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A NEW GENERATION OF ULTRA SENSITIVE ELECTROSTATIC ACCELEROMETERS FOR GRACE- FOLLOW ON AND TOWARDS THE NEXT GENERATION OF GRAVITY MISSIONS

机译:新一代超敏感的静电加速度计,用于优雅 - 跟随下一代重力任务

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The sensor core configuration of the electrostatic accelerometers of the CHAMP, GRACE and GOCE missions has been especially designed for space applications and so optimized in regard to the weak level of acceleration to sustain and measure in orbit. The retum of experience of these three gravity space missions which demonstrate the robustness and the performances of this family of space instruments, allows a better optimisation of the design of the accelerometer in terms of thermal stability and operation reliability for the near future missions as GRACE follow-on. Nevertheless because the next generation of low-low satellite to satellite tracking missions will take advantage of interferometer laser ranging methods to improve their performance, the noise level of the accelerometer has also to be lowered, especially in the low frequency bandwidth. In addition to the measurement of the surface forces exerted on the spacecraft by the atmospheric drag, by the Sun radiation and by the Earth's albedo and infrared pressures, the accelerometer instrument becomes a major part of the attitude and orbit control system by acting as drag free sensor and by accurately measuring the angular accelerations. After a description of the improvement of the GRACE-FO accelerometer with respect to the still in-orbit previous models and a status of its development, the presentation will propose a new configuration much more compact and the performance of which are in a better ad equation with a next generation of small but drag compensated micro- satellites or geodesy missions.
机译:的CHAMP,GRACE和GOCE任务的静电加速度计的传感器芯配置已特别设计用于空间应用和关于加速度以维持和测量在轨道的弱电平,以便优化。这三个重力的太空任务,其表现出的稳健性和这个家庭空间手段的表演经验retum,允许加速度计的设计,更好的优化在不久的将来特派团GRACE后续的热稳定性和运行可靠性方面-在。然而因为下一代低低卫星到卫星跟踪任务将采取的干涉激光测距方法来提高它们的性能优点,加速度计的噪声电平也必须被降低,特别是在低频率带宽。除了受到大气阻力作用在航天器上,由太阳辐射和地球的反照率和红外压力的表面力的测量,加速度计仪器通过充当阻力免费成为姿态和轨道控制系统的重要组成部分传感器和通过精确测量的角加速度。在GRACE-FO加速度计的提高相对于一个描述仍然在轨以前的型号及其发展状况进行评估后,该报告将提出一个新的配置更加紧凑,其性能是更好的广告方程与下一代的小,但阻力补偿微型卫星大地测量或任务。

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