首页> 外国专利> Radar system with active array antenna, elevation-responsive PRF control, and pulse integration control responsive to azimuth angle

Radar system with active array antenna, elevation-responsive PRF control, and pulse integration control responsive to azimuth angle

机译:具有有源阵列天线,仰角响应PRF控制和响应方位角的脉冲积分控制的雷达系统

摘要

A multipurpose system provides radar surveillance for air traffic control purposes. The system includes four separate active phased- array antennas, each with .+-.45° coverage in azimuth, from 0° to 60° in elevation. Each antenna element of each phased-array antenna is coupled by a low-loss path to the solid-state amplifier associated with a transmit-receive (TR) module. Each antenna produces a sequence of pencil beams, which requires less transmitted power from the TR modules than a fan beam, but requires more time because the pencil beam must be sequenced to cover the same volume as the fan beam. In order to scan the volume in a short time, the PRF is responsive to the elevation angle of the beam, so higher elevation angles use a higher PRF. Low elevation angle beams receive long transmitter pulses for high power, and pulse compression is used to restore range resolution, but the long pulse results in a large minimum range within which targets cannot be detected. A second scan is provided at low elevation angles with a short transmitter pulse to fill in the short-range coverage. Beams at higher elevation angles transmit pulse widths which are shorter than beams at low elevation angles, so that the minimum range requirement is met without a second scan, which also reduces the time required for volumetric scan. The number of pulses which are integrated to produce a return increases off-axis, to restore system margin lost due to off-axis power gain reduction. The volumetric scan rate is increased by a dynamic scan regimen by which subsets of beams are pulsed with a high transmitter PRF but with a low effective beam PRF to reduce range ambiguity and preserve Doppler resolution without the usual increase of scan time. For best range resolution, Doppler processing is used, with range sidelobe pulse suppression applied separately to each Doppler frequency bin.
机译:多功能系统提供雷达监视以用于空中交通管制。该系统包括四个单独的有源相控阵天线,每个天线的方位角覆盖范围为±0.45至60°。每个相控阵天线的每个天线元件都通过一条低损耗路径耦合到与收发模块(TR)相关的固态放大器。每个天线产生一系列笔形束,与扇形束相比,TR模块的发射功率要少,但需要更多的时间,因为笔形束必须经过排序才能覆盖与扇形束相同的体积。为了在短时间内扫描体积,PRF对光束的仰角作出响应,因此,较高的仰角会使用较高的PRF。低仰角光束会接收较长的发射器脉冲以产生高功率,并且使用脉冲压缩来恢复距离分辨率,但是长脉冲会导致较大的最小范围,在该范围内无法检测到目标。在低仰角处以短发射脉冲提供第二次扫描,以填充短距离覆盖范围。高仰角的光束传输的脉冲宽度比低仰角的光束短,因此无需第二次扫描即可满足最小范围要求,这也减少了体积扫描所需的时间。被积分以产生返回的脉冲数增加了离轴,以恢复由于离轴功率增益降低而损失的系统裕度。体积扫描速率通过动态扫描方案来提高,通过这种方案,可以在发射器PRF较高但有效光束PRF较低的情况下以脉冲形式对波束子集进行脉冲处理,以减少范围模糊度并保持多普勒分辨率,而无需通常增加扫描时间。为了获得最佳的范围分辨率,使用了多普勒处理,并且将范围旁瓣脉冲抑制分别应用于每个多普勒频率单元。

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