Sensing using Coded Communications Signals
Sundar Aditya, Onur Dizdar, Bruno Clerckx, Xueru Li

TL;DR
This paper demonstrates that coded communications signals can be effectively used for sensing in interference-limited environments, achieving asymptotically negligible sidelobes and comparable performance to traditional waveforms.
Contribution
It provides theoretical bounds and empirical evidence showing coded signals' sensing performance approaches that of interference-free waveforms at large block lengths.
Findings
Coded communications signals have asymptotically zero sidelobes in sensing.
Performance of coded signals matches interference-free waveforms at high interference levels.
Both single-carrier and OFDM waveforms with coded signals are effective for sensing.
Abstract
A key challenge for a common waveform for Integrated Sensing and Communications (ISAC) - widely seen as an attractive proposition to achieve high performance for both functionalities, while efficiently utilizing available resources -- lies in leveraging information-bearing channel-coded communications signals (c.c.s) for sensing. In this paper, we investigate the sensing performance of c.c.s in (multi-user) interference-limited operation, and show that it is limited by sidelobes in the range-Doppler map, whose form depends on whether the c.c.s modulates a single-carrier or OFDM waveform. While uncoded communications signals -- comprising a block of i.i.d zero-mean symbols -- give rise to asymptotically (i.e., as ) zero sidelobes due to the law of large numbers, it is not obvious that the same holds for c.c.s, as structured channel coding schemes (e.g., linear…
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Taxonomy
TopicsDistributed Sensor Networks and Detection Algorithms · Radar Systems and Signal Processing
