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STEPPING THROUGH VERSATILE ATTITUDE CONTROL SYSTEM DESIGN FOR STRATOSPHERIC PLATFORMS

机译:通过多功能姿态控制系统设计来实现平面平台

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In addition to stepping through the typical hardware parts of an Attitude Control System borne for stratospheric platform, the paper describes some fast position sensors. The use of two axis magnetometers at high latitude, even though with a lower accuracy, is analyzed. A high-accuracy motorized sun tracker based on a Position Sensitive Detector photodiode capable of driving the gondola in pointing or scanning mode in any given arbitrary anti-sun direction is also presented. Lastly, as an important part of the entire sensor development project, the paper describes a simulation of the thermal behavior of a pressurized cylinder in which electronic photosensitive devices and a CPU system are housed. To employ electronic device built within a commercial temperature range and intended to stay on the ground, it is extremely important to have a pressurized and conditioned environment in order to avoid a reduction in the performances of some ACS components.
机译:除了踩踏姿态控制系统的典型硬件部件外,纸张还描述了一些快速位置传感器。分析了在高纬度下的两个轴磁体,即使具有较低的精度,也会被分析。还提供了一种基于位置敏感检测器光电二极管的高精度电动太阳跟踪器,其能够在任何给定的任意防晒方向上以指向或扫描模式驱动吊杆。最后,作为整个传感器开发项目的重要组成部分,本文描述了一种加压圆筒的热行为的模拟,其中容纳电子感光装置和CPU系统。为了采用在商业温度范围内建立的电子器件并旨在保持在地面,具有加压和调节环境非常重要,以避免一些ACS组件的性能降低。

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