低地球轨道卫星PN码捕获新方案

S. Glisic, T. Poutanen, W. W. Wu
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引用次数: 3

摘要

针对高码多普勒和高码多普勒速率的CDMA低轨卫星系统,提出并分析了一种新的伪码捕获方法。该方法基于将二维码的多普勒(D)和时延(t)不确定区域(D,t)转换为一个新的不确定区域(t /sub c/,t),其中t /sub c/是滑动相关器输出处相关脉冲的周期。当多普勒速率存在时,三维不确定性区域(D, R/ t/,t)被变换成一个新的区域(t/ c/, R/ t/,t),其中R/ D /和R/ t/分别是多普勒速率和相关脉冲周期速率。这项工作的主要动机是寻找适合全数字接收机实现的新算法。在这些新算法的实现中,相当复杂的FFT硬件组件现在被更简单的组件(如累加器)所取代。这些算法使得CDMA技术在低轨卫星与地面小型用户终端之间的通信中成为可能。基于低轨道卫星的个人通信是农村地区广泛考虑的一种选择。提出并讨论了新型伪码采集系统的综合性能研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New PN code acquisition schemes for low Earth orbit satellites
A new approach to PN code acquisition, for CDMA LEO satellite systems experiencing high code Doppler and code Doppler rate, is presented and analysed. The approach is based on transforming the two dimensional code Doppler (D) and delay (t) uncertainty region (D,t) into a new uncertainty region (T/sub c/,t) where T/sub c/ is the period of the correlation pulses at the output of a sliding correlator. When Doppler rate is present the three dimensional uncertainty region (D, R/sub t/,t) is transformed into a new one (T/sub c/, R/sub t/,t) where R/sub d/ and R/sub t/ are Doppler rate and correlation pulse period rate respectively. The main motivation for this work is to find new algorithms which are suitable for all digital receiver implementation. In the implementation of these new algorithms rather complex FFT hardware components are now replaced by much simpler components such as accumulators. These algorithms make CDMA techniques feasible in the communication between LEO satellite and small ground based user terminals. Personal communications based on LEO satellites is an option that has been considered extensively for rural areas. A comprehensive performance study of the new PN code acquisition system is presented and discussed.<>
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