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MULTI-BAND RADAR FOR HOMELAND SECURITY

机译:国土安全的多频段雷达

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摘要

Radar systems, which can operate in a variety of frequency bands, could provide significant flexibility in the operation of future Battle-space Management and Air Defense Systems (BMADS). Phased array antennas, which support high pulse rates and power, are well suited for surveillance, tracking and identifying the targets. These phased array antennas with the multiplicity of elements in phased array could provide accurate beam pointing, very rapid changes in beam location, and multiple beams, including algorithms for null steering for unwanted signals. No single radar band possesses characteristics that provide optimum performance. For example, L and S-bands are typically considered the best frequency ranges for acquisition and X-band is best for tracking. For many of the current phased array antennas the circuit components are narrow-band and therefore are not suitable for multi-band radar design. In addition, the cost, size, power dissipation, the weight, and, in general, the complexity has limited the development of multi-band phased array antenna systems. The system bandwidth of antenna array employing high loss phase shifters for beam steering also becomes limited due to the dispersion loss from the beam steering. As a result phased array radar design can result in a very large, complex, expensive, narrow band and less efficient system. This paper describes an alternative design approach in the design of wide-band phased array radar system based on multi-octave band antenna elements; and wide-band low loss phase shifters, switching circuits and T/R modules.
机译:可以在各种频带中操作的雷达系统可以在未来的战斗空间管理和防空系统(BMADS)的运行中提供显着灵活性。支持高脉冲速率和功率的相位阵列天线非常适合监控,跟踪和识别目标。这些相位阵列天线具有相控阵列中的多个元件可以提供精确的光束指向,光束位置的非常快速的变化,以及多个光束,包括用于不需要的信号的空转转向的算法。没有单一雷达带具有提供最佳性能的特性。例如,L和S波通常被认为是用于采集的最佳频率范围,并且X波浪最适合跟踪。对于许多电流相位阵列天线,电路部件是窄带,因此不适用于多带雷达设计。此外,成本,尺寸,功耗,重量,通常复杂性地限制了多频段相控阵天线系统的开发。采用用于光束转向的高损耗相移器的天线阵列的系统带宽也受到了来自光束转向的色散损失的限制。结果,相位阵列雷达设计可能导致非常大,复杂,昂贵,窄的频段和更少的效率系统。本文介绍了基于多倍频带天线元件的宽带相控阵雷达系统设计中的替代设计方法;宽带低损耗相移器,开关电路和T / R模块。

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