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Improved adaptive impedance matching for RF front-end systems of wireless transceivers

机译:改进无线收发器RF前端系统的自适应阻抗匹配

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摘要

In this paper an automatic adaptive antenna impedance tuning algorithm is presented that is based on quantum inspired genetic optimization technique. The proposed automatic quantum genetic algorithm (AQGA) is used to find the optimum solution for a low-pass passive T-impedance matching LC-network inserted between an RF transceiver and its antenna. Results of the AQGA tuning method are presented for applications across 1.4 to 5?GHz (satellite services, LTE networks, radar systems, and WiFi bands). Compared to existing genetic algorithm-based tuning techniques the proposed algorithm converges much faster to provide a solution. At 1.4, 2.3, 3.4, 4.0, and 5.0?GHz bands the proposed AQGA is on average 75%, 49.2%, 64.9%, 54.7%, and 52.5% faster than conventional genetic algorithms, respectively. The results reveal the proposed AQGA is feasible for real-time application in RF-front-end systems.
机译:本文介绍了一种基于量子启发性遗传优化技术的自动自适应天线阻抗调谐算法。所提出的自动量子遗传算法(AQGA)用于找到插入在RF收发器及其天线之间的低通无线电T型阻抗匹配LC网络的最佳解决方案。 AQGA调谐方法的结果显示为1.4到5?GHz(卫星服务,LTE网络,雷达系统和WIFI频段)。与现有的基于遗传算法的调谐技术相比,所提出的算法会收敛到提供解决方案的速度要快得多。在1.4,2.3,3.4,4.0和5.0?GHz乐队的拟议AQGA平均分别比传统遗传算法平均为75%,49.2%,64.9%,54.7%和52.5%。结果揭示了所提出的AQGA可用于RF - 前端系统的实时应用。

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