METRIC: A Dedicated Earth-Orbiting Spacecraft for Fundamental Physics and Geophysics

E. Lorenzini, R. Peron
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Abstract

A dedicated mission in low Earth orbit – called METRIC – is proposed to test selected predictions of gravitational theories and to measure directly the acceleration due to atmospheric drag in the altitude range considered, at the same time providing a metrological platform able to perform a tie between different space geodesy techniques. The core of the mission is a spacecraft of the micro class placed in an eccentric orbit between 450 and 1200 km of altitude. The satellite will be tracked from the ground with high precision and an on-board accelerometer package will measure the non-gravitational accelerations acting on it (e.g., atmospheric drag and solar radiation pressure). A precise orbit determination is expected to provide estimates of fundamental physics and geophysical parameters, while the accelerometer data are fundamental in constraining the atmospheric density variations. Along with the mission scientific objectives, a possible baseline for spacecraft configuration and a technique for the analysis of the non-gravitational perturbations is described in the paper.
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METRIC:用于基础物理和地球物理的专用地球轨道航天器
一个在低地球轨道上的专门任务——被称为METRIC——被提议用来测试选定的引力理论预测,并在考虑的高度范围内直接测量由于大气阻力引起的加速度,同时提供一个能够在不同的空间大地测量技术之间执行联系的计量平台。此次任务的核心是将微型航天器放置在450至1200公里高度之间的偏心轨道上。卫星将从地面进行高精度跟踪,机载加速度计包将测量作用在卫星上的非重力加速度(例如大气阻力和太阳辐射压力)。精确的轨道确定预计将提供基本物理和地球物理参数的估计,而加速度计的数据是限制大气密度变化的基础。随着任务的科学目标,一个可能的基线的航天器配置和分析技术的非引力摄动在本文中描述。
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