EDBT 2026 Demo / reviewers in the wild / expert
Jiangming Shi
dblp:304/1527
· DBLP profile ↗
13ranked-venue papers
7as first author
13since 2021 · last 2026
0000-0003-3817-0497ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Artificial intelligence and machine learning · 10 · 6 first-author · 10 since 2021Graphics, computer vision, multimedia, augmented reality and games · 10 · 5 first-author · 10 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | A Theory-Inspired Framework for Few-Shot Cross-Modal Sketch Person Re-IdentificationabstractSketch-based person re-identification aims to match hand-drawn sketches with RGB surveillance images, but remains challenging due to severe modality gaps and limited labeled data. To address this, we propose KTCAA, a theoretically inspired framework for few-shot cross-modal generalization. Drawing on generalization bounds, we identify two key factors affecting target risk: (1) domain discrepancy, reflecting the alignment difficulty between source and target distributions; and (2) perturbation invariance, measuring the model’s robustness to modality shifts. Accordingly, we design: (1) Alignment Augmentation (AA), which applies localized sketch-style transformations to simulate target distributions and guide progressive alignment; and (2) Knowledge Transfer Catalyst (KTC), which enhances perturbation invariance by introducing worst-case modality perturbations and enforcing consistency. These modules are jointly optimized within a meta-learning paradigm that transfers alignment knowledge from data-abundant RGB domains to sketch scenarios. Experiments on multiple benchmarks show that KTCAA achieves state-of-the-art performance, particularly under data-scarce conditions. Yunpeng Gong, Yongjie Hou, Jiangming Shi, Kim Long Diep, Min Jiang 0005 |
AAAI | 3 |
| 2026 | xMHashSeg: Cross-modal Hash Learning for Training-free Unsupervised LiDAR Semantic Segmentationabstract3D semantic segmentation serves as a fundamental component in many applications, such as autonomous driving and medical image analysis. Although recent methods have advanced the field, adapting these methods to new environments or object categories without extensive retraining remains a significant challenge. To address this, we introduce xMHashSeg, a novel training-free cross-modal LiDAR semantic segmentation framework. xMHashSeg leverages foundation models and non-parametric network to extract features from 2D images and 3D point clouds, subsequently integrating these features through hash learning. Specifically, We develop point-SANN, a novel self-adaption non-parametric network that can extract robust 3D features from raw point clouds, while 2D features are directly extracted through the foundation model DINOv2. To reconcile inconsistencies across different modals, we introduce a Hash Code Learning Module that projects all information into a common hash space, learning a consistent hash code that enhances feature integration. Additionally, depth maps are utilized as an intermediary form between 2D and 3D data to facilitate convergence during hash code learning. Our experimental results on various multi-modality datasets demonstrate that xMHashSeg outperforms zero-shot learning approaches and achieve performance close to that of unsupervised domain adaptation and test-time adaptation methods, without requiring any annotations or additional training. Jialong Zhang 0002, Yachao Zhang 0001, Jiangming Shi, Fangyong Wang, Yanyun Qu |
AAAI | 4 |
| 2026 | Two-stage knowledge distillation for visible-infrared person re-identification
Jiangming Shi, Xiangbo Yin, Demao Zhang, Zhizhong Zhang 0001, Yuan Xie 0001, Yanyun Qu |
Pattern Recognit. | 1 |
| 2025 | Task-Aware Prompt Gradient Projection for Parameter-Efficient Tuning Federated Class-Incremental Learning
Hualong Ke, Jiangming Shi, Yachao Zhang 0001, Fangyong Wang, Yanyun Qu |
ICCV | 2 |
| 2025 | Multi-Schema Proximity Network for Composed Image Retrieval
Jiangming Shi, Xiangbo Yin, Yeyun Chen, Yachao Zhang 0001, Zhizhong Zhang 0001, Yanyun Qu |
ICCV | 1 |
| 2025 | MIPT: Multilevel Informed Prompt Tuning for Robust Molecular Property PredictionabstractThe progress in materials science and drug discovery is impeded by the availability of labeled data and the high costs of manual annotation, driving the need for efficient strategies to capture molecular representations and enable accurate predictions. Pretrained Graph Neural Networks have shown promise in capturing universal molecular representations, but adapting them to task-specific applications remains challenging. In this paper, we propose Multilevel Informed Prompt-Tuning (MIPT), a novel framework for effectively tailoring pretrained models to molecule-related tasks. MIPT utilizes a lightweight, multi-level prompt learning module to capture node-level and graph-level task-specific knowledge, ensuring adaptable and efficient tuning. Additionally, a noise penalty mechanism is introduced to address mismatches between pretrained representations and downstream tasks, reducing irrelevant or noisy information. Experimental results show that MIPT surpasses all baselines, aligning graph space and task space while achieving significant improvements in molecule-related tasks, demonstrating its scalability and versatility for molecular tasks. Yeyun Chen, Jiangming Shi |
ICML | 2 |
| 2025 | Adaptive Pseudo-Label Purification and Debiasing for Unsupervised Visible-Infrared Person Re-IdentificationabstractUnsupervised Visible-Infrared Person Re-Identification (USVI-ReID) aims to match visible and infrared person images without relying on prior annotations. Recently, unsupervised contrastive learning methods have become the mainstream approach for USVI-ReID, leveraging clustering algorithms to generate pseudo-labels. However, these methods often suffer from inherent noisy pseudo-labels, which significantly hinders their performance. To address this challenge, we propose a Adaptive Pseudo-label Purification and Debiasing (APPD) framework for USVI-ReID, which is designed to calibrate noisy pseudo-labels and dynamically detects clean pseudo-labels, thereby enhancing the model’s performance and reliability. Specifically, we propose an Adaptive Pseudo-label Calibration and Division (APCD) module, which calibrates noisy pseudo-labels by assessing their reliability and divides pseudo-labels into clean and noisy subsets, ensuring a more focused and accurate learning process. Based on the calibrated pseudo-labels, we develop an Optimal Transport Prototype Matching (OTPM) module to establish robust cross-modality correspondences. For clean pseudo-labels, we propose a Debiased Memory Hybrid Learning (DMHL) module, which jointly captures modality-specific and modality-invariant information while addressing sampling bias to enhance feature representation. To effectively utilize noisy pseudo-labels, we introduce a Neighbor Relation Learning (NRL) module that mitigates intra-class variations by exploring neighbor relationships in the feature space. Comprehensive experiments conducted on two widely recognized USVI-ReID benchmarks demonstrate that APPD achieves state-of-the-art performance, significantly outperforming existing methods. The source code will be made available at https://github.com/XiangboYin/RPNR. Xiangbo Yin, Jiangming Shi, Zhizhong Zhang 0001, Yuan Xie 0006, Yanyun Qu |
IEEE Trans. Circuits Syst. Video Technol. | 2 |
| 2024 | CLIP-Guided Federated Learning on Heterogeneity and Long-Tailed DataabstractFederated learning (FL) provides a decentralized machine learning paradigm where a server collaborates with a group of clients to learn a global model without accessing the clients' data. User heterogeneity is a significant challenge for FL, which together with the class-distribution imbalance further enhances the difficulty of FL. Great progress has been made in large vision-language models, such as Contrastive Language-Image Pre-training (CLIP), which paves a new way for image classification and object recognition. Inspired by the success of CLIP on few-shot and zero-shot learning, we use CLIP to optimize the federated learning between server and client models under its vision-language supervision. It is promising to mitigate the user heterogeneity and class-distribution balance due to the powerful cross-modality representation and rich open-vocabulary prior knowledge. In this paper, we propose the CLIP-guided FL (CLIP2FL) method on heterogeneous and long-tailed data. In CLIP2FL, the knowledge of the off-the-shelf CLIP model is transferred to the client-server models, and a bridge is built between the client and server. Specifically, for client-side learning, knowledge distillation is conducted between client models and CLIP to improve the ability of client-side feature representation. For server-side learning, in order to mitigate the heterogeneity and class-distribution imbalance, we generate federated features to retrain the server model. A prototype contrastive learning with the supervision of the text encoder of CLIP is introduced to generate federated features depending on the client-side gradients, and they are used to retrain a balanced server classifier. Extensive experimental results on several benchmarks demonstrate that CLIP2FL achieves impressive performance and effectively deals with data heterogeneity and long-tail distribution. The code is available at https://github.com/shijiangming1/CLIP2FL. Jiangming Shi, Shanshan Zheng, Xiangbo Yin, Yang Lu 0009, Yuan Xie 0006, Yanyun Qu |
AAAI | 1 |
| 2024 | Multi-memory Matching for Unsupervised Visible-Infrared Person Re-identification
Jiangming Shi, Xiangbo Yin, Yeyun Chen, Yachao Zhang 0001, Zhizhong Zhang 0001, Yuan Xie 0006, Yanyun Qu |
ECCV (18) | 1 |
| 2024 | Robust Pseudo-label Learning with Neighbor Relation for Unsupervised Visible-Infrared Person Re-IdentificationabstractUnsupervised Visible-Infrared Person Re-identification (USVI-ReID) presents a formidable challenge, which aims to match pedestrian images across visible and infrared modalities without any annotations. Recently, clustered pseudo-label methods have become predominant in USVI-ReID, although the inherent noise in pseudo-labels presents a significant obstacle. Most existing works primarily focus on shielding the model from the harmful effects of noise, neglecting to calibrate noisy pseudo-labels usually associated with hard samples, which will compromise the robustness of the model. To address this issue, we design a Robust Pseudo-label Learning with Neighbor Relation (RPNR) framework for USVI-ReID. To be specific, we first introduce a straightforward yet potent Noisy Pseudo-label Calibration module to correct noisy pseudo-labels. Due to the high intra-class variations, noisy pseudo-labels are difficult to calibrate completely. Therefore, we introduce a Neighbor Relation Learning module to reduce high intra-class variations by modeling potential interactions between all samples. Subsequently, we devise an Optimal Transport Prototype Matching module to establish reliable cross-modality correspondences. On that basis, we design a Memory Hybrid Learning module to jointly learn modality-specific and modality-invariant information. Comprehensive experiments conducted on two widely recognized benchmarks, SYSU-MM01 and RegDB, demonstrate that RPNR outperforms the current state-of-the-art GUR with an average Rank-1 improvement of 10.3%. The code is available at https://github.com/XiangboYin/RPNR. Xiangbo Yin, Jiangming Shi, Yachao Zhang 0001, Yang Lu 0009, Zhizhong Zhang 0001, Yuan Xie 0006, Yanyun Qu |
ACM Multimedia | 2 |
| 2024 | Learning Commonality, Divergence and Variety for Unsupervised Visible-Infrared Person Re-identificationabstractUnsupervised visible-infrared person re-identification (USVI-ReID) aims to match specified persons in infrared images to visible images without annotations, and vice versa. USVI-ReID is a challenging yet underexplored task. Most existing methods address the USVI-ReID through cluster-based contrastive learning, which simply employs the cluster center to represent an individual. However, the cluster center primarily focuses on commonality, overlooking divergence and variety. To address the problem, we propose a Progressive Contrastive Learning with Hard and Dynamic Prototypes for USVI-ReID. In brief, we generate the hard prototype by selecting the sample with the maximum distance from the cluster center. We reveal that the inclusion of the hard prototype in contrastive loss helps to emphasize divergence. Additionally, instead of rigidly aligning query images to a specific prototype, we generate the dynamic prototype by randomly picking samples within a cluster. The dynamic prototype is used to encourage variety. Finally, we introduce a progressive learning strategy to gradually shift the model's attention towards divergence and variety, avoiding cluster deterioration. Extensive experiments conducted on the publicly available SYSU-MM01 and RegDB datasets validate the effectiveness of the proposed method. Jiangming Shi, Xiangbo Yin, Yachao Zhang 0001, Zhizhong Zhang 0001, Yuan Xie 0001, Yanyun Qu |
NeurIPS | 1 |
| 2023 | Dual Pseudo-Labels Interactive Self-Training for Semi-Supervised Visible-Infrared Person Re-IdentificationabstractVisible-infrared person re-identification (VI-ReID) aims to match a specific person from a gallery of images captured from non-overlapping visible and infrared cameras. Most works focus on fully supervised VI-ReID, which requires substantial cross-modality annotation that is more expensive than the annotation in single-modality. To reduce the extensive cost of annotation, we explore two practical semi-supervised settings: uni-semi-supervised (annotating only visible images) and bi-semi-supervised (annotating partially in both modalities). These two semi-supervised settings face two challenges due to the large cross-modality discrepancies and the lack of correspondence supervision between visible and infrared images. Thus, it is diffi-cult to generate reliable pseudo-labels and learn modality-invariant features from noise pseudo-labels. In this paper, we propose a dual pseudo-label interactive self-training (DPIS) for these two semi-supervised VI-ReID. Our DPIS integrates two pseudo-labels generated by distinct models into a hybrid pseudo-label for unlabeled data. However, the hybrid pseudo-label still inevitably contains noise. To eliminate the negative effect of noise pseudo-labels, we introduce three modules: noise label penalty (NLP), noise correspondence calibration (NCC), and unreliable anchor learning (UAL). Specifically, NLP penalizes noise labels, NCC calibrates noisy correspondences, and UAL mines the hard-to-discriminate features. Extensive experimental results on SYSU-MM01 and RegDB demonstrate that our DPIS achieves impressive performance under these two semi-supervised settings. Jiangming Shi, Yachao Zhang 0001, Xiangbo Yin, Yuan Xie 0006, Zhizhong Zhang 0001, Jianping Fan 0007, Zhongchao Shi, Yanyun Qu |
ICCV | 1 |
| 2021 | Exploiting Invariance of Mining Facial LandmarksabstractIn this paper, we propose an invariant learning method for facial landmark mining in a self-supervised manner. The conventional methods mostly train with raw data of paired facial appearances and landmarks, assuming that they are evenly distributed. However, assumptions like this tend to lead to failures in challenging cases even undergo costly training since they usually don't hold in real-world scenarios. To address this issue, our model achieves to be invariant to facial biases by learning through the landmark-anchored distributions. Specifically, we generate faces from these distributions, then group them based on the appearance sources and the probe facial landmarks into intra-identities and intra-landmarks classes, respectively. Thus, we construct intra-class invariance losses to disentangle the spatial structures from appearances. In addition, we adopt a reconstruction loss to produce more realistic faces with probe landmarks. Extensive experimental results on four standard facial landmark datasets demonstrate that our method achieves compelling performance compared with supervised and unsupervised methods. Jiangming Shi, Zixian Gao, Hao Liu 0019, Zekuan Yu, Fengjun Li |
ACM Multimedia | 1 |