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An all-digital transmitter for pulsed ultra-wideband communication

机译:用于脉冲超宽带通信的全数字发送器

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摘要

Applications like sensor networks, medical monitoring, and asset tracking have led to a demand for energy-efficient and low-cost wireless transceivers. These types of applications typically require low effective data rates, thus providing an opportunity to employ simple modulation schemes and aggressive duty-cycling. Due to their inherently duty-cycled nature, pulse-based Ultra-Wideband (UWB) systems are amenable to low-power operation by shutting off circuitry during idle mode between pulses. Furthermore, the use of non-coherent UWB signaling greatly simplifies both transmitter and receiver implementations, offering additional energy savings. This thesis presents an all-digital transmitter designed for a non-coherent pulsed UWB system. By exploiting relaxed center frequency tolerances in non-coherent wideband communication, the transmitter synthesizes UWB pulses from an energy efficient, single-ended digital ring oscillator. Dual capacitively-coupled digital power amplifiers (PAs) are used in tandem to generate bipolar phase modulated pulses for spectral scrambling purposes. By maintaining opposite common modes at the output of these PAs during idle mode (i.e. when no pulses are being transmitted), low frequency turn-on and turn-off transients typically associated with single-ended digital circuits driving single-ended antennas are attenuated by up to 12dB. Furthermore, four level digital pulse shaping is employed to attenuate RF side lobes by up to 20dB. The resulting dual power amplifiers achieve FCC compliant operation in the 3.5, 4.0, and 4.5GHz IEEE 802.15.4a bands without the use of any off-chip filters or large passive components. The transmitter is fabricated in a 90nm CMOS process and requires a core area of 0.07mm2. The entirely digital architecture consumes zero static bias current, resulting in an energy efficiency of 17.5pJ/pulse at data rates up to 15.6Mbps.
机译:传感器网络,医疗监控和资产跟踪等应用导致对节能,低成本的无线收发器的需求。这些类型的应用通常需要较低的有效数据速率,从而为采用简单的调制方案和激进的占空比提供了机会。由于其固有的占空比特性,基于脉冲的超宽带(UWB)系统可通过在脉冲之间的空闲模式下关闭电路来实现低功耗操作。此外,非相干UWB信令的使用大大简化了发射机和接收机的实现,从而节省了更多能源。本文提出了一种用于非相干脉冲超宽带系统的全数字发射机。通过在非相干宽带通信中利用宽松的中心频率容限,发送器可以从高效节能的单端数字环形振荡器合成UWB脉冲。串联使用双电容耦合数字功率放大器(PA)来生成用于频谱加扰的双极性相位调制脉冲。通过在空闲模式期间(即,当没有脉冲传输时)在这些PA的输出端保持相反的共模,通常与驱动单端天线的单端数字电路相关的低频导通和关断瞬变会被衰减。高达12dB。此外,采用四级数字脉冲整形将RF旁瓣衰减高达20dB。最终的双功率放大器无需使用任何片外滤波器或大型无源元件,即可在3.5、4.0和4.5GHz IEEE 802.15.4a频段实现FCC兼容操作。该发射器采用90nm CMOS工艺制造,并且需要0.07mm2的核心面积。全数字架构消耗的静态偏置电流为零,在高达15.6Mbps的数据速率下,能效为17.5pJ /脉冲。

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    Mercier Patrick Philip;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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