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Main Authors: Zhang, Ruijie, Zeng, Bixin, Wang, Shengpeng, Zhou, Fuhui, Wang, Wei
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2511.07067
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author Zhang, Ruijie
Zeng, Bixin
Wang, Shengpeng
Zhou, Fuhui
Wang, Wei
author_facet Zhang, Ruijie
Zeng, Bixin
Wang, Shengpeng
Zhou, Fuhui
Wang, Wei
contents Millimeter-wave radar offers a promising sensing modality for autonomous systems thanks to its robustness in adverse conditions and low cost. However, its utility is significantly limited by the sparsity and low resolution of radar point clouds, which poses challenges for tasks requiring dense and accurate 3D perception. Despite that recent efforts have shown great potential by exploring generative approaches to address this issue, they often rely on dense voxel representations that are inefficient and struggle to preserve structural detail. To fill this gap, we make the key observation that latent diffusion models (LDMs), though successful in other modalities, have not been effectively leveraged for radar-based 3D generation due to a lack of compatible representations and conditioning strategies. We introduce RaLD, a framework that bridges this gap by integrating scene-level frustum-based LiDAR autoencoding, order-invariant latent representations, and direct radar spectrum conditioning. These insights lead to a more compact and expressive generation process. Experiments show that RaLD produces dense and accurate 3D point clouds from raw radar spectrums, offering a promising solution for robust perception in challenging environments.
format Preprint
id arxiv_https___arxiv_org_abs_2511_07067
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle RaLD: Generating High-Resolution 3D Radar Point Clouds with Latent Diffusion
Zhang, Ruijie
Zeng, Bixin
Wang, Shengpeng
Zhou, Fuhui
Wang, Wei
Computer Vision and Pattern Recognition
Millimeter-wave radar offers a promising sensing modality for autonomous systems thanks to its robustness in adverse conditions and low cost. However, its utility is significantly limited by the sparsity and low resolution of radar point clouds, which poses challenges for tasks requiring dense and accurate 3D perception. Despite that recent efforts have shown great potential by exploring generative approaches to address this issue, they often rely on dense voxel representations that are inefficient and struggle to preserve structural detail. To fill this gap, we make the key observation that latent diffusion models (LDMs), though successful in other modalities, have not been effectively leveraged for radar-based 3D generation due to a lack of compatible representations and conditioning strategies. We introduce RaLD, a framework that bridges this gap by integrating scene-level frustum-based LiDAR autoencoding, order-invariant latent representations, and direct radar spectrum conditioning. These insights lead to a more compact and expressive generation process. Experiments show that RaLD produces dense and accurate 3D point clouds from raw radar spectrums, offering a promising solution for robust perception in challenging environments.
title RaLD: Generating High-Resolution 3D Radar Point Clouds with Latent Diffusion
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2511.07067