标题: 应用于无线近身网路之可调式全数位时脉产生器
A Tunable All-Digital Clock Generator for Wireless Body Area Network Applications
作者: 陈俊廷
Juinn-Ting Chen
李镇宜
Chen-Yi Lee
电子研究所
关键字: 时脉产生器;数位控制振荡器;相位频率调整;低功率;制程供压温度;clock generator;digitally controlled oscillator;phase-frequency tunable;low power;process-voltage-temperature
公开日期: 2008
摘要: 对于逐渐受到重视的无线近身网路来说,高可靠度、可携式与低制造成本的需求成为近年来最重要的研究主题之一。准确无误地侦测人体生医资讯,并且以有限的功率消耗加以传输讯号是无线近身网路的主要诉求。而在微小的感测贴片上做系统整合则是相当大的挑战。
本篇论文将会针对应用于无线近身网路的时脉产生器做介绍,并以高可靠度、低功耗、低面积的观点来设计一个可调式全数位时脉产生器。藉由可调整相位及频率的时脉产生器与动态取样相位频率调整技术搭配,可在传输的封包错误率达到1%时,使整体效能仅有0.25dB损耗,同时并降低接收端的类比转数位电路功耗达46%。而为了更进一步降低前述时脉产生器的功率消耗,本篇论文也提出一种应用迟滞电路来设计数位控制振荡器的方法,所设计的5MHz数位振荡器,其最小解析度可达0.78ps,功率消耗仅为2.6uW。在本篇论文的最后将会介绍一种可容忍制程、电压、温度飘移的全数位时脉产生器来当作可调式全数位时脉产生器的讯号源,其功率消耗为343uW、频率误差最大为0.002%,可搭配频率控制电路来取代传统的石英振荡器。而以上所述的可调式全数位时脉产生器共可在无线感测端降低89.8%与88.1%的功率与面积消耗,使其达成在无线近身网路上高可靠度、可携式与低制造成本的需求。
For wireless body area network applications, the reliability, portability and cost are the significant studies in the recent years. In order to accurately monitor the biomedical signals without interference, system reliability is the challenge. For battery limited applications, the feature of low power consumption is undoubtedly required whenever the system is operating or standby. The demand of small size in sensor tags increases the difficulty in system integration, especially within a common used quartz crystal oscillator.
In this thesis, we propose an all-digital tunable clock generator for wireless body area network applications. For 46 % ADC power reduction and only 0.25 dB SNR loss at PER=1 %, a phase-frequency tunable clock generator is applied with dynamic phase-frequency recovery technologies. So as to reduce power consumption on the always-on clock generator, a hysteresis-delay-cell-based digitally controlled oscillator is introduced, which has 0.78 ps delay resolution and consumes 2.6 uW at 5 MHz. Finally, an all-digital and cell-based PVT tolerance clock generator is described for replacing the reference quartz crystal oscillator. It achieves 343 uW and 0.002 % maximum frequency offset by frequency tuning capability. The overall designs enable the power and area reduction by 89.8 % and 88.1 % in wireless sensor nodes, respectively.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009511620
http://hdl.handle.net/11536/38143
显示于类别:Thesis


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