首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.1 >A COST AND TIME EFFECTIVE ALTERNATIVE FOR AN AERIAL RECONNAISSANCE AND SURVELLIANCE PLATFORM
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A COST AND TIME EFFECTIVE ALTERNATIVE FOR AN AERIAL RECONNAISSANCE AND SURVELLIANCE PLATFORM

机译:航空核对和监视平台的成本和时间有效替代方案

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An expanded need for information obtainable from aerial sensor platforms is driving research and development towards both the use of Unmanned Aerial Vehicles (UAV's) and the extensive physical redesign of existing airframes to accommodate alternative capabilities. This trend in aerial platform development requires significant time and funding and has yet to transpire into low single-system cost that can be rapidly set to use. An alternative concept of utilizing existing and unmodified airframes as sensor platforms, through the use of peripheral systems, presents an attractive solution to this problem. A particular sensor platform system (Oculus) has been designed for use upon a C-130 aircraft and, as a blueprint concept, shows considerable design flexibility for use upon additional existing military and commercial airframes. This roll-on roll-off sensor platform is a stand alone system that requires no modification to the C-130 airframe and has the capacity to incorporate multi-mission sensor capabilities which can be used for a wide variety of missions. These missions are (but not limited to) Environmental Impact Assessment, Counter Drug, Counter Terrorism, Homeland Security, Resource Surveys, Environmental Surveys, and Search and Rescue. This system (patent pending) has been developed to support a broad spectrum of the latest in remote sensor technology for missions requiring highly proficient reconnaissance capabilities. It was also designed under the criterion of mission flexibility, stability, field of view, storability, modular attachment space and provisions for expansion and upgrade. This sensor platform system provides a superior cost-effective upgrade capability to existing airframes.
机译:从空中传感器平台获取信息的需求不断增长,推动了对无人驾驶飞机(UAV)的使用和现有机身的广泛物理重新设计以适应替代功能的研究和开发。空中平台开发的这种趋势需要大量的时间和资金,并且尚未转化为可快速设置使用的低单系统成本。通过使用外围系统,利用现有的和未改装的机身作为传感器平台的替代概念提出了解决此问题的有吸引力的方法。一种特殊的传感器平台系统(Oculus)已设计用于C-130飞机,并且作为一个蓝图概念,显示了可用于其他现有军用和商用飞机机身的相当大的设计灵活性。该滚装滚降传感器平台是一个独立系统,无需对C-130机身进行任何修改,并具有合并多任务传感器功能的能力,可用于多种任务。这些任务是(但不限于)环境影响评估,反毒品,反恐怖主义,国土安全,资源调查,环境调查以及搜索和救援。该系统(正在申请专利)的开发旨在为需要高度熟练的侦察能力的任务提供广泛的最新遥感传感器技术支持。它也是根据任务灵活性,稳定性,视野,可存储性,模块化附件空间以及扩展和升级规定的标准设计的。该传感器平台系统为现有机身提供了卓越的成本效益升级能力。

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