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A cutting edge 6U CubeSat ADCS design for Earth observation with sub-meter spatial resolution at 230-380 km altitude

机译:一个切削刃6U立方体ADCS设计,用于地球观测,次仪表空间分辨率在230-380公里的高度

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摘要

A 6U CubeSat for Earth observation in 230-350 km orbits with sub-meter resolution is presented. The proposed Stable and Highly Accurate Pointing Earth-Imager (SHAPE) system's attitude determination and control system (ADCS) is composed of a single momentum bias wheel with magnetic bearings at rotational speeds of 6000-7000 rpm and refined magnetorquers. Reaction wheels as instability source are absent. The ADCS stabilizes the spacecraft attitude by counteracting the torques from external disturbances in the thermosphere down to < 1 degrees pointing accuracy and < 0.1 degrees instability. The momentum wheel was sized to an angular momentum of 1 Nms based on the worst-case atmospheric density of the next solar cycle. The 0.5 Am(2)magnetorquer dipole moment provides with low power consumption, mass and cost, high reliability and sufficient torque. The ADCS initialisation study revealed three stable start-up modes, while the all-spun state is achieved using a set of thrusters. De-tumbling analysis show that the magnetorquers reduce the tumbling rates with magnitudes of up to 35 degrees/s to mean motion values in less than an orbit using a static gain B-dot controller. A 3U camera design capable of sub-meter spatial resolution at 230 km altitude is presented which complies with the SHAPE spacecraft system design. The instrument has a single deployable primary mirror enabled by a deployment hinge design with hysteresis < 0.5 mu. This payload combined with air-breathing electric propulsion technology at 230 km nominal altitude boosts the SHAPE system Earth observation potential down to sub-meter spatial resolution and enables tuning of the mission lifetime by orbit keeping.
机译:提出了一个6U CubeSat,在230-350 km轨道中展示了具有子仪表分辨率的轨道。所提出的稳定且高度准确的指向地球成像仪(形状)系统的姿态确定和控制系统(ADCS)由单个动量偏置轮组成,具有6000-7000rpm的磁轴承,磁性轴承和精制的磁磁轴。作为不稳定来源的反应轮是不存在的。 ADCS通过将热圈的外部干扰抵消到<1度的指示精度和<0.1度不稳定性来稳定扭矩来稳定航天器姿态。基于下一个太阳循环的最坏情况的大气密度,气动轮的大小为1nms的角动量。 0.5AM(2)磁仪偶极机芯提供低功耗,质量和成本,高可靠性和足够的扭矩。 ADCS初始化研究揭示了三种稳定的启动模式,而使用一组推进器实现了全旋状态。去翻转分析表明,磁力静电通过使用静态增益B-DOT控制器的轨道减小了多达35度/秒的横向速率,其径向速度为轨道。提供了一种能够在230公里海拔高度的次仪表空间分辨率的3U摄像头设计,符合Shape SpaceCraft系统设计。该仪器具有由部署铰链设计的单个可部署的主镜,带有滞后<0.5亩。这款有效载荷与230公里的呼吸电动推进技术相结合,标称高度促使形状系统地球观察潜力降至次仪表空间分辨率,并通过轨道保持终止调整任务寿命。

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