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Solar Blind Ultraviolet Communication System for Unattended Ground Sensor Network

机译:无人值守地面传感器网络的太阳盲紫外线通信系统

摘要

Solar blind ultraviolet communication systems can provide short to medium range non line-of-sight and line-of-sight links which are covert and insensitive to meteorological conditions. Operation in the solar blind region provides zero background conditions and strong scattering interactions. Scattering provides the basis for transferring information when non line-of-sight conditions exist. Zero background conditions are a result of strong absorption of solar radiation in the upper atmosphere. These conditions make it possible to operate very sensitive wide field-of-view quantum noise limited photon counting receivers, and provide communication systems that perform very differently than free space optical systems that operate in other spectral regions. These systems may be compact and require very low primary power for operation. ;Non line-of-sight ultraviolet communication systems can provide reliable inter-nodal communications for unattended ground sensor networks. This type of system is particularly attractive when non line-of-sight conditions exist between nodes, covert operation is required, and insensitivity to positioning and ground proximity are desired. Light emitting diode technology being developed under the DARPA SUVOS program represents an enabling technology for these systems. Small, low power and low cost systems compatible with unattended ground sensor networks will be available as a result of this program. Data rates of hundreds of kbps with bit error rates (BER) of 10−7 and inter-nodal ranges of hundreds of meters are consistent with phenomenology and technology. Line-of-sight ultraviolet communications systems also offer some unique characteristics for exfiltration of data from an unattended ground sensor network. The absence of background radiation makes it possible to operate with wide field-of-view receivers and large transmitter cone angles. This capability significantly reduces acquisition/pointing/tracking requirements that are traditionally associated with free space optical links. In addition, strong forward aerosol scatter in the ultraviolet reduces dependence on meteorological conditions. The operational range of line-of-sight solar blind communication systems is on the order of kilometers. By selection of operating wavelength within the solar blind region, performance can be optimized to provide reliable communications and at the same time provide covert operation. Data rates on the order of megabits per second are possible with line-of-sight systems.
机译:太阳盲紫外线通信系统可以提供短距离到中距离的非视线和视线链接,这些链接是隐蔽的并且对气象条件不敏感。在太阳盲区中运行可提供零背景条件和强散射作用。当存在非视距条件时,散射为传输信息提供了基础。零背景条件是高层大气中强烈吸收太阳辐射的结果。这些条件使得可以操作非常敏感的宽视野量子噪声受限光子计数接收器,并提供与在其他光谱区域中工作的自由空间光学系统完全不同的通信系统。这些系统可能是紧凑的,并且需要非常低的主电源才能运行。非视距紫外线通信系统可以为无人值守的地面传感器网络提供可靠的节点间通信。当节点之间存在非视线条件,需要隐蔽操作并且需要对定位和地面接近度不敏感时,这种类型的系统尤其有吸引力。 DARPA SUVOS计划下正在开发的发光二极管技术代表了这些系统的使能技术。该程序的结果是将提供与无人值守的地面传感器网络兼容的小型,低功耗和低成本系统。数百kbps的数据速率和10 −7 的误码率(BER)和数百米的节点间范围与现象学和技术相一致。视距紫外线通信系统还提供了一些独特的特性,可以从无人值守的地面传感器网络中渗出数据。由于没有背景辐射,因此可以在宽视场接收器和大发射器锥角下工作。该功能大大降低了传统上与自由空间光链路相关的采集/指向/跟踪要求。此外,紫外线中强烈的前向气溶胶散射降低了对气象条件的依赖性。视距太阳盲通信系统的工作范围约为千米。通过选择日光盲区内的工作波长,可以优化性能以提供可靠的通信,同时提供隐蔽的操作。视距系统可以实现每秒兆位的数据速率。

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