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MEMS-based RF channel selection for true software-defined cognitive radio and low-power sensor communications

机译:基于MEMS的RF通道选择,可实现真正的软件定义的认知无线电和低功耗传感器通信

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摘要

An evaluation of the potential for MEMS technologies to realize the RF front-end frequency gating spectrum analyzer function needed by true software-defined cognitive radios and ultra-low-power autonomous sensor network radios is presented. Here, RF channel selection, as opposed to band selection that removes all interferers, even those in band, and passes only the desired channel, is key to substantial potential increases in call volume with simultaneous reductions in power consumption. The relevant MEMS technologies most conducive to RF channel- selecting front-ends include vibrating micromechanical resonators that exhibit record on-chip Qs at gigahertz frequencies; resonant switches that provide extremely efficient switched-mode power gain for both transmit and receive paths; medium-scale integrated micromechanical circuits that implement on/off switchable filter-amplifier banks; and fabrication technologies that integrate MEMS together with foundry CMOS transistors in a fully monolithic low-capacitance single-chip process. The many issues that make realization of RF channel selection a truly challenging proposition include resonator drift stability, mechanical circuit complexity, repeatability and fabrication tolerances, and the need for resonators at gigahertz frequencies with simultaneous high :9; (>30,000) and low impedance (e.g., 50 W for conventional systems). Some perspective on which resonator technologies might best achieve these simultaneous attributes is provided.
机译:评估了MEMS技术实现真正的软件定义的认知无线电和超低功耗自主传感器网络无线电所需的RF前端频率门控频谱分析仪功能的潜力。在此,与消除所有干扰源(即使是频带内的干扰源并仅通过所需的信道)的频带选择相反,RF信道选择是大幅提高通话量并同时降低功耗的关键。最有利于RF通道选择前端的相关MEMS技术包括振动微机械谐振器,该谐振器在千兆赫兹频率下具有创纪录的片上Qs。谐振开关,可为发射和接收路径提供极为有效的开关模式功率增益;中型集成微机械电路,实现开/关可切换的滤波器放大器组;以及将MEMS与代工CMOS晶体管集成在一起的制造技术,并采用完全单片低电容单芯片工艺。使RF通道选择成为真正具有挑战性的命题的许多问题包括谐振器漂移稳定性,机械电路复杂性,可重复性和制造公差,以及对同时具有高:9的千兆赫频率谐振器的需求; (> 30,000)和低阻抗(例如传统系统为50 W)。提供了关于哪种谐振器技术可以最好地实现这些同时属性的一些观点。

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