Spread spectrum communications using CMOS digital correlators

A. Goiser, M. Sust
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引用次数: 3

Abstract

CMOS digital correlators with extended on-chip signal processing capabilities strongly increase the applicability of digital matched filters (DMFs) in noncoherent direct sequence spread spectrum receivers. However, the digital concept gives rise to problems caused by time- and amplitude-quantization at analog-to-digital (A/D) conversion prior to correlation. In the present work, a noncoherent receiver structure, using a sampling window technique to prevent timing errors due to oscillator uncertainties, is reviewed. In order to improve the system performance in the presence of CW (continuous wave) interference, a 2-bit A/D-converter (ADC) with adaptive thresholds is proposed. The performance of a DMF receiver using 2-bit A/D conversion as well as hard limiting is compared with that of an analog matched filter receiver. By the use of the 2-bit ADC instead of the hard limiter, a performance improvement is obtained, and, when interferences have a strong CW content, the analog counterpart is even outperformed.<>
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扩频通信使用CMOS数字相关器
具有扩展片上信号处理能力的CMOS数字相关器极大地提高了数字匹配滤波器(dmf)在非相干直接序列扩频接收机中的适用性。然而,数字概念在相关之前的模数(A/D)转换中产生了时间和幅度量化引起的问题。本文介绍了一种利用采样窗技术防止振荡器不确定性引起的定时误差的非相干接收机结构。为了提高系统在连续波干扰下的性能,提出了一种具有自适应阈值的2位a / d转换器(ADC)。比较了采用2位a /D转换和硬限幅的DMF接收机与模拟匹配滤波器接收机的性能。通过使用2位ADC代替硬限幅器,获得了性能改进,并且,当干扰具有强连续波内容时,模拟对应物的性能甚至优于
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