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Differential-mode correction of skywave errors in low-frequency time-sequence position monitoring systems

机译:低频时序位置监测系统中天波误差的差模校正

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It is possible to improve the accuracy of the position fixes made using low-frequency radio navigation systems by differentia I-mode operation, the position of the mobile being measured relative to that of a fixed monitor station, provided that the two stations experience errors which are substantially correlated. The recent development of high resolution automatic vehicle location systems which use radio positioning has led to proposals for the use of similar differential techniques to correct for the errors due to night skywave propagation. This paper describes and presents the results of a programme of trials designed to test the feasibility of the proposals and to determine the area over which the readings of each monitor station might be applied. The degree of correlation between the skywave errors received from certain transmitters of the Decca Navigator system at pairs of receivers at various separations and orientations is recorded. The results are interpreted in the light of a simple model of propagation and it is shown to be path difference effects, rather than ionospheric inhomogeneities which limit the region within which the data from a monitor station may be used. The implications of the results are discussed and should be of interest both to designers of new systems for vehicle location and to users of existing low frequency navigation systems.
机译:通过差动I模式操作,可以提高使用低频无线电导航系统制作的位置定位的精度,前提是移动站的位置相对于固定监控站的位置要进行测量,但前提是两个站都遇到误差,基本上相关。使用无线电定位的高分辨率自动车辆定位系统的最新发展导致提出了使用类似的差分技术来校正由于夜空波传播引起的误差的提议。本文描述并介绍了一个试验计划的结果,该试验计划旨在测试建议的可行性并确定可以应用每个监视站读数的区域。记录从Decca Navigator系统的某些发射器在成对的接收器对处以不同的间距和方向接收到的天波误差之间的相关程度。根据一个简单的传播模型来解释结果,结果表明是路径差异效应,而不是电离层不均匀性,后者限制了可以使用来自监视站的数据的区域。讨论了结果的含义,并且对于车辆定位新系统的设计者和现有低频导航系统的用户都应引起关注。

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