Pro-VIZOR: Process tunable virtually zero margin low power adaptive RF for wireless systems

Shreyas Sen, Vishwanath Natarajan, R. Senguttuvan, A. Chatterjee
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引用次数: 43

Abstract

In this paper, a process tunable, continuously adaptive wireless front end architecture and related adaptation algorithms are presented that allow an RF transceiver to function at minimum power irrespective of channel conditions and process variability induced performance loss in the RF front end and baseband interface. Current wireless transceiver front ends are designed for worst case channel conditions and a limited degree of post manufacture tuning is performed to compensate for process variations. It is shown how the proposed architecture can result in significant power savings over current practice without compromising system-level bit error rate. The adaptation methodology is applied to a WLAN transceiver design and hardware measurement data for an adaptive receiver is presented.
Pro-VIZOR:用于无线系统的过程可调谐几乎为零边际的低功率自适应射频
在本文中,提出了一种过程可调、连续自适应的无线前端架构和相关的自适应算法,该算法允许射频收发器在最小功率下工作,而不考虑信道条件和过程可变性在射频前端和基带接口中引起的性能损失。目前的无线收发器前端是为最坏的信道条件而设计的,并且进行了有限程度的制造后调谐以补偿工艺变化。它展示了所提出的架构如何在不影响系统级误码率的情况下,在当前实践中显著节省功耗。将该自适应方法应用于无线局域网收发器设计,并给出了自适应接收机的硬件测量数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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