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Impact of the direct sequence spread spectrum signals from the global satellite navigation system GLONASS on radio astronomy: problem and proposed solution

机译:来自全球卫星导航系统GLONASS的直接序列扩频信号对射电天文学的影响:问题和建议的解决方案

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The GLONASS satellites use direct sequence spread spectrum with a P-code chip rate of 5.11 MHz. On their L1 channels near 1600 MHz they also carry a 0.511 MHz chip rate C/A-code. The satellites are distinguished by FDMA having carrier frequencies spaced 0.5625 MHz apart. The digital code sequences are used directly to switch the phase of the carriers. This results in an emitted power spectrum of envelope which falls off only as (frequency from the carrier)/sup -2/. This allows the signals to be seen more than /spl plusmn/80 MHz from the carriers. As a result GLONASS is causing unacceptable interference to radio astronomy in the band 1660-1670 MHz and devastating interference in the band 1610.6-1613.8 MHz which was allocated PRIMARY to the radio astronomy service (RAS) at WARC-92. The problem is to achieve EMC between the RAS and GLONASS. It is proposed that one measure to mitigate the impact of GLONASS should be for it to adopt a form of continuous phase modulation (CPM) which would result in its side-bands falling off as (frequency from carrier)/sup -6/. A novel "proof-of-concept" 1/100th (in frequency) scale model modulator has been constructed in hardware which produces a simulated GLONASS CPM signal with this property. This type of modulator could find service with other DSSS systems.
机译:GLONASS卫星使用直接序列扩频,其P码码片速率为5.11 MHz。在接近1600 MHz的L1通道上,它们还携带0.511 MHz的码片速率C / A码。卫星的特征在于FDMA具有相隔0.5625 MHz的载波频率。数字代码序列直接用于切换载波的相位。这导致包络的发射功率谱仅以(来自载波的频率)/ sup -2 /下降。这允许从载波看到信号超过/ spl plusmn / 80 MHz。结果,GLONASS对1660-1670 MHz频带内的射电天文造成了不可接受的干扰,并在1610.6-1613.8 MHz频带内造成了毁灭性干扰,该频带在WARC-92被主要分配给射电天文业务(RAS)。问题是要在RAS和GLONASS之间实现EMC。建议减轻GLONASS影响的一种措施是采用一种连续相位调制(CPM)的形式,这将导致其边带衰减为(载波频率)/ sup -6 /。已经在硬件中构造了一种新颖的“概念验证”的1/100(频率)比例模型调制器,该调制器会产生具有此特性的模拟GLONASS CPM信号。这种类型的调制器可以在其他DSSS系统中找到服务。

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