups

机译:一种能量注入方法,提高双向WPT系统具有多种拾取的电力传输能力

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摘要

Track wireless power transfer (WPT) systems are increasingly used for monorail robots, industrial transportation, etc. Conventionally, the track WPT system's primary power supply is designed to be equal or higher than the total running pickups' rated power. However, in practice, some of the pickups may transiently require more power than their normal operating state. It is not cost effective to increase the power rating of the primary source for the transient case. Hence, this article proposes a method to strengthen the track's power transfer capability by reversely injecting energy from available online pickups to the transiently over-rated one. A bioperation mode is proposed, which includes both the normal operation and the strengthening operation. A bidirectional pickup topology is used, and the equivalent circuit is analyzed accounting the bioperation mode. In addition, a synchronization method of the primary and reverse injection pickups is proposed. A criterion to determine the boundary of the reverse energy injection is also presented. By detecting the peak current, this energy injection method can be practically implemented and the proposed method is verified through the experimental results.
机译:轨道无线电力传输(WPT)系统越来越多地用于单轨机器人,工业运输等,传统上,轨道WPT系统的主要电源设计为等于或高于运行拾取器的总功率。然而,在实践中,一些拾取器可能瞬时需要比其正常操作状态更多的功率。增加瞬态外壳的主要来源的功率额定值是不成本的。因此,本文提出了一种通过从可用的在线拾取器向瞬时过度额定的电力拾取来加强轨道的电力传输能力的方法。提出了一种生物化模式,其包括正常操作和强化操作。使用双向拾取拓扑,并分析了等效电路算起了生物化模式。此外,提出了一种主和反向喷射拾取器的同步方法。还提出了确定反向能注射边界的标准。通过检测峰值电流,可以实际地实现该能量注入方法,并通过实验结果验证所提出的方法。

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