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Ultra wideband technology for aircraft wireless intercommunications systems (AWICS) design

机译:飞机无线互通系统(AWICS)设计的超宽带技术

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摘要

Current intercommunications system (ICS) designs for military, multicrew aircraft utilize lengthy, encumbering cords to physically attach the crewmember's helmet or headset to a distributed audio intercom system. Typical ICS long-cords are approximately 100 feet in length and allow crewmembers to maintain communications as they move about the aircraft while performing their mission duties. These cords also allow crewmembers to maintain communications with the aircraft when disembarked, as when they are controlling aircraft during engine start-up. Unfortunately, the current wired topology significantly reduces mission effectiveness, impedes crewmember movement, and greatly increases the crewmember's risk of injury. These drawbacks are more pronounced onboard military rotary winged aircraft (helicopters) where several crewmembers have been injured or killed during emergencies requiring the aircraft to ditch at sea. During ditching, crewmembers often became entangled in their lengthy ICS cord, preventing or delaying aircraft egress. This paper discusses the development of an aircraft wireless intercommunications system (AWICS) which utilizes ultra wideband (UWB) technology to address mission requirements for these multicrew, military aircraft. UWB offers unique advantages in this application - multipath mitigation, low probability of detection, low probability of interference to onboard legacy systems, and high throughput in a multiuser environment.
机译:当前用于军用,多机组飞机的对讲系统(ICS)设计利用冗长而笨拙的线缆将机组人员的头盔或头戴式耳机物理连接到分布式音频对讲系统。典型的ICS长绳大约长100英尺,使机组成员在执行任务时在飞机上移动时保持通信。这些绳索还允许机组人员在下机时与飞机保持通讯,就像他们在发动机启动过程中控制飞机一样。不幸的是,当前的有线拓扑显着降低了任务效率,阻碍了机组人员的行动,并大大增加了机组人员受伤的风险。这些缺点在军用旋转翼飞机(直升机)上更为明显,在紧急情况下,几名机组人员在需要飞机离开海上的紧急情况下受伤或丧生。在开沟过程中,机组人员经常被缠在长长的ICS绳索上,从而阻止或延迟了飞机的出口。本文讨论了飞机无线互通系统(AWICS)的开发,该系统利用超宽带(UWB)技术来满足这些多机组军用飞机的任务要求。 UWB在此应用程序中具有独特的优势-多路径缓解,低检测概率,对机载传统系统的干扰概率低以及在多用户环境中的高吞吐量。

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