单脉冲雷达导引头搜索捕捉目标时,如果多个目标存在同一分辨单元内,导引头将难以区分,而无法检测雷达主波束内多个目标的存在就不能进行多目标的分辨,最终无法完成对既定目标的成功打击;采用基于Neyman-Person准则的广义似然比检测(Gene...单脉冲雷达导引头搜索捕捉目标时,如果多个目标存在同一分辨单元内,导引头将难以区分,而无法检测雷达主波束内多个目标的存在就不能进行多目标的分辨,最终无法完成对既定目标的成功打击;采用基于Neyman-Person准则的广义似然比检测(Generalized Likelihood Ratio Test,GLRT)方法可以对单脉冲雷达导引头同一分辨单元内多个Swerling II型目标的存在性进行检测,仿真实验证明了有效性。展开更多
In radar systems of automatic detection, an estimate of background clutter power is used to set the detection threshold. An interference saturated environment is frequently encountered in these systems (multiple targe...In radar systems of automatic detection, an estimate of background clutter power is used to set the detection threshold. An interference saturated environment is frequently encountered in these systems (multiple target situations). Therefore, the detection of signals in such an environment becomes one of the most important problems to be solved. The double-threshold algorithm is one of the more interesting detectors used in these situations. While the first threshold operation ensures that the calculation of the detection (second) threshold is based on a set of samples which is free of strong interferers and is therefore much more representative of the noise level, the second threshold is used to declare the presence or the absence of the radar target. The object of the present paper is to analyze the performance of such type of CFAR schemes when the radar receiver contains a noncoherent integrator amongst its basic elements. It is found that the processor detectabil ity loss is very low and the performance degradation, caused by interferers is quite small even if the number of outlying targets is large, given that the first threshold is properly chosen.展开更多
文摘单脉冲雷达导引头搜索捕捉目标时,如果多个目标存在同一分辨单元内,导引头将难以区分,而无法检测雷达主波束内多个目标的存在就不能进行多目标的分辨,最终无法完成对既定目标的成功打击;采用基于Neyman-Person准则的广义似然比检测(Generalized Likelihood Ratio Test,GLRT)方法可以对单脉冲雷达导引头同一分辨单元内多个Swerling II型目标的存在性进行检测,仿真实验证明了有效性。
文摘In radar systems of automatic detection, an estimate of background clutter power is used to set the detection threshold. An interference saturated environment is frequently encountered in these systems (multiple target situations). Therefore, the detection of signals in such an environment becomes one of the most important problems to be solved. The double-threshold algorithm is one of the more interesting detectors used in these situations. While the first threshold operation ensures that the calculation of the detection (second) threshold is based on a set of samples which is free of strong interferers and is therefore much more representative of the noise level, the second threshold is used to declare the presence or the absence of the radar target. The object of the present paper is to analyze the performance of such type of CFAR schemes when the radar receiver contains a noncoherent integrator amongst its basic elements. It is found that the processor detectabil ity loss is very low and the performance degradation, caused by interferers is quite small even if the number of outlying targets is large, given that the first threshold is properly chosen.