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UWB radio module design for wireless sensor networks

机译:用于无线传感器网络的UWB无线电模块设计

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In this paper, we describe an impulse-based ultra wideband (UWB) radio system for wireless sensor network (WSN) applications. Different architectures have been studied for base station and sensor nodes. The base station node uses coherent UWB architecture because of the high performance and good sensitivity requirements. However, to meet complexity, power and cost constraints, the sensor module uses a novel non-coherent architecture that can autonomously detect the UWB signals. The radio modules include a transceiver block, a baseband processing unit and a power management block. The transceiver block includes a Gaussian pulse generator, a multiplier, an integrator and timing circuits. For long range applications, a wideband low noise amplifier (LNA) is included in the transceiver of the sensor module, whereas in short range applications it is simply eliminated to further reduce the power consumption. In order to verify the proposed system concept, circuit level implementation is studied using 1.5 V 0.18 μm CMOS technology. Finally, the UWB radio modules have been designed for implementation in liquid-crystal-polymer (LCP) based System-on-Package (SoP) technology for low power, low cost and small size integration. A small low cost, double-slotted, Knight’s helm antenna is embedded in the LCP substrate, which shows stable characterization and a return loss better than ?10 dB over the UWB band.
机译:在本文中,我们描述了一种用于无线传感器网络(WSN)应用的基于脉冲的超宽带(UWB)无线电系统。已经针对基站和传感器节点研究了不同的架构。由于高性能和良好的灵敏度要求,基站节点使用相干的UWB体系结构。但是,为了满足复杂性,功耗和成本方面的限制,传感器模块使用了一种新型的非相干架构,可以自主检测UWB信号。无线电模块包括收发器模块,基带处理单元和电源管理模块。收发器模块包括一个高斯脉冲发生器,一个乘法器,一个积分器和定时电路。对于长距离应用,传感器模块的收发器中包含一个宽带低噪声放大器(LNA),而在短距离应用中,它被简单地消除了,以进一步降低功耗。为了验证所提出的系统概念,使用1.5 V 0.18μmCMOS技术研究了电路级实现。最后,UWB无线电模块已设计为在基于液晶聚合物(LCP)的系统级封装(SoP)技术中实现,以实现低功耗,低成本和小尺寸集成。 LCP基板中嵌入了一个小型的低成本双槽Knight掌舵天线,该天线显示出稳定的特性,在UWB频段上的回波损耗优于10 dB。

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