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首页> 外文期刊>Journal of Low Power Electronics >Environment and Process Adaptive Low Power Wireless Baseband Signal Processing Using Dual Real-Time Feedback
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Environment and Process Adaptive Low Power Wireless Baseband Signal Processing Using Dual Real-Time Feedback

机译:使用双实时反馈的环境和过程自适应低功耗无线基带信号处理

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摘要

As technology scales below the 45 nm CMOS technology node, RF front ends and baseband processors will need to be aggressively overdesigned to work reliably under worst case channel (environment) conditions as well as worst case manufacturing variations. In this paper, a new dual feedback based design approach is proposed that allows the baseband unit of a wireless OFDM system to adapt dynamically to channel conditions as well as manufacturing process variations. Two nested feedback control loops are used. The first allows the baseband SNR to increase when channel conditions are good and vice versa by modulating system wordlength. The second modulates the system supply voltage in response to the resulting changing wordlength values. Both feedback loops are designed to allow the processor to operate at the minimum power consumption possible without exceeding a specified overall bit error rate across process variability conditions and dynamically changing noise conditions.
机译:随着技术规模扩展到低于45 nm CMOS技术节点,RF前端和基带处理器将需要进行积极的过度设计,以在最坏情况的通道(环境)条件和最坏情况的制造变化下可靠地工作。在本文中,提出了一种新的基于双反馈的设计方法,该方法允许无线OFDM系统的基带单元动态适应信道条件以及制造工艺变化。使用了两个嵌套的反馈控制回路。第一种方法是在信道状况良好时通过调制系统字长来提高基带SNR,反之亦然。第二个响应于结果变化的字长值来调制系统电源电压。两个反馈环路均设计为允许处理器以尽可能低的功耗运行,而不会在过程可变性条件和动态变化的噪声条件下超过指定的总误码率。

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