In the background of signal detection for high frequency (I/F) radar, the sea clutter is quite significant and can mask some weak target signals. A new clutter rejection method named “nonlinear projection” is give...In the background of signal detection for high frequency (I/F) radar, the sea clutter is quite significant and can mask some weak target signals. A new clutter rejection method named “nonlinear projection” is given to improve the SNR of the target. This approach is based on the recent observation that HF sea clutter may be modeled as a nonlinear deterministic dynamical system. After approximating the multidimensional reconstruction of the clutter by a low-dimensional attractor, projections onto this attractor can separate the clutter from other components. Real sea clutter, simulated target data and real target data are used to show that a nonlinear clutter rejection method is a promising technique to suppress sea clutter and enhances target detection.展开更多
Multiple maneuvedng targets signal processing in high frequency radar is challenging due to the following difficulties: the interference between signals is severe because of significant spread of the target Doppler s...Multiple maneuvedng targets signal processing in high frequency radar is challenging due to the following difficulties: the interference between signals is severe because of significant spread of the target Doppler spectrum, the low signal to clutter ratio (SCR) environment degrades the performance of signal process- ing algorithms. This paper addresses this challenging problem by using an S2-method and an adaptive clutter rejection scheme. The proposed S2-method improves the S-method by eliminating inter- ference between signals, and thus it enables multi-target signals to be reconstructed individually. The proposed adaptive clutter rejec- tion scheme is based on an adaptive notch filter, which is designed according to the envelop of the clutter spectrum. Experiments with simulated targets added into radar sea clutter echo and real air target data illustrate the effectiveness of the proposed method.展开更多
与线性调频连续波信号不同,采用正交频分复用调制(orthogonal frequency division multiplexing,OFDM)方案信号的雷达,当每个符号上调制的传输信息完全随机时,其模糊函数具有较高的旁瓣;当探测场景中存在较多较强的杂波时,目标回波对应...与线性调频连续波信号不同,采用正交频分复用调制(orthogonal frequency division multiplexing,OFDM)方案信号的雷达,当每个符号上调制的传输信息完全随机时,其模糊函数具有较高的旁瓣;当探测场景中存在较多较强的杂波时,目标回波对应的距离多普勒峰被淹没在脉压积累后的强杂波的旁瓣之下,导致目标无法被识别。目前已有的杂波抑制方案多面临杂波抑制度不足的问题。基于此,本文提出基于贪心策略的高效杂波处理方案,通过自适应逐点抑制强杂波,使旁瓣基底下降,目标信息浮现出来。并与实测数据进行了对比,结果表明,该方法取得了比常规方法更好的杂波抑制性能。展开更多
文摘In the background of signal detection for high frequency (I/F) radar, the sea clutter is quite significant and can mask some weak target signals. A new clutter rejection method named “nonlinear projection” is given to improve the SNR of the target. This approach is based on the recent observation that HF sea clutter may be modeled as a nonlinear deterministic dynamical system. After approximating the multidimensional reconstruction of the clutter by a low-dimensional attractor, projections onto this attractor can separate the clutter from other components. Real sea clutter, simulated target data and real target data are used to show that a nonlinear clutter rejection method is a promising technique to suppress sea clutter and enhances target detection.
基金supported by the State Key Program of National Natural Science Foundation of China(61032011)
文摘Multiple maneuvedng targets signal processing in high frequency radar is challenging due to the following difficulties: the interference between signals is severe because of significant spread of the target Doppler spectrum, the low signal to clutter ratio (SCR) environment degrades the performance of signal process- ing algorithms. This paper addresses this challenging problem by using an S2-method and an adaptive clutter rejection scheme. The proposed S2-method improves the S-method by eliminating inter- ference between signals, and thus it enables multi-target signals to be reconstructed individually. The proposed adaptive clutter rejec- tion scheme is based on an adaptive notch filter, which is designed according to the envelop of the clutter spectrum. Experiments with simulated targets added into radar sea clutter echo and real air target data illustrate the effectiveness of the proposed method.
文摘与线性调频连续波信号不同,采用正交频分复用调制(orthogonal frequency division multiplexing,OFDM)方案信号的雷达,当每个符号上调制的传输信息完全随机时,其模糊函数具有较高的旁瓣;当探测场景中存在较多较强的杂波时,目标回波对应的距离多普勒峰被淹没在脉压积累后的强杂波的旁瓣之下,导致目标无法被识别。目前已有的杂波抑制方案多面临杂波抑制度不足的问题。基于此,本文提出基于贪心策略的高效杂波处理方案,通过自适应逐点抑制强杂波,使旁瓣基底下降,目标信息浮现出来。并与实测数据进行了对比,结果表明,该方法取得了比常规方法更好的杂波抑制性能。