首页> 外文期刊>Proceedings of the National Science Council, Republic of China, Part A. Physical Science and Engineering >Performance Assessment of a Noniterative Algorithm for Global Positioning System (GPS) Absolute Positioning
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Performance Assessment of a Noniterative Algorithm for Global Positioning System (GPS) Absolute Positioning

机译:全球定位系统(GPS)绝对定位的非迭代算法的性能评估

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The Global Positioning System (GPS) is a constellation of 24 navigation satellites developed and deployed by the U.S. Department of Defense to provide worldwide real-time positioning capability to its military and civilian users. Generally, GPS absolute positioning solutinos are computed by using an iterative procedure that requires an initial approximate value for the receiver's position. This paper evaluates a direct, noniterative algorithm for computation of the position and clock error of a single GPS receiver. An exact solution is obtained with four GPS satellites in view. The algorithm automatically combines all available GPS pseudorange measurements when more than four satellites are observed. Experimental results show that reliable absolute positioning is achieved by using the algorithm, and that the computational efficiency is improved by a factor of 2.3 over the traditional iterative method.
机译:全球定位系统(GPS)是由美国国防部开发和部署的24颗导航卫星的星座,旨在为其军事和民用用户提供全球实时定位功能。通常,GPS绝对​​定位解决方案是通过使用迭代过程来计算的,该过程需要接收器位置的初始近似值。本文评估了一种直接的非迭代算法,用于计算单个GPS接收机的位置和时钟误差。通过查看四颗GPS卫星可以获得精确的解决方案。当观测到四个以上的卫星时,该算法会自动组合所有可用的GPS伪距测量值。实验结果表明,该算法可以实现可靠的绝对定位,并且计算效率比传统的迭代方法提高了2.3倍。

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