首页> 外文会议>2012 6th ESA Workshop on Satellite Navigation Technologies amp; European Workshop on GNSS Signals and Signal Processing. >Analysis of the International Space Station multipath and masking environment for Automated Transfer Vehicle Relative GPS rendezvous manoeuvres
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Analysis of the International Space Station multipath and masking environment for Automated Transfer Vehicle Relative GPS rendezvous manoeuvres

机译:自动转移车相对GPS交会演习的国际空间站多径和掩蔽环境分析

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The observation of large GPS tracking errors in an International Space Station GPS receiver used in Relative GPS guided rendezvous manoeuvres, of the Automated Transfer Vehicle, led to the execution of flight campaigns to quantify and understand the GPS signal reception environment for different Solar Array configurations. The effect of masking caused by the presence of a Soyuz spacecraft in the vicinity of the GPS antenna was investigated and specific analysis of GPS pseudorange outliers was conducted. It was found that the outliers, of potential concern for rendezvous manoeuvres, could predominately be associated with single reflections from the International Space Station's Solar Arrays, sometimes in combination with Solar Array masking. The receiver's Delay Lock Loop was found to be captured by the reflected signal. Using the identified reflection/masking mechanism, a dynamic multipath prediction model was developed to predict the amplitude and duration of large multipath events for candidate Solar Array configurations for which flight data was not available so as to assist solar array configuration decisions for future dockings.
机译:在自动转运车的相对GPS制导交会动作中使用的国际空间站GPS接收器中观察到较大的GPS跟踪误差,导致进行了飞行运动,以量化和了解不同太阳能阵列配置的GPS信号接收环境。对Soyuz航天器在GPS天线附近的存在所引起的掩蔽效应进行了研究,并对GPS伪距异常值进行了具体分析。人们发现,与交会动作有关的离群值可能主要与国际空间站太阳电池阵列的单次反射有关,有时还与太阳电池阵列的掩膜结合在一起。发现接收器的延迟锁定环被反射信号捕获。使用识别出的反射/掩蔽机制,开发了动态多径预测模型,以预测候选多面体事件配置的大型多径事件的幅度和持续时间,而这些候选多面体事件的飞行数据不可用,从而有助于日后对接的多面体事件配置决策。

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