Concurrent Transmitting LiDAR Sensor with Bipolar Optical Codes

Gunzung Kim, Jeongsook Eom, Yongwan Park
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Abstract

We proposed a concurrent transmitting-based 128 channels LiDAR sensor using an bipolar optical code scheme called code-inversion keying based prime-permuted code, which is the most suitable method to shorten the chip sequence length, while maintaining the performance characteristics of LiDAR sen-sor. In each channel, four laser diodes with different wavelengths are bundled with a coupler to direct toward a target direction. The target direction could be recognized after the reception by identifying the received reflected pulse, even if several target directions were measured simultaneously. Due to the very short chip sequence, only a very short signal transmission time is required.
双极光码并发发射激光雷达传感器
提出了一种基于并行传输的128通道激光雷达传感器,该传感器采用一种双极光码方案,即基于逆码键控的质排列码,这是在保持激光雷达传感器性能特性的同时缩短芯片序列长度的最合适方法。在每个通道中,四个不同波长的激光二极管与一个耦合器捆绑在一起,指向目标方向。即使同时测量多个目标方向,接收后也可以通过识别接收到的反射脉冲来识别目标方向。由于芯片序列很短,所以只需要很短的信号传输时间。
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