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多音信号射频-直流转换效率估计的快速准确方法

Fast and Accurate Approach to RF-DC Conversion Efficiency Estimation for Multi-Tone Signals.

作者信息

Eidaks Janis, Kusnins Romans, Babajans Ruslans, Cirjulina Darja, Semenjako Janis, Litvinenko Anna

机构信息

Institute of Radioelectronics, Riga Technical University, Kalku St. 1, LV-1050 Riga, Latvia.

出版信息

Sensors (Basel). 2022 Jan 20;22(3):787. doi: 10.3390/s22030787.

Abstract

The paper presents a computationally efficient and accurate numerical approach to evaluating RF-DC power conversion efficiency (PCE) for energy harvesting circuits in the case of multi-tone power-carrying signal with periodic envelopes. This type of signal has recently received considerable attention in the literature. It has been shown that their use may result in a higher PCE than the conventional sine wave signal for low to medium input power levels. This reason motivated the authors to develop a fast and accurate two-frequency harmonic balance method (2F-HB), as fast PCE calculation might appreciably expedite the converter circuit optimization process. In order to demonstrate the computational efficiency of the 2F-HB, a comparative study is performed. The results of this study show that the 2F-HB significantly outperforms such extensively used methods as the transient analysis (TA), the harmonic balance method (HB), and the multidimensional harmonic balance method (MHB). The method also outperforms the commercially available non-linear circuit simulator Keysight ADS employing both HB and MHB. Furthermore, the proposed method can be readily integrated into commonly used commercially available non-linear circuit simulation software, including the Keysight ADS, Ansys HFSS, just to name a few-minor modifications are required. In addition, to increase the correctness and reliability of the proposed method, the influence of PCB is considered by calculating Y parameters of its 3D model. The widely employed voltage doubler-based RF-DC converter for energy harvesting and wireless power transfer (WPT) in sub-GHz diapason is chosen to validate the proposed method experimentally. This RF-DC converter is chosen for its simplicity and capability to provide sufficiently high PCE. The measurements of the PCE for a voltage doubler prototype employing different multi-tone waveform signals were performed in laboratory conditions. Various combinations of the matching circuit element values were considered to find the optimal one in both-theoretical model and experimental prototype. The measured PCE is in very good agreement with the PCE calculated numerically, which attests to the validity of the proposed approach. The proposed PCE estimation method is not limited to one selected RF-DC conversion circuit and can also be applied to other circuits and frequency bands. The comparison of the PCE obtained by means of the proposed approach and the measured one shows very good agreement between them. The PCE estimation error reaches as low as 0.37%, and the maximal estimation error is 32.65%.

摘要

本文提出了一种计算高效且准确的数值方法,用于评估具有周期性包络的多音带功率信号情况下能量收集电路的射频-直流功率转换效率(PCE)。这类信号最近在文献中受到了相当多的关注。研究表明,对于中低输入功率水平,使用它们可能会比传统正弦波信号带来更高的PCE。出于这个原因,作者开发了一种快速且准确的双频谐波平衡方法(2F-HB),因为快速的PCE计算可能会显著加快转换器电路的优化过程。为了证明2F-HB的计算效率,进行了一项对比研究。该研究结果表明,2F-HB明显优于诸如瞬态分析(TA)、谐波平衡法(HB)和多维谐波平衡法(MHB)等广泛使用的方法。该方法也优于同时采用HB和MHB的商用非线性电路模拟器Keysight ADS。此外,所提出的方法可以很容易地集成到常用的商用非线性电路仿真软件中,包括Keysight ADS、Ansys HFSS等,只需进行一些小的修改。另外,为了提高所提方法的正确性和可靠性,通过计算其三维模型的Y参数来考虑印刷电路板(PCB)的影响。选择在亚吉赫兹频段广泛使用的基于倍压器的射频-直流转换器用于能量收集和无线功率传输(WPT),以通过实验验证所提方法。选择这种射频-直流转换器是因为其简单且能够提供足够高的PCE。在实验室条件下对采用不同多音波形信号的倍压器原型的PCE进行了测量。考虑了匹配电路元件值的各种组合,以在理论模型和实验原型中找到最优组合。测量得到的PCE与数值计算得到的PCE非常吻合,这证明了所提方法的有效性。所提出的PCE估计方法不限于一种选定的射频-直流转换电路,也可应用于其他电路和频段。通过所提方法获得的PCE与测量得到的PCE之间的比较显示它们之间非常吻合。PCE估计误差低至0.37%,最大估计误差为32.65%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0067/8839596/b060c76d301f/sensors-22-00787-g001.jpg

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