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Synthesizer concepts for FMCW based locatable wireless sensor nodes

机译:基于FMCW的可定位无线传感器节点的合成器概念

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Local positioning systems significantly enhance the value of wireless sensor networks (WSN). This paper first motivates the use of WSN with exemplary application scenarios. Afterwards it shortly addresses the basics of frequency modulated continuous wave (FMCW) systems. Several common synthesizer concepts for FMCW radars are shown. The paper focuses on a novel integrated synthesizer for localization using frequency modulated continuous wave (FMCW) radar. The synthesizer is based on a fractional-n phase-locked loop (PLL) architecture. All components of the PLL are carefully designed with respect to their performance and power consumption. The complete synthesizer was manufactured in a 0.18μm SiGe BiCMOS process from IBM, and it draws only 39mA from the supply. It achieves a phase noise better than -113dBc/Hz and has a silicon area of 1.15mm~2. Due to its high integration level and its optimized design, the synthesizer achieves low power consumption and low phase noise that makes it suitable for precise localization in mobile sensor nodes. Localization measurements in indoor environments with multi-path propagation showed mean distance errors about 13cm.
机译:局部定位系统显着提高了无线传感器网络(WSN)的价值。本文首先激励使用WSN与示例性应用方案。之后,它不久地解决了频率调制的连续波(FMCW)系统的基础知识。显示了用于FMCW雷达的几种常见合成器概念。本文侧重于使用频率调制的连续波(FMCW)雷达的本地化的新型集成合成器。合成器基于分数-N锁相环(PLL)架构。 PLL的所有组件都经过仔细设计了它们的性能和功耗。完整的合成器由IBM的0.18μmSiGeBICMOS工艺制造,并从供应中汲取39mA。它达到了比-113dBc / hz的相位噪声,硅面积为1.15mm〜2。由于其高集成电平及其优化设计,合成器实现了低功耗和低相位噪声,使其适用于移动传感器节点中的精确定位。具有多路径传播的室内环境中的本地化测量显示约13cm的平均距离误差。

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