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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A Novel Load Mismatch Detection and Correction Technique for 3G/4G Load Insensitive Power Amplifier Application
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A Novel Load Mismatch Detection and Correction Technique for 3G/4G Load Insensitive Power Amplifier Application

机译:适用于3G / 4G负载不敏感功率放大器应用的新型负载失配检测和校正技术

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摘要

This paper proposes a novel load mismatch detection and correction technique to develop a load insensitive power amplifier (PA). The presented algorithm for the technique can simply be implemented by handling load impedance as a region rather than a point. Based on the detection results, a tunable output matching network (TOMN) corrects a mismatched load and transforms it into a desired region, thereby dramatically enhancing PA performances under load mismatched condition with a minimal compromising at a matched load. The detectors and TOMN were simply implemented using a silicon-on-insulator field-effect transistor, which were integrated with a InGaP/GaAs HBT PA monolithic microwave integrated circuit into a single module. A PA module was implemented using more advanced impedance detectors having eight-phase regions, which was measured with WCDMA R’99 and 10-MHz 16QAM long-term evolution signals centered at 1.95 GHz for verification of the proposed idea. When compared to a conventional PA, excellent adjacent channel leakage ratio improvements of 12.7 and 8.3 dB, respectively, were achieved under output voltage standing-wave ratio (VSWR) of 2.5:1 for both applications. Moreover, the idea was extended for efficiency enhancement in a linearity spec-compliant impedance region, and the PA showed power-added efficiency improvements of 1.6% and 0.5%, respectively, under output VSWR of 2.5:1 for both applications.
机译:本文提出了一种新颖的负载失配检测和校正技术,以开发负载不敏感功率放大器(PA)。可以通过将负载阻抗作为一个区域而不是一个点来简单地实现该技术的算法。根据检测结果,可调输出匹配网络(TOMN)校正不匹配的负载并将其转换到所需的区域,从而在负载不匹配的情况下显着增强PA性能,而对匹配负载的损害最小。探测器和TOMN可以使用绝缘体上硅场效应晶体管简单地实现,它们与InGaP / GaAs HBT HBT PA单片微波集成电路集成到单个模块中。使用具有八相区域的更高级的阻抗检测器来实现PA模块,可以使用WCDMA R’99和以1.95 GHz为中心的10 MHz 16QAM长期演进信号进行测量,以验证所提出的想法。与传统的PA相比,两种应用在输出电压驻波比(VSWR)为2.5:1的情况下,分别实现了12.7和8.3 dB的出色的邻道泄漏比改善。此外,该想法已扩展为在符合线性规格的阻抗区域中提高效率,并且在两种应用的输出VSWR为2.5:1的情况下,PA的功率附加效率分别提高了1.6%和0.5%。

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