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Generation of bandpass Gaussian noise with applications to complete Built In Self Test in wireless communications receivers

机译:带通高斯噪声的产生以及在无线通信接收机中完成内置自测的应用

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We present a method to accurately model and generate Gaussian bandpass noise, with the primary goal of facilitating Built-In Self Test (BIST) in digital receivers in wireless communications systems. The algorithm outlined in this paper allows for complete BIST of the receiver, from the Intermediate Frequency (IF) to the output data stream. We focus on implementational details which are of most interest to contemporary wireless communications systems, namely on providing solutions for the following system attributes: (1) all-digital software radio receivers; (2) fixed-point implementation; (3) hardware implementations; (4) applications for BIST in satellite, cellular, mobile, and low-power applications. While the problem of generating bandpass Gaussian noise is related to generation of Additive White Gaussian Noise (AWGN), it is shown that to generate bandpass Gaussian noise samples for all-digital receivers it is necessary to generate non-white correlated noise. As an additional complication, fixed-point representation of this noise must address dynamic range considerations to avoid saturation and underflow. We present a method by which bandpass Gaussian noise can be generated and incorporated with ease within BIST circuits in contemporary receivers while conforming to any low-power, fixed-point, and small form-factor constraints that apply to the receiver as a whole.
机译:我们提出了一种精确建模和产生高斯带通噪声的方法,其主要目的是促进无线通信系统中数字接收机中的内置自测(BIST)。本文概述的算法可实现从中频(IF)到输出数据流的完整接收机BIST。我们关注于当代无线通信系统最感兴趣的实现细节,即为以下系统属性提供解决方案:(1)全数字软件无线电接收机; (2)定点执行; (3)硬件实现; (4)BIST在卫星,蜂窝,移动和低功率应用中的应用。虽然产生带通高斯噪声的问题与加性高斯白噪声(AWGN)的产生有关,但事实表明,要为全数字接收器生成带通高斯噪声样本,必须产生非白相关噪声。另一个复杂情况是,该噪声的定点表示必须解决动态范围方面的考虑,以避免饱和和下溢。我们提出了一种方法,通过该方法可以生成带通高斯噪声并将其轻松合并到当代接收机的BIST电路中,同时符合适用于整个接收机的任何低功耗,定点和小尺寸约束。

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  • 来源
  • 会议地点 Medellin(CO);Medellin(CO)
  • 作者

    Linn Yair;

  • 作者单位

    University of British Columbia, Canada;

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