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Spatial Power Combining of Multi-Sine Signals for Wireless Power Transmission Applications

机译:多正弦信号的空间功率组合在无线电力传输中的应用

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This paper presents two transmitter architectures for wireless power transmission (WPT) applications. These architectures aim at transmitting high peak-to-average power ratio (PAPR) multi-sine signals, which have demonstrated to improve the RF-dc conversion efficiency of rectifier circuits, such as the ones in the receiving end of a WPT system. In order to overcome the challenges associated to the amplification of high PAPR signals, the proposed schemes make use of the spatial power combining concept, in which the individual signal components are amplified, radiated, and then combined in free space. In order to achieve the high PAPR signals, proper synchronization of the individual tones is required. Two architectures are proposed. The first one is based on the transmission of single-tone signals that are externally locked to a common reference signal that establishes the necessary phase reference. The second architecture is based on a mode-locked oscillator scheme that requires no external reference signal. Instead, this scheme takes advantage of the synchronization phenomena in oscillator circuits to establish the phase reference. Measurements are presented to validate both schemes and to show their effectiveness in improving the RF-dc conversion efficiency in rectifier circuits.
机译:本文介绍了两种用于无线电力传输(WPT)应用的发射机架构。这些架构旨在传输高峰均功率比(PAPR)多正弦信号,这些信号已被证明可以提高整流电路(例如WPT系统接收端的整流电路)的RF-dc转换效率。为了克服与高PAPR信号的放大相关的挑战,提出的方案利用了空间功率组合概念,其中将各个信号分量放大,辐射,然后在自由空间中进行组合。为了获得高PAPR信号,需要各个音调的适当同步。提出了两种架构。第一个是基于单音信号的传输,该信号从外部锁定到建立必要相位参考的公共参考信号。第二种架构基于不需要外部参考信号的锁模振荡器方案。相反,该方案利用振荡器电路中的同步现象来建立相位参考。进行了测量,以验证这两种方案并显示其在提高整流器电路中RF-dc转换效率方面的有效性。

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