Applications of payload directed flight

Applications of payload directed flight
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有效载荷定向飞行的应用

DOI:
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发表时间:
2009
期刊:
IEEE Aerospace Conference
影响因子:
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通讯作者:
Yoo
Yoo
中科院分区:
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文献类型:
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作者:
C. Ippolito;M. Fladeland;Yoo

文献摘要

被引文献

相似文献

下一代航空飞行控制概念需要自主和智能控制系统架构,以比传统自动驾驶仪设计更集成和更紧密的方式直接围绕有效载荷传感器关闭控制回路。美国宇航局艾姆斯研究中心对有效载荷和传感器引导的飞行控制的研究正在调查新的和新颖的体系结构,以满足下一代航空控制和自动化概念的要求。传感器和机器之间更紧密的集成要求定义特定的传感器引导的控制模式,以将传感器数据直接绑定到贯穿整个控制架构的车辆控制结构中,从低级稳定性和控制回路到高级使命规划和调度推理系统。有效载荷导向飞行系统为承载一套机载有效载荷传感器的飞行器平台提供制导、导航和控制,执行需要观察外部部分可观察系统或现象的任务。本文概述了有效载荷导向飞行领域的相关研究,并根据科学文献中确定的需求,概述了有效载荷导向飞行系统的要求和操作概念。
Next generation aviation flight control concepts require autonomous and intelligent control system architectures that close control loops directly around payload sensors in manner more integrated and cohesive that in traditional autopilot designs. Research into payload and sensor directed flight control at NASA Ames Research Center is investigating new and novel architectures that can satisfy the requirements for next generation control and automation concepts for aviation. Tighter integration between sensor and machine require the definition of specific sensor directed control modes to tie the sensor data directly into a vehicle control structures throughout the entire control architecture, from low-level stability and control loops, to higher level mission planning and scheduling reasoning systems. Payload directed flight system provide guidance, navigation, and control for vehicle platforms hosting a suite of onboard payload sensors, performing missions that require observation of external partially observable systems or phenomena. This paper outlines related research into the field of payload directed flight, and outlines requirements and operating concepts for payload directed flight systems based on identified needs from the scientific literature.