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Approach to Minimizing the Influence of Changeable Observational Environment on Long-Distance Sea-Crossing Trigonometric Leveling

机译:最大限度地减少可变观测环境对长途海关三角平衡的影响

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摘要

Instabilities in observed environments at sea, such as the sudden appearance of fog, varying temperature or pressure, changes in wind speed and direction, and differential gravitational and magnetic fields in each observed station, will lead to fluctuating observations and difficult data processing. These factors must be considered to achieve high-precision leveling. Therefore, a sea-crossing trigonometric leveling method that satisfies the national second-order leveling accuracy is proposed according to the sources and variable characteristics of errors under the condition of lacking corresponding specifications. The procedure is described and a mathematical model is deduced in this paper. A sea-crossing leveling engineering work is used to evaluate the performance of the proposed method. The result of engineering work indicates that the proposed method can lighten the surveyor workload and improve the precision of final values to some extent compared with common trigonometric leveling methods. The method can be used in applications in which two benchmarks are far and mounting a level in the middle place is impossible, such as leveling across rivers, canyons, seas, or dense woods.
机译:在海上观察环境中的稳定性,例如雾的突然外观,不同的温度或压力,风速和方向的变化,以及每个观察到的站中的差分重力和磁场,将导致对观察和困难的数据处理产生波动和困难的数据处理。必须考虑这些因素来实现高精度平整。因此,根据缺乏相应规格的条件,根据缺陷的误差来提出满足国家二阶调平精度的海交叉三角测量方法。描述该过程,并在本文中推断出数学模型。海关平整工程工作用于评估所提出的方法的性能。工程工作的结果表明,与普通三角平衡方法相比,所提出的方法可以在一定程度上提高验船师工作负载并提高最终值的精度。该方法可用于两个基准的应用中,其中两个基准在中间的位置安装水平是不可能的,例如跨河流,峡谷,海洋或致密树林的水平。

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