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Coherent integration time limit of a mobile receiver for indoor GNSS applications

机译:室内GNSS应用的移动接收机的相干集成时限

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There is an emerging requirement for processing global navigation satellite system (GNSS) signals indoor where the signal is very weak and subjected to spatial fading. Typically, longer coherent integration intervals provide the additional processing gain required for the detection and processing of such weak signals. However, the arbitrary physical motion of the handset imputed by the user limits the effectiveness of longer coherent integration intervals due to the spatial decorrelation of the multipath-faded GNSS signal. In this paper, limits of coherent integration due to spatial decorrelation are derived and corroborated with experimental verification. A general result is that the processing gain resulting from direct coherent integration saturates after the antenna has moved through a certain distance, which for typical indoor propagation, is about half a carrier wavelength. However, a refined Doppler search coupled with a prolonged coherent integration interval extends this limit, which is effectively a manifestation of selective diversity.
机译:在室内处理全球导航卫星系统(GNSS)信号的情况下,出现了新的要求,在这种情况下,信号非常微弱并且会经受空间衰落。通常,更长的相干积分间隔提供了检测和处理这种微弱信号所需的额外处理增益。然而,由于多径衰落的GNSS信号的空间去相关性,由用户估算出的手机的任意物理运动限制了更长的相干积分间隔的有效性。本文推导了空间解相关引起的相干积分极限,并通过实验验证得到了证实。通常的结果是,在天线已经移动了一定距离之后,直接相干积分所产生的处理增益就会饱和,对于典型的室内传播,该距离约为载波波长的一半。但是,精巧的多普勒搜索加上延长的相干积分间隔扩展了此限制,这实际上是选择性多样性的体现。

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