The Journal of Engineering | |
Research on pulse compression radar angular glint modelling and suppression | |
Xiaobo Feng1  Xiaoxiong Zhou1  Chen Wang1  Wentao Zhang1  | |
[1] Beijing Institute of Remote Sensing Equipment; | |
关键词: aerodynamics; military radar; electromagnetic wave scattering; radar cross-sections; radar tracking; target tracking; radar resolution; pulse compression; frequency hop communication; radar signal processing; pulse compression radar angular glint modelling; target angular glint; angular glint model; aerodynamic target; frequency-diversity algorithm; traditional frequency diversity algorithm; total frequency hopping bandwidth; angle glint noise; | |
DOI : 10.1049/joe.2019.0618 | |
来源: DOAJ |
【 摘 要 】
The target angular glint is the main factor restricting the tracking accuracy of radar at close range. There are few researches on angular glint of pulse compression radar. Here, the angular glint model of the large aerodynamic target under pulse compression is proposed. The field measured data verify the validity of the model. Second, a frequency-diversity algorithm based on gating weighting is proposed to suppress angular glint. Simulation results show that its performance is better than the traditional frequency diversity algorithm. Third, the influence of total frequency hopping bandwidth and number of hopping on the frequency diversity algorithm is discussed. Finally, the algorithm proposed here has been applied with the existing experimental prototype. The outfield experiments show that the algorithm can suppress angle glint noise effectively.
【 授权许可】
Unknown