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Timing synchronization in super-regenerative receivers with a single quench cycle per symbol

机译:每个符号具有单个淬灭周期的超再生接收机中的定时同步

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Super-regenerative receivers (SRR) are known for their ultra-low power (ULP) consumption. However, its wide frequency selectivity seriously degrades performance especially in the presence of interference. An attractive approach to address this problem is by lowering the quench rate of the SRR to the modulation rate. However, this brings in uncertainty due to lack of oversamples and leads to the timing synchronization problem in demodulation. This paper proposes a timing synchronization method for SRR with a single quench cycle per modulated symbol. A novel asynchronous preamble structure and an associated timing synchronization algorithm are proposed. Significant performance gains are obtained due to the improved frequency selectivity enabling the SRR system to adhere to the constraints set forth by the IEEE 802.15.4 standard while maintaining the ULP advantage.
机译:超再生接收器(SRR)以超低功耗(ULP)消耗而著称。但是,其宽的频率选择性严重降低了性能,尤其是在存在干扰的情况下。解决此问题的一种有吸引力的方法是将SRR的猝灭速率降低到调制速率。然而,由于缺乏过采样,这带来了不确定性,并导致了解调中的定时同步问题。本文提出了一种针对每个调制符号具有单个猝灭周期的SRR时序同步方法。提出了一种新颖的异步报头结构和相关的定时同步算法。由于频率选择性的提高,使得SRR系统能够遵守IEEE 802.15.4标准提出的限制,同时又保持了ULP的优势,从而获得了显着的性能提升。

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