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首页> 外文期刊>Photonics Technology Letters, IEEE >High-Resolution Low-Sidelobe Laser Ranging Based on Incoherent Pulse Compression
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High-Resolution Low-Sidelobe Laser Ranging Based on Incoherent Pulse Compression

机译:基于非相干脉冲压缩的高分辨率低塞德罗贝激光测距

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摘要

A technique for high-resolution laser detection and ranging with strong sidelobe suppression is experimentally demonstrated. This method relies on the transmission of a long unipolar sequence of intensity-modulated pulses, the incoherent direct detection of reflected echoes, and subsequent processing by proper digital filters at the receiver end. The obtained sidelobe suppression nearly replicates that of the bipolar sequences, even though the transmitted sequence is unipolar. Both the transmitted sequence and the receiver-end filter are derived from a bipolar code through a pulse position modulation algorithm. Mismatched filters are used for further sidelobe suppression. Due to the processing gain, ranging measurements are successfully performed at signal-to-noise ratios as low as ${-}{rm 20}~{rm dB}$. A range change of 2.5 cm is accurately resolved. The proposed method provides the sidelobe suppression of a complex coherent receiver while using simple incoherent detection.
机译:实验证明了高分辨率激光检测和旁瓣抑制很强的测距技术。此方法依赖于长单极性序列的强度调制脉冲的传输,反射回波的非相干直接检测以及接收端通过适当的数字滤波器进行的后续处理。即使传输的序列是单极性的,获得的旁瓣抑制也几乎复制了双极性序列的旁瓣抑制。通过脉冲位置调制算法从双极性代码中得出发射序列和接收器端滤波器。不匹配的滤波器用于进一步抑制旁瓣。由于处理增益,测距测量成功地以低至$ {-} {rm 20}〜{rm dB} $的信噪比执行。准确解决了2.5厘米的范围变化。所提出的方法在使用简单的非相干检测的同时提供了复杂相干接收机的旁瓣抑制。

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