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Adaptive multi-standard circuits and systems for wireless communications

机译:用于无线通信的自适应多标准电路和系统

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Telecom trends such as smooth migration towards higher data rates and higher capacities for multimedia applications, and provision of various services (text, audio, video) from different standards with the same wireless device require integrated designs that work across multiple standards, can easily be reused and achieve maximum hardware share at minimum power consumption. This can be achieved by using adaptive circuits that are able to trade off power consumption for performance on the fly. Realization of the adaptivity function requires scaling of parameters such as current consumption to the demands of the signal-processing task. This paper describes adaptivity design concepts and application of design for adaptivity to multi-standard circuits and systems for wireless communications. An exploratory multi-standard RF front-end is discussed with phase-noise tuning, noise-figure tuning, and input-intercept point tuning requirements of 21 dB, 12 dB, and 7 dB, respectively.
机译:电信趋势,例如向更高的数据速率和更高的多媒体应用容量平滑过渡,以及使用同一无线设备提供不同标准的各种服务(文本,音频,视频),要求跨多个标准工作的集成设计可以轻松重用并以最小的功耗实现最大的硬件共享。这可以通过使用自适应电路来实现,该自适应电路能够权衡功耗与动态性能之间的关系。自适应功能的实现需要按比例缩放参数,例如电流消耗,以适应信号处理任务的需求。本文介绍了适应性设计的概念以及针对无线通信的多标准电路和系统的适应性设计的应用。讨论了探索性多标准RF前端,其相位噪声调谐,噪声系数调谐和输入截取点调谐要求分别为21 dB,12 dB和7 dB。

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