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Adaptive OFDM Radar for Target Detection in Multipath Scenarios

机译:用于多径场景中目标检测的自适应OFDM雷达

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We develop methods for detecting a moving target in the presence of multipath reflections, which exist, for example, in urban environments. We take advantage of the multipath propagation that increases the spatial diversity of the radar system and provides different Doppler shifts over different paths. We employ a broadband orthogonal frequency division multiplexing (OFDM) signal to increase the frequency diversity of the system as different scattering centers of a target resonate variably at different frequencies. To overcome the peak-to-average power ratio (PAPR) problem of the conventional OFDM, we also use constant-envelope OFDM (CE-OFDM) signaling scheme. First, we consider a simple scenario in which the radar receives only a finite number of specularly reflected multipath signals. We develop parametric measurement models, for both the OFDM and CE-OFDM signaling methods, under the generalized multivariate analysis of variance (GMANOVA) framework and employ the generalized likelihood ratio (GLR) tests to decide about the presence of a target in a particular range cell. Then, we propose an algorithm to optimally design the parameters of the OFDM transmitting waveform for the next coherent processing interval. In addition, we extend our models to study the aspects of temporal correlations in the measurement noise. We provide a few numerical examples to illustrate the performance characteristics of the proposed detectors and demonstrate the achieved performance improvement due to adaptive OFDM waveform design.
机译:我们开发了用于在存在多路径反射的情况下检测运动目标的方法,例如在城市环境中。我们利用多径传播来增加雷达系统的空间分集,并在不同的路径上提供不同的多普勒频移。我们采用宽带正交频分复用(OFDM)信号来增加系统的频率分集,因为目标的不同散射中心在不同频率下会发生不同的谐振。为了克服常规OFDM的峰均功率比(PAPR)问题,我们还使用了恒定包络OFDM(CE-OFDM)信令方案。首先,我们考虑一个简单的场景,其中雷达仅接收有限数量的镜面反射多径信号。我们在广义多变量方差分析(GMANOVA)框架下针对OFDM和CE-OFDM信令方法开发参数测量模型,并采用广义似然比(GLR)测试来确定目标在特定范围内的存在细胞。然后,我们提出了一种算法,用于针对下一个相干处理间隔优化设计OFDM发射波形的参数。此外,我们扩展了模型以研究测量噪声中时间相关性的各个方面。我们提供了一些数值示例来说明所提出的检测器的性能特征,并说明由于自适应OFDM波形设计而实现的性能改进。

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