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Ping Zhong

14 accepted papers

2026

Awaken Memories with Words: Recursive Visual Imagination and Adaptive Linguistic Grounding for Vision Language Navigation

ICRA 2026poster

Vision Language Navigation (VLN) typically requires agents to navigate to specified objects or remote regions in unknown scenes by obeying linguistic commands. Such tasks require organizing historical visual observations for linguistic grounding, which is critical for long-sequence navigational deci…

Cited by 0Scholar
2026

Environment-Driven Online LiDAR-Camera Extrinsic Calibration (I)

ICRA 2026poster

LiDAR-camera extrinsic calibration (LCEC) is crucial for multi-modal data fusion in autonomous robotic systems. Existing methods, whether target-based or target-free, typically rely on customized calibration targets or fixed scene types, which limit their applicability in real-world scenarios. To ad…

Cited by 0Scholar
2026

LeGO-MM: Learning Navigation for Goal-Oriented Mobile Manipulation Via Hierarchical Policy Distillation

ICRA 2026poster

Benefiting from mobility and dexterity, Mobile Manipulation (MM) systems are expected to assist humans with diverse tasks in everyday life. However, since MM tasks (e.g., tidying up a room) require learning multi-stage heterogeneous behaviors (e.g., picking, placing, and opening), existing Reinforce…

Cited by 0Scholar
2026

Spatially Generalizable Mobile Manipulation via Adaptive Experience Selection and Dynamic Imagination

IJCAI 2026

Mobile Manipulation (MM) involves long-horizon decision-making over multi-stage compositions of heterogeneous skills, such as navigation and picking up objects. Despite recent progress, existing MM methods still face two key limitations: (i) low sample efficiency, due to ineffective use of redundant

Cited by 0Scholar
2026

TiCoSS: Tightening the Coupling between Semantic Segmentation and Stereo Matching within a Joint Learning Framework (I)

ICRA 2026poster

Semantic segmentation and stereo matching, respectively analogous to the ventral and dorsal streams in our human brain, are two key components of autonomous driving perception systems. Addressing these two tasks with separate networks is no longer the mainstream direction in developing computer visi…

Cited by 0Scholar
2026

Towards Ultrasound-based Reliable Disease Diagnosis Using Causal Inference

AAAI 2026technical

Aligning the decision-making process of deep learning models with that of experienced sonographers is essential for ultrasound-based reliable disease diagnosis. Although existing methods have made significant progress in this aspect, their alignments are primarily associational rather than causal, l

Cited by 0SourcePDFScholar
2025

Dive into Aerial Remote Sensing Underwater Depth Estimation with Hyperspectral Imagery

AAAI 2025technical

Visible spectrum images capture limited information from just three discrete bands, often resulting in suboptimal performance in underwater depth estimation (UDE) due to significant information loss from water absorption. In contrast, HSIs, which include hundreds of continuous bands, provide abunda…

2025

Fusion Meets Diverse Conditions: A High-diversity Benchmark and Baseline for UAV-based Multimodal Object Detection with Condition Cues

ICCV 2025poster

Unmanned aerial vehicles (UAV)-based object detection with visible (RGB) and infrared (IR) images facilitates robust around-the-clock detection, driven by advancements in deep learning techniques and the availability of high-quality dataset. However, the existing dataset struggles to fully capture r…

Cited by 0SourcePDFScholar
2025

UCM-VeID V2: A Richer Dataset and A Pre-training Method for UAV Cross-Modality Vehicle Re-Identification

CVPR 2025poster

Cross-Modality Re-Identification (VI-ReID) aims to achieve around-the-clock target matching, benefiting from the strengths of both RGB and infrared (IR) modalities. However, the field is hindered by limited datasets, particularly for vehicle VI-ReID, and by challenges such as modality bias training…

Cited by 0SourcePDFScholar
2024

HSPNav: Hierarchical Scene Prior Learning for Visual Semantic Navigation Towards Real Settings

ICRA 2024poster

Visual Semantic Navigation (VSN) aims at navigating a robot to a given target object in a previously unseen scene. To tackle this task, the robot must learn a nimble navigation policy by utilizing spatial patterns and semantic co-occurrence relations among objects in the scene. Prevailing approaches…

Cited by 1SourceScholar
2024

SocialNav-FTI: Field-Theory-Inspired Social-aware Navigation Framework based on Human Behavior and Social Norms

IROS 2024poster

Social navigation is a key consideration for integrating robots into human environments. Concurrently, it imposes heightened requisites: tasks must not only be executed succesfully without collisions, but also adhere to principles encompassing comprehensibility, courtesy, social compliance, comprehe…

Cited by 0SourceScholar
2024

Socially Aware Object Goal Navigation With Heterogeneous Scene Representation Learning

RA-L 2024

Socially aware Object Goal Navigation (ObjectNav) requires robots to navigate to objects with specific semantic categories while understanding complex human social awareness and semantic co-occurrence relations among objects. Existing solutions usually achieve scene representation by mapping these c

Cited by 9SourceScholar
2024

Weakly Misalignment-free Adaptive Feature Alignment for UAVs-based Multimodal Object Detection

CVPR 2024poster

Visible-infrared (RGB-IR) image fusion has shown great potentials in object detection based on unmanned aerial vehicles (UAVs). However the weakly misalignment problem between multimodal image pairs limits its performance in object detection. Most existing methods often ignore the modality gap and e…

Cited by 6SourcePDFScholar
2022

Information-Driven Fast Marching Autonomous Exploration With Aerial Robots

RA-L 2022

Autonomous exploration in unknown environments is a fundamental task of Unmanned Aerial Vehicles (UAVs). To choose exploration goals wisely, we propose an information-driven exploration strategy by applying the fast marching method to exploration of UAVs. A frontier point detection algorithm is desi

Cited by 44SourcecodeScholar