An analytical model of transmitting arrays with excitation perturbations for microwave power transmission

Shuo Zhang, Shunxi Lou, Wei Wang, Yuanchen Zeng, Xiang Gao
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Abstract

An analytical model is proposed to calculate the performance on beam collecting efficiency (BCE) of transmitting arrays with excitation errors for microwave power transmission (MPT). Due to the inconsistent output of power amplifiers and the uncertainty of the joint loss of radio frequency (RF) device, the small perturbations will be brought into excitation amplitudes and phases, which will decrease the BCE. This analytical model involves the use of a Taylor series expansion to account for small perturbations in the excitation errors. The mathematical model between the statistical information of excitation perturbations and BCE is directly established. To fully prove the accuracy of the given model, numerous random samples will be used to compare the results of the proposed model and Monte Carlo simulation (MCS). Compared with the MCS, the proposed model does not require much-repeated calculation. The proposed method can be applied at the antenna design stage to effectively evaluate the effect of excitation perturbations on the BCE.
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微波功率传输中具有激励扰动的发射阵列解析模型
针对微波功率传输中存在激励误差的发射阵列,提出了一种计算发射阵列集束效率的解析模型。由于功率放大器输出的不一致性和射频器件联合损耗的不确定性,会在激励幅值和相位上带来微小的扰动,从而降低BCE。该解析模型使用泰勒级数展开来解释激励误差中的小扰动。直接建立了激励摄动统计信息与BCE之间的数学模型。为了充分证明给定模型的准确性,将使用大量随机样本来比较所提出模型和蒙特卡罗模拟(MCS)的结果。与MCS模型相比,该模型不需要大量的重复计算。该方法可应用于天线设计阶段,有效地评估激励摄动对BCE的影响。
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