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MITIGATION OF MULTIPATH EFFECTS IN GLOBAL POSITIONING SYSTEM RECEIVERS

机译:缓解全球定位系统接收器中的多路径效应

摘要

A technique for minimizing or eliminating the effect of multipath signals in a receiver processing pseudorandom (PRN) code signals, such as in a global positioning system (EPS) receiver. The presence of multipath signals adversely affects both code measurements and carrier phase measurements of received PRN signals. One aspect of the invention provides for improved code tracking in the presence of multipath signals, by sampling the received code with a multipath mitigation window (MMW) (FIG. 25D) that results in a code error function (FIG. 25F) that reduces or eliminates the multipath effects. The MMW, which may by any of a number of preferred waveforms (FIGS. 35b-35E), provides a code error function that varies in opposite directions from zero at a desired tracking point (402), but assumes a nearly zero value when the MMW is advanced from the tracking or synchronization point by more than a small fraction of a code chip. Because of this nearly zero code error value on the early side of the desired tracking point, delayed multipath signals will have a corresponding code error function that is nearly zero (FIG. 25F) at the desired tracking point of the directly received signals, and the multipath signals will, therefore, have little or no effect on the desired tracking point and on code synchronization. The effects of multipath signals on carrier phase measurements are minimized by sampling the received signals, together with their possible multipath components, before and immediately after cede transitions (vectors A and B respectively). The vector relationship of the directly received (D) and multipath (M) signals is such that performing a vector average of the two types of samples (A and B) produces the directly received signal (D) and its correct phase, with many, if not all, of the multipath components (M) eliminated.
机译:一种用于最小化或消除处理伪随机(PRN)码信号的接收器(例如全球定位系统(EPS)接收器)中多径信号影响的技术。多径信号的存在会对接收到的PRN信号的代码测量和载波相位测量产生不利影响。本发明的一个方面通过在具有多径缓解窗口(MMW)(图25D)的情况下对接收到的代码进行采样,从而在存在多径信号的情况下提供了改进的代码跟踪,该多径缓解窗口导致代码错误函数(图25F)减少或减少了消除了多径效应。 MMW可以通过许多优选波形中的任何一种(图35b-35E),提供码误差函数,该码误差函数在相反的方向上在期望的跟踪点处从零变化(402),但是当误差为零时假定为几乎零值。从跟踪或同步点开始,MMW提升了超过一小部分的代码芯片。由于在期望跟踪点的早期的该几乎为零的代码误差值,延迟的多径信号将具有在直接接收到的信号的期望跟踪点处的几乎为零(图25F)的相应的代码误差函数。因此,多径信号对所需的跟踪点和代码同步几乎没有影响。在cede转换之前和之后(分别为矢量A和B),对接收到的信号及其可能的多径分量进行采样,从而将多径信号对载波相位测量的影响最小化。直接接收(D)信号和多径(M)信号的矢量关系使得对两种类型的样本(A和B)进行矢量平均会产生直接接收信号(D)及其正确相位,其中许多如果不是全部,则消除多径分量(M)。

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