计算资源复用载波同步联合相干解调的低轨道卫星通信ASIC

Changhong Wang, Fei Gao
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引用次数: 1

摘要

数字专用集成电路(ASIC)由于具有抗单事件干扰(SEU)和低功耗等特点,越来越多地应用于近地轨道卫星通信有效载荷。由于低轨卫星运行速度较快、信号衰减大、敌对干扰多,短帧突发直接序列扩频(DSSS)通信成为低轨卫星常用的通信方式。为了满足LEO通信ASIC对低信噪比(SNR)阈值、短同步时间和低逻辑资源消耗的要求,提出了一种计算资源复用载波同步联合相干解调(CMCSJCD)方法。与传统的FFT开环载波同步相干解调方法相比,可节省33%的随机存取存储器(RAM)资源,且不消耗DSP4SE1资源。当信噪比大于3dB时,CMCSJCD的误码率(BER)接近理论值,可以在低信噪比的情况下工作。目前,CMCSJCD已应用于多个低轨道卫星通信专用集成电路中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computing Resource Multiplexed Carrier Synchronization Joint Coherent Demodulation of LEO Satellite Communication ASIC
Digital application specific integrated circuit (ASIC) is increasingly used for low-earth orbit (LEO) satellite communication payloads due to its features of resistance to single event upset (SEU) and low power consumption. Because of the relatively high speed of LEO, large signal attenuation and various hostile interference, short-frame burst direct sequence spread spectrum (DSSS) becomes a common communication mode of LEO satellites. In order to meet the LEO communication ASIC requirements of low signal-to-noise ratio (SNR) threshold, short synchronization time and low logic resource consumption, a computing resource multiplexed carrier synchronization joint coherent demodulation (CMCSJCD) method is proposed in this study. Compared with the conventional FFT open-loop carrier synchronization and coherent demodulation method, it can save 33% of random access memory (RAM) resources and consumes none DSP4SE1 resources. When the SNR is greater than 3dB, the bit error rate (BER) of CMCSJCD is close to the theoretical value and CMCSJCD can work under low SNR circumstances. Currently, CMCSJCD has been used in several LEO satellite communication ASICs.
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