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Main Authors: Jiang, Yuhua, Gao, Feifei, Jin, Shi, Cui, Tie Jun
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2407.03075
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author Jiang, Yuhua
Gao, Feifei
Jin, Shi
Cui, Tie Jun
author_facet Jiang, Yuhua
Gao, Feifei
Jin, Shi
Cui, Tie Jun
contents Integrated sensing and communications (ISAC) has opened up numerous game-changing opportunities for future wireless systems. In this paper, we develop a novel ISAC scheme that utilizes the diffusion model to sense the electromagnetic (EM) property of the target in a predetermined sensing area. Specifically, we first estimate the sensing channel by using both the communications and the sensing signals echoed back from the target. Then we employ the diffusion model to generate the point cloud that represents the target and thus enables 3D visualization of the target's EM property distribution. In order to minimize the mean Chamfer distance (MCD) between the ground truth and the estimated point clouds, we further design the communications and sensing beamforming matrices under the constraint of a maximum transmit power and a minimum communications achievable rate for each user equipment (UE). Simulation results demonstrate the efficacy of the proposed method in achieving high-quality reconstruction of the target's shape, relative permittivity, and conductivity. Besides, the proposed method can sense the EM property of the target effectively in any position of the sensing area.
format Preprint
id arxiv_https___arxiv_org_abs_2407_03075
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Electromagnetic Property Sensing Based on Diffusion Model in ISAC System
Jiang, Yuhua
Gao, Feifei
Jin, Shi
Cui, Tie Jun
Signal Processing
Integrated sensing and communications (ISAC) has opened up numerous game-changing opportunities for future wireless systems. In this paper, we develop a novel ISAC scheme that utilizes the diffusion model to sense the electromagnetic (EM) property of the target in a predetermined sensing area. Specifically, we first estimate the sensing channel by using both the communications and the sensing signals echoed back from the target. Then we employ the diffusion model to generate the point cloud that represents the target and thus enables 3D visualization of the target's EM property distribution. In order to minimize the mean Chamfer distance (MCD) between the ground truth and the estimated point clouds, we further design the communications and sensing beamforming matrices under the constraint of a maximum transmit power and a minimum communications achievable rate for each user equipment (UE). Simulation results demonstrate the efficacy of the proposed method in achieving high-quality reconstruction of the target's shape, relative permittivity, and conductivity. Besides, the proposed method can sense the EM property of the target effectively in any position of the sensing area.
title Electromagnetic Property Sensing Based on Diffusion Model in ISAC System
topic Signal Processing
url https://arxiv.org/abs/2407.03075