一种卫星温度自主管理的优化设计
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北京空间飞行器总体设计部

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V443

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An Optimization Design of SatelliteTemperature Autonomous Management
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    摘要:

    温度自主管理是卫星主动式热控的主要表现形式,温度自主管理系统将接收到的被控设备的温度数据和固化在软件中的温度阈值进行比较后,发出相应的指令控制加热器的通或断,从而确保星上设备或部件的温度始终保持在一个合理的范围内,不会因为温度过高或过低影响卫星的可靠性和安全性,在一些卫星中,部分被控设备的接口发生了变化,传统的自主管理系统在新接口的温度控制上存在一定缺陷,导致地面测试中出现了热控回路报警,采用增加同一加热器回路通断指令的自主重试次数的方法对温度自主管理软件进行了优化,经过实验验证,优化后的温度自主管理系统能够很好地适应新的接口,该系统已经在多个卫星中成功应用,可为后续卫星提供参考。

    Abstract:

    Temperature autonomous management is the main form of satellite active thermal control. After comparing the received temperature data of the controlled equipment with temperature threshold solidified in the software, the temperature autonomous management system sends corresponding commands to control on or off of the heater. This can ensure that the temperature of equipments or components on the satellite is always in a reasonable range and the reliability and safety of the satellite will not be affected because of too high or too low temperature. Due to the change of the temperature management interface of some equipment in some satellites,the traditional autonomous management system has some defects in the temperature control to the new interface. The thermal cycle alarm occurred in the ground test. The temperature autonomous management software is optimized by increasing the number of autonomous retries of the on-off command of the same heater cycle. The experimental results show that the optimized temperature autonomous management system can adapt to the new interface well. The optimized system has been applied in many satellites. It can provide a reference for the future satellites.

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刘博,乔梁,毛亮,姜博.一种卫星温度自主管理的优化设计计算机测量与控制[J].,2023,31(6):212-216.

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  • 收稿日期:2023-01-17
  • 最后修改日期:2023-02-21
  • 录用日期:2023-02-22
  • 在线发布日期: 2023-06-15
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