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A Technique for Precise Positioning of High Altitude Platforms System (HAPS) Using a GPS Ground Reference Network

机译:使用GPS接地参考网络精确定位高海拔平台系统(HAPS)的技术

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GPS can play an important role in the positioning of High Altitude Platforms Systems (HAPS). In such GPS applications the residual tropospheric delay in GPS measurements is a major error source. Contrary to the case of static GPS applications, it is difficult to estimate the tropospheric delay simultaneously with the ambiguities and coordinates in kinematic mode. In this paper four techniques to mitigate the tropospheric delay error are compared. Preliminary tests using an aircraft has shown that the global tropospheric model may not be adequate for precise positioning. Both the method using a numerical weather model and the method using surface meteorological measurements significantly improved the performance of ambiguity resolution on-the-fly. However, the method using meteorological data obtained by the aircraft and the zenith tropospheric delay, estimated from a ground GPS network, has shown the best performance.
机译:GPS可以在高海拔平台系统(HAPS)的定位中发挥重要作用。在这种GPS应用中,GPS测量中的残留的对流层延迟是主要的误差源。与静态GPS应用的情况相反,难以在运动模式中同时估计对流层延迟和坐标。在本文中,比较了减轻了对流层延迟误差的四种技术。使用飞机的初步测试表明,全球对流层模型可能不足以精确定位。使用数值天气模型的方法和使用表面气象测量的方法显着提高了在飞行中模糊分辨率的性能。然而,采用飞机获得的气象数据和Zenith对流层延迟的方法,从地面GPS网络估计,表现出最佳性能。

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