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Multiple Autonomous Discrete Event Controllers for Constellations

机译:用于星座的多个自主离散事件控制器

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The Multiple Autonomous Discrete Event Controllers for Constellations (MADECC) project is an effort within the National Aeronautics and Space Administration Goddard Space Flight Center's (NASA/GSFC) Information Systems Division to develop autonomous positioning and attitude control for constellation satellites. It will be accomplished using traditional control theory and advanced coordination algorithms developed by the Johns Hopkins University Applied Physics Laboratory (JHU/APL). This capability will be demonstrated in the discrete event control test-bed located at JHU/APL. This project will be modeled for the Leonardo constellation mission, but is intended to be adaptable to any constellation mission. To develop a common software architecture, the controllers will only model very high-level responses. For instance, after determining that a maneuver must be made, the MADECC system will output a ΔV (velocity change) value. Lower level systems must then decide which thrusters to fire and for how long to achieve that ΔV.
机译:星座(Madecc)项目的多个自主离散事件控制器是国家航空航天局戈达德航天航班中心(NASA / GSFC)信息系统司的努力,为星座卫星开发自主定位和态度控制。它将采用由约翰霍普金斯大学应用物理实验室(JHU / APL)开发的传统控制理论和先进的协调算法来实现。该能力将在位于JHU / APL的离散事件控制试验床上进行说明。该项目将为Leonardo Constellation Mission进行建模,但旨在适应任何星座使命。要开发常见的软件架构,控制器只会模拟非常高级别的响应。例如,在确定必须进行机动之后,MADECC系统将输出ΔV(速度变化)值。然后,较低级别的系统必须决定将哪个推进器射击,并且达到ΔV多长时间。

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