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A Low-Power, Low Data-Rate, Ultra-Wideband Receiver Architecture for Indoor Wireless Systems

机译:用于室内无线系统的低功耗,低数据速率,超宽带接收器架构

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In this paper, a novel architecture for a low data-rate, low power consumption Impulse Radio (IR) Ultra-Wideband (UWB) receiver is presented in which the received UWB signal is downconverted to a given intermediate frequency (IF) rather than at baseband. This way, the requirement to implement two separate paths for the in-phase and the quadrature components is removed and the power consumption can be reduced. From the IF, the signal is converted to the digital domain by a set of 24 Redundant Signed Digit (RSD) Analog to Digital Converters (ADCs) working at the pulse repetition rate. The digitized signal is then correlated with a predefined template prior to be fed to the bit detector. The trade-offs for the selection of the IF are highlighted and the BER performance of the proposed receiver is evaluated using simulations in 802.15.3a multipath channels. The expected power consumption for the implementation of the receiver using a CMOS process is also provided.
机译:本文介绍了一种用于低数据速率的低功耗脉冲脉冲无线电(IR)超宽带(UWB)接收器的新型架构,其中接收的UWB信号被向下变频到给定的中频(IF)而不是AT基带。这样,去除对同时和正交分量实现两个单独的路径的要求,并且可以减少功耗。从IF,信号通过以脉冲重复率工作的一组24冗余符号数字(RSD)模数(ADC)转换为数字域。然后,在将预定义的模板馈送到位检测器之前,数字化信号被与预定义模板相关联。选择IF被突出显示的权衡以及所提出的接收器的BER性能,在802.15.3a多径通道中使用模拟进行评估。还提供了使用CMOS过程实现接收器的预期功耗。

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