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An Agile Supply Modulator With Improved Transient Performance for Power Efficient Linear Amplifier Employing Envelope Tracking Techniques

机译:利用包络跟踪技术的功率效率线性放大器的瞬态性能得到改善的敏捷电源调制器

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摘要

This article presents an agile supply modulator with optimal transient performance that includes improvement in rise time, overshoot and settling time for the envelope tracking supply in linear power amplifiers. For this purpose, we propose an on-demand current source module: the bang-bang transient performance enhancer (BBTPE). Its objective is to follow fast variations in input signals with reduced overshoot and settling time without deteriorating the steady-state performance of the buck regulator. The proposed approach enables fast system response through the BBTPE and an accurate steady-state output response through a low switching ripple and power efficient dynamic buck regulator. Fast output response with the help of the added module induces a slower rise of inductor current in the buck converter that further helps the proposed system to reduce both overshoot and settling time. This article also introduces an efficient selective tracking of envelope signal for linear PAs. To demonstrate the feasibility of the proposed solution, extensive simulations and experimental results from a discrete system are reported. The proposed supply modulator shows 80 improvement in rise time along with 60 reduction in both overshoot and settling time compared to the conventional dynamic buck regulator-based solution. Experimental results using the LTE 16-QAM 5MHz standard shows improvement of 7.68dB and 65.1 in adjacent channel power ratio (ACPR) and error vector magnitude (EVM), respectively.
机译:本文提出了一种具有最佳瞬态性能的敏捷电源调制器,其中包括线性功率放大器中包络跟踪电源的上升时间,过冲和建立时间的改善。为此,我们提出了一个按需电流源模块:爆炸瞬态性能增强器(BBTPE)。其目的是在不降低降压调节器稳态性能的情况下,跟随输入信号的快速变化,减少过冲和建立时间。所提出的方法可通过BBTPE实现快速系统响应,并通过低开关纹波和省电的动态降压稳压器实现准确的稳态输出响应。借助于增加的模块,快速的输出响应会导致降压转换器中电感器电流的缓慢上升,从而进一步帮助所建议的系统减少过冲和建立时间。本文还介绍了针对线性PA的包络信号的有效选择性跟踪。为了证明所提出解决方案的可行性,报告了来自离散系统的大量仿真和实验结果。与传统的基于动态降压稳压器的解决方案相比,拟议的电源调制器在上升时间方面提高了80%,在过冲和建立时间方面减少了60%。使用LTE 16-QAM 5MHz标准的实验结果表明,相邻信道功率比(ACPR)和误差矢量幅度(EVM)分别提高了7.68dB和65.1。

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