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Low-power high-accuracy timing systems for efficient duty cycling

机译:低功耗高精度计时系统,可实现高效占空比

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Time keeping and synchronization are important services for networked and embedded systems. High quality timing information allows embedded network nodes to provide accurate time-stamping, fast localization, efficient duty cycling schedules, and other basic but essential functions - all of which are required for low power operation. In this paper we present a new type of local clock source called Crystal Compensated Crystal based Timer (XCXT) and a number of novel algorithms that effectively utilize it to achieve low power consumption in wireless sensor networks. The XCXT has timing accuracies similar to timers based on temperature compensated crystal oscillators (TCXO) but has a lower implementation cost and requires less power. Our initial 8MHz prototype unit, using the simplest algorithm, achieves an effective frequency stability of ±1.2ppm and consumes only 1.27mW. On the other hand, commercially available TCXOs with similar stability can cost over 10 times as much and consume over 20mW. In addition to the prototype, we will present algorithms that will improve the XCXT''s power consumption by at least 48%, depending on application and environmental conditions. We will also show how XCXT''s power efficiency can be improved even further by employing clocks at different frequency when different time granularities are required by an application.
机译:计时和同步是联网和嵌入式系统的重要服务。高质量的时序信息使嵌入式网络节点能够提供准确的时间戳,快速的本地化,有效的占空比调度以及其他基本但必不可少的功能-所有这些都是低功耗操作所必需的。在本文中,我们介绍了一种新型的本地时钟源,称为基于晶体补偿的基于晶体的定时器(XCXT),以及可有效利用它来实现无线传感器网络中低功耗的许多新颖算法。 XCXT具有与基于温度补偿晶体振荡器(TCXO)的计时器相似的计时精度,但具有较低的实现成本并且需要较少的功率。我们最初的8MHz原型单元,使用最简单的算法,可实现±1.2ppm的有效频率稳定性,并且仅消耗1.27mW。另一方面,具有类似稳定性的市售TCXO的成本可能是其的10倍以上,并且消耗的功率超过20mW。除了原型之外,我们还将提出可根据应用和环境条件将XCXT的功耗至少降低48%的算法。我们还将展示如何在应用程序需要不同的时间粒度时,通过使用不同频率的时钟来进一步提高XCXT的功率效率。

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