Dario Schor, Jane Scowcroft, C. Nichols, W. Kinsner
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引用次数: 13
摘要
本文概述了WinCube项目命令与数据处理(CDH)单元第二阶段的设计与实现。WinCube是马尼托巴大学(University of Manitoba)开展的一项为期多年、多学科的项目,来自不同院系的学生参与了立方体卫星的设计。WinCube项目的目的是为工程专业的学生提供一个设计和实现太空卫星的机会。该项目还充当了高中科学实验的容器,将在太空中进行实验,并将结果传递给卫星基站。CDH单元必须管理卫星内部各单元的操作和内部通信。该单元包括电源管理应用程序,串行通信协议中继信息,和一个值得信赖的定时系统。电源管理应用程序必须监控电池的状态,太阳能电池板的输出,以及控制提供给每个主要单元的电量。串行通信用于与卫星上的其他设备进行交互。最后,采用外部实时时钟和看门狗定时器来提高系统的可靠性。采取了特殊措施保护CDH装置免受恶劣操作环境的影响,并通过对组件进行定期测试来监测温度和电池读数以外的系统健康状况。
A Command and Data Handling unit for pico-satellite missions
This paper outlines the design and implementation of Phase Two of the Command and Data Handling (CDH) unit for the WinCube project. WinCube is a multi-year, multi-disciplinary project conducted at the University of Manitoba in which students from different departments participate in the design of a CubeSat. The purpose of the WinCube project is to provide an opportunity for engineering students to design and implement a space-ready satellite. The project also acts as a vessel for a high school science experiment, which will run an experiment while in space, and relay results down to a satellite base station. The CDH unit must manage the operations and internal communications of the various units inside the satellite. This unit includes a power management application, serial communications protocols to relay information, and a trustworthy timing system. The power management application must monitor the state of the battery, the output of the solar panels, as well as control the amount of power provided to each of the primary units. Serial communications are used to interact with other devices on the satellite. Finally, an external real time clock and watchdog timer were used to enhance the reliability of the system. Special measures were taken to protect the CDH unit from the harsh operating environment and to monitor the health of the system beyond temperature and battery readings by performing periodic tests of components.