首页> 外文会议>Annual AAS Rocky Mountain Guidance and Control Conference; 20050205-09; Breckenridge,CO(US) >POTENTIAL ENTRY GUIDANCE MODIFICATIONS TO IMPROVE LANDING ACCURACY FOR THE 2007 PHOENIX MARS MISSION
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POTENTIAL ENTRY GUIDANCE MODIFICATIONS TO IMPROVE LANDING ACCURACY FOR THE 2007 PHOENIX MARS MISSION

机译:修改潜在进入指南,以提高2007年凤凰城火星任务的着陆精度

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The robotic Mars Mission slated for 2007, known as Phoenix, will demonstrate the use of guidance to control range during entry. The current Phoenix guidance design has heritage to the 2001 Precision Lander guidance and gets its origins from the Apollo Program. The Phoenix entry guidance is essentially the same design as that used for the final phase guidance during Apollo Earth re-entry. Modifications to the final phase guidance scheme have been introduced since the Apollo and Precision Lander programs that further improve the landing accuracy that can be achieved. Those modifications include the use of smart parachute logic that allows the guidance to determine when the parachute should be deployed, within parachute constraints. By allowing the guidance to determine when to deploy the parachute, this logic essentially performs as a downrange controller. The other addition is the use of an azimuth or heading controller near the end of the trajectory. This software switches primary control of the lift vector from downrange to crossrange control, eliminating any existing crossrange error. This paper reports the landing accuracy improvement that can be achieved by applying the smart parachute and azimuth controller guidance modifications to the Phoenix Mission.
机译:计划于2007年进行的机器人火星飞行任务(称为凤凰号)将演示在进入过程中如何使用指导来控制射程。当前的Phoenix指南设计继承了2001年Precision Lander指南,并源于Apollo计划。菲尼克斯(Phoenix)进入指南与阿波罗地球再进入期间最终阶段指南的设计基本相同。自从Apollo和Precision Lander计划以来,已经引入了对最终阶段制导方案的修改,这些程序进一步提高了可以实现的着陆精度。这些修改包括使用智能降落伞逻辑,该逻辑允许指导在降落伞约束内确定何时应部署降落伞。通过允许指导确定何时部署降落伞,该逻辑实质上可以充当降档控制器。另一个补充是在轨迹末端附近使用方位角或航向控制器。该软件将升力矢量的主要控制从下范围切换到跨范围控制,从而消除了任何现有的跨范围误差。本文报告了通过将智能降落伞和方位角控制器制导修改应用于“凤凰城”任务可以提高着陆精度。

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