星载随机照明灯被动双基地雷达多普勒波束锐化

J. Rowlatt, S. Hristov, L. Daniel, M. Gashinova, A. Stove, M. Cherniakov
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引用次数: 0

摘要

本文评估了多普勒波束锐化(DBS)在被动双基地系统中使用的适用性,该系统使用Inmarsat星座(Alphasat)中的星载发射机作为机会的照明器,用于船舶低成本海上预警系统的潜在应用。从理论上讨论了静止目标和运动目标的锐化效果,并建立了模型来显示静止目标的锐化效果,通过使用DBS预测了角分辨率的大幅提高。实验结果表明,在相干积分时间为15秒、载波波长为0.193m、目标距离为2.5 ~ 3km、目标观测角为20 ~ 30°的条件下,采用全波束宽度为30°的天线,在平均运动速度为11.6m/s的情况下,在10°范围内发现3个可识别的目标。实验结果与一个类似系统的模拟结果一致,并在卫星地图上显示了结果的可视化演示。
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Doppler Beam Sharpening in Passive Bistatic Radar with Spaceborne Illuminators of opportunity
The applicability of Doppler beam sharpening (DBS) is assessed for the use in a passive bistatic system using a spaceborne transmitter in the Inmarsat constellation (Alphasat) as the illuminator of opportunity, for potential application in low cost maritime early warning systems in vessels. The effect of sharpening for both stationary and moving targets is discussed in theory, with models to show the effects for stationary targets that predicted a large improvement in angular resolution through the use of DBS. Experimental results show the effect in action, with three distinguishable targets found within 10 degrees using an antenna with a full beamwidth of 30 degrees, for a receiver moving at a mean of 11.6m/s over a coherent integration time of 1s, a carrier wave wavelength of 0.193m, a target range of 2.5-3km, and target look angle of 20-30 degrees. The results from the experiment are shown to agree with a simulation of a similar system, and a visual demonstration of the results overlaid on a satellite map is also displayed.
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