自适应可靠的GPS不确定位置估计在海洋学和地理学中的应用

K. U. Kiran, K. Ramesh, S. Rao
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引用次数: 0

摘要

定位评估应用是GPS定位应用中最重要的服务之一。全球定位系统(GPS)是一项多功能的传统技术,一直在为地球上的物体提供可靠和准确的位置。GPS位置的不确定性被认为是当今世界许多固有系统的初始化参数。这种初始位置估计有各种各样的应用,如海岸线地图,了解地球动力学现象,如火山爆发,地震和随后的起源源机制,平均海平面估计的轮廓的陆地表面,海洋在途中以及在移动和车辆技术等。所有这些应用结果的验证和可靠性取决于GPS给出的位置估计的准确性。本文试图通过校正所有可见光卫星在每个历元的测量误差,从GPS中检索出准确可靠的位置参数。观测到的L2信号伪距离最大值2437404.2米,最小值-76295.22米。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive And Reliable GPS Uncertain Position Estimation an Insightful Oceanography and Geography Applications
Location evaluation applications are one of the most imperative services in GPS position applications. The Global Positioning Systems (GPS) is a versatile and legacy technology has been providing a reliable and accurate position of objects on Earth. The uncertain GPS position is considered an initialization parameter for many inherent systems in today’s world. This initialization position estimate has a wide variety of applications such as Coast line maps, understanding the geo-dynamical phenomena such as volcanic eruptions, earthquakes and subsequent originating source mechanisms, Mean Sea level estimation for contours of land surfaces, Oceanic en-route as well as in mobile and Vehicular technologies etc. The validation and reliability of the results of all those applications is dependent on the accuracy of the position estimate given by GPS. In this work an attempt is made to retrieve accurate and reliable position parameters from GPS by correcting the measurement errors for all the visible satellites at every epoch. The maximum and minimum pseudo ranges in L2 signal observed are 2437404.2 meters and -76295.22 meters.
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