Simultaneous operation of UHF communication channels on an airborne platform

E. Franks, R. Thornton
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引用次数: 3

Abstract

Ultra high frequency (UHF) channels provide a reliable medium for conveying voice and data information between users within a communications network. UHF communication channels may be categorized as either Line-of-Sight (LOS) or Satellite Communication (SATCOM) channels. UHF LOS and SATCOM systems are typically composed of voice/data sources, cryptographic devices (for secure channels), data terminal sets (modulator/demodulator/satellite link controller), UHF radios, and antennas. In designing a UHF communications system, the systems engineer must characterize the equipment, the physical channel, and the satellite transponder to determine if the information can be successfully transferred between users. Published text describing the techniques for characterizing and analyzing UHF communication systems and channels in single-channel applications exists and will not be covered in this paper. However, setting up successful links in an environment where several users are operating over multiple UHF channels simultaneously utilizing several UHF antennas, referred to as Simultaneous Operation (SIMOP), presents a more challenging problem, even for the experienced systems engineer. This paper describes problems and proposed solutions for UHF SIMOP in an airborne platform. Since baseband equipment for individual communication networks have minimal adverse effect on SIMOP performance, this paper focuses on the radio and antenna equipment. The airborne platform is unique in that it uses low-drag, few-gain, closely-spaced antennas which lead to low isolation. Concepts such as adjacent-channel interference, intermodulation distortion, broadband transmitter noise, harmonic and spurious emissions, receiver desensitization and cross modulation are described as they apply to SIMOP applications. Budget analysis using typical radio specifications shows that the predominant adverse effects are driven by transmitter broadband noise and intermodulation. Solutions to SIMOP problems, including antenna isolation, filtering, frequency management, and signal cancellation are addressed, with the goal that the techniques discussed may be applied successfully to existing or future UHF communications systems with SIMOP requirements.<>
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在机载平台上同时操作超高频通信信道
超高频(UHF)信道为通信网络内用户之间传送语音和数据信息提供了可靠的媒介。超高频通信信道可分为视距通信(LOS)信道和卫星通信(SATCOM)信道。UHF LOS和SATCOM系统通常由语音/数据源、加密设备(用于安全信道)、数据终端设备(调制器/解调器/卫星链路控制器)、UHF无线电和天线组成。在设计超高频通信系统时,系统工程师必须对设备、物理信道和卫星转发器进行表征,以确定信息能否在用户之间成功传输。已发表的描述在单通道应用中表征和分析超高频通信系统和信道的技术的文本已经存在,本文将不涉及。然而,在多个用户同时使用多个UHF天线在多个UHF频道上操作的环境中,建立成功的链路,称为同步操作(SIMOP),提出了一个更具挑战性的问题,即使对于经验丰富的系统工程师也是如此。介绍了机载平台UHF SIMOP存在的问题,并提出了解决方案。由于单个通信网络的基带设备对SIMOP性能的不利影响最小,因此本文主要研究无线电和天线设备。机载平台的独特之处在于它使用低阻力、低增益、近间隔的天线,从而导致低隔离。诸如邻接信道干扰、互调失真、宽带发射机噪声、谐波和杂散发射、接收机脱敏和交叉调制等概念被描述为适用于SIMOP应用。使用典型无线电规格的预算分析表明,主要的不利影响是由发射机宽带噪声和互调驱动的。SIMOP问题的解决方案,包括天线隔离、滤波、频率管理和信号消除,目标是所讨论的技术可以成功地应用于具有SIMOP要求的现有或未来UHF通信系统。
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