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Instantaneous power variance and radio frequency to dc conversion efficiency of wireless power transfer systems

机译:无线电源传输系统的瞬时功率变化和射频到dc的转换效率

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This study compares the maximum rectifier radio frequency (RF)–dc conversion efficiency for various input signals with random modulation. The instantaneous power variance (IPV) is proposed as an easy to compute parameter to classify the effect of modulation on the obtained rectifier efficiency. A prototype ultra high frequency (UHF) rectifier is used to simulate as well as measure the performance of randomly modulated signals with binary phase-shift keying (BPSK), quadrature phase-shift keying (QPSK), 8 phase-shift keying (PSK) and 64 quadrature amplitude modulation (QAM) modulations. In addition to considering different modulation formats, the roll-off factor of the baseband filter is also varied due to the fact that it has a strong impact on the time-varying nature of the signal envelope. For the given rectifier, it is shown that the peak RF–dc conversion efficiency versus the output load is shifted to larger load values for signals with higher IPV. Furthermore, by comparing signals with different time-varying envelope characteristics, it is shown that IPV represents a more accurate signal characteristic than peak-to-average power ratio in terms of properly characterising the effect of modulation on the rectifier efficiency.
机译:本研究比较了采用随机调制的各种输入信号的最大整流器射频(RF)-dc转换效率。瞬时功率方差(IPV)被提出作为易于计算的参数,以对调制对所获得的整流器效率的影响进行分类。使用原型超高频(UHF)整流器来模拟和测量具有二进制相移键控(BPSK),正交相移键控(QPSK),8相移键控(PSK)的随机调制信号的性能和64个正交幅度调制(QAM)调制。除了考虑不同的调制格式外,基带滤波器的滚降因子也因其对信号包络的时变特性有很大影响而改变。对于给定的整流器,可以看出,对于具有更高IPV的信号,RF-dc峰值转换效率与输出负载之间的关系已移至更大的负载值。此外,通过比较具有不同随时间变化的包络线特性的信号,从正确表征调制对整流器效率的影响方面来看,IPV表示比峰均功率比更准确的信号特性。

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