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Dandan Zhang

41 accepted papers

2026

A Closed-Loop Multi-Agent Framework for Robust Multi-Robot Manipulation

RSS 2026poster

Multi-robot systems provide the parallelism and redundancy necessary for long-horizon tasks, while Large Language Models (LLMs) offer the reasoning capabilities to decompose these objectives into actionable plans. However, effectively grounding this high-level reasoning in physical multi-agent execu…

Cited by 0SourceScholar
2026

ADM-DP: Adaptive Dynamic Modality Diffusion Policy through Vision-Tactile-Graph Fusion for Multi-Agent Manipulation

ICRA 2026poster

Multi-agent robotic manipulation remains challenging due to the combined demands of coordination, grasp stability, and collision avoidance in shared workspaces. To address these challenges, we propose the Adaptive Dynamic Modality Diffusion Policy (ADM-DP), a framework that integrates vision, tactil…

2026

Design and Control of Modular Magnetic Millirobots for Multimodal Locomotion and Shape Reconfiguration

ICRA 2026poster

Modular small-scale robots offer the potential for on-demand assembly and disassembly, enabling task-specific adaptation in dynamic and constrained environments. However, existing modular magnetic platforms often depend on workspace collisions for reconfiguration, employ bulky three-dimensional elec…

2026

MultiDiffSense: Diffusion-Based Multi-Modal Visuo-Tactile Image Generation Conditioned on Object Shape and Contact Pose

ICRA 2026poster

Acquiring aligned visuo-tactile datasets is slow and costly, requiring specialised hardware and large-scale data collection. Synthetic generation is promising, but prior methods are typically single-modality, limiting cross-modal learning. We present MultiDiffSense, a unified diffusion model that sy…

2026

Physics-Informed Machine Learning for Efficient Sim-To-Real Data Augmentation in Micro-Object Pose Estimation

ICRA 2026poster

Precise pose estimation of optical microrobots is essential for enabling high-precision object tracking and autonomous biological studies. However, current methods rely heavily on large, high-quality microscope image datasets, which are difficult and costly to acquire due to the complexity of micror…

2026

SARL: Spatially-Aware Self-Supervised Representation Learning for Visuo-Tactile Perception

ICRA 2026poster

Contact-rich robotic manipulation requires representations that encode local geometry. Vision provides global context but lacks direct measurements of properties such as texture and hardness, whereas touch supplies these cues. Modern visuo-tactile sensors capture both modalities in a single fused im…

2026

Stop the Flip-Flop: Context-Preserving Verification for Fast Revocable Diffusion Decoding

ICML 2026poster

Parallel diffusion decoding can accelerate diffusion language model inference by unmasking multiple tokens per step, but aggressive parallelism often harms quality. Revocable decoding mitigates this by rechecking earlier tokens, yet we observe that existing verification schemes frequently trigger fl…

Cited by 0SourceScholar
2026

TactEx: An Explainable Multimodal Robotic Interaction Framework for Human-Like Touch and Hardness Estimation

ICRA 2026poster

Accurate perception of object hardness is essential for safe and dexterous contact-rich robotic manipulation. Here, we present TactEx, an explainable multimodal robotic interaction framework that unifies vision, touch, and language for human-like hardness estimation and interactive guidance. While t…

2025

Coarse-to-Fine Learning for Multi-Pipette Localisation in Robot-Assisted In Vivo Patch-Clamp

IROS 2025

In vivo image-guided multi-pipette patch-clamp is essential for studying cellular interactions and network dynamics in neuroscience. However, current procedures mainly rely on manual expertise, which limits accessibility and scalability. Robotic automation presents a promising solution, but achievin

Cited by 1SourceScholar
2025

Deep Reinforcement Learning-Based Semi-Autonomous Control for Magnetic Micro-Robot Navigation with Immersive Manipulation

ICRA 2025

Magnetic micro-robots have demonstrated immense potential in biomedical applications, such as in vivo drug delivery, non-invasive diagnostics, and cell-based therapies, owing to their precise maneuverability and small size. However, current micromanipulation techniques often rely solely on a two-dim

Cited by 3SourceScholar
2025

Hybrid Spatial-Frequency Attention Network For Fine-Grained Skeleton-Based Action Recognition

ICASSP 2025accepted

Recently, Transformer-based methods have gained popularity in skeleton-based action recognition due to their advantages in modeling long-range dependencies. However, Transformer lacks the inductive biases towards skeletal topology and tends to capture salient features, potentially overlooking subtle…

Cited by 0SourceScholar
2025

Interactive OT Gym: A Reinforcement Learning-Based Interactive Optical Tweezer (OT)-Driven Microrobotics Simulation Platform

ICRA 2025

Optical tweezers (OT) offer unparalleled capabilities for micromanipulation with submicron precision in biomedical applications. However, controlling conventional multi-trap OT to achieve cooperative manipulation of multiple complexshaped microrobots in dynamic environments poses a significant chall

Cited by 3SourceScholar
2025

Jigsaw-Puzzles: From Seeing to Understanding to Reasoning in Vision-Language Models

EMNLP 2025

Spatial reasoning is a core component of human cognition, enabling individuals to perceive, comprehend, and interact with the physical world. It relies on a nuanced understanding of spatial structures and inter-object relationships, serving as the foundation for complex reasoning and decision-making

2025

Rethinking Bimanual Robotic Manipulation: Learning with Decoupled Interaction Framework

ICCV 2025poster

Bimanual robotic manipulation is an emerging and critical topic in the robotics community. Previous works primarily rely on integrated control models that take the perceptions and states of both arms as inputs to directly predict their actions. However, we think bimanual manipulation involves not on…

Cited by 0SourcePDFScholar
2025

TypeTele: Releasing Dexterity in Teleoperation by Dexterous Manipulation Types

CoRL 2025poster

Dexterous teleoperation plays a crucial role in robotic manipulation for real-world data collection and remote robot control. Previous dexterous teleoperation mostly relies on hand retargeting to closely mimic human hand postures. However, these approaches may fail to fully leverage the inherent dex…

Cited by 0SourceScholar
2024

Adaptive Motion Scaling for Robot-Assisted Microsurgery Based on Hybrid Offline Reinforcement Learning and Damping Control

ICRA 2024poster

Motion scaling is essential to empower users to conduct precise manipulation during teleoperation for robot-assisted microsurgery (RAMS). A constant, small motion scaling ratio can enhance the precision of teleoperation but hinder the operator from quickly reaching distant targets. The concept of se…

Cited by 1SourceScholar
2024

Towards the New Generation of Smart Home-Care with Cloud-Based Internet of Humans and Robotic Things

IROS 2024poster

The burgeoning demand for home-care services, driven by a rapidly aging global population, necessitates innovative solutions to alleviate the burden on caregivers and enhance care quality. This paper introduces the development of an Inter-net of Human and Robotic Things (IoHRT) framework, which syne…

Cited by 0SourceScholar
2024

ViTacTip: Design and Verification of a Novel Biomimetic Physical Vision-Tactile Fusion Sensor

ICRA 2024poster

Tactile sensing is significant for robotics since it can obtain physical contact information during manipulation. To capture multimodal contact information within a compact framework, we designed a novel sensor called ViTacTip, which seamlessly integrates both tactile and visual perception capabilit…

Cited by 15SourceScholar
2023

Attention for Robot Touch: Tactile Saliency Prediction for Robust Sim-to-Real Tactile Control

IROS 2023poster

High-resolution tactile sensing can provide accurate information about local contact in contact-rich robotic tasks. However, the deployment of such tasks in unstructured environments remains under-investigated. To improve the robustness of tactile robot control in unstructured environments, we propo…

Cited by 3SourceScholar
2023

Bi-Touch: Bimanual Tactile Manipulation With Sim-to-Real Deep Reinforcement Learning

RA-L 2023

Bimanual manipulation with tactile feedback will be key to human-level robot dexterity. However, this topic is less explored than single-arm settings, partly due to the availability of suitable hardware along with the complexity of designing effective controllers for tasks with relatively large stat

Cited by 49SourceScholar
2023

Digital Twin-Driven Mixed Reality Framework for Immersive Teleoperation With Haptic Rendering

RA-L 2023

Teleoperation has widely contributed to many applications. Consequently, the design of intuitive and ergonomic control interfaces for teleoperation has become crucial. The rapid advancement of Mixed Reality (MR) has yielded tangible benefits in human-robot interaction. MR provides an immersive envir

Cited by 21SourceScholar
2023

Hierarchical Semi-Supervised Learning Framework for Surgical Gesture Segmentation and Recognition Based on Multi-Modality Data

IROS 2023poster

Segmenting and recognizing surgical operation trajectories into distinct, meaningful gestures is a critical preliminary step in surgical workflow analysis for robot-assisted surgery. This step is necessary for facilitating learning from demonstrations for autonomous robotic surgery, evaluating surgi…

Cited by 0SourceScholar
2023

Sim-to-Real Model-Based and Model-Free Deep Reinforcement Learning for Tactile Pushing

RA-L 2023

Object pushing presents a key non-prehensile manipulation problem that is illustrative of more complex robotic manipulation tasks. While deep reinforcement learning (RL) methods have demonstrated impressive learning capabilities using visual input, a lack of tactile sensing limits their capability f

Cited by 24SourceScholar
2023

TIMS: A Tactile Internet-Based Micromanipulation System with Haptic Guidance for Surgical Training

IROS 2023poster

Microsurgery involves the dexterous manipulation of delicate tissue or fragile structures, such as small blood vessels and nerves, under a microscope. To address the limitations of imprecise manipulation of human hands, robotic systems have been developed to assist surgeons in performing complex mic…

Cited by 8SourcecodeScholar
2023

Tac-VGNN: A Voronoi Graph Neural Network for Pose-Based Tactile Servoing

ICRA 2023poster

Tactile pose estimation and tactile servoing are fundamental capabilities of robot touch. Reliable and precise pose estimation can be provided by applying deep learning models to high-resolution optical tactile sensors. Given the recent successes of Graph Neural Network (GNN) and the effectiveness o…

Cited by 9SourceScholar
2023

TacMMs: Tactile Mobile Manipulators for Warehouse Automation

RA-L 2023

Multi-robot platforms are playing an increasingly important role in warehouse automation for efficient goods transport. This paper proposes a novel customization of a multi-robot system, called Tactile Mobile Manipulators (TacMMs). Each TacMM integrates a soft optical tactile sensor and a mobile rob

Cited by 19SourceScholar
2022

Design and Modelling of A Spring-Like Continuum Joint with Variable Pitch for Endoluminal Surgery

IROS 2022poster

In endoluminal surgery, the miniature instruments shall be of high accuracy and flexibility for minimal invasive diagnosis and surgical intervention. To this end, continuum robots with flexible joints have been proposed as the mechanism of endoscopic instruments. The compliance and deformability of…

Cited by 1SourceScholar
2022

Human-Robot Shared Control for Surgical Robot Based on Context-Aware Sim-to-Real Adaptation

ICRA 2022poster

Human-robot shared control, which integrates the advantages of both humans and robots, is an effective approach to facilitate efficient surgical operation. Learning from demonstration (LfD) techniques can be used to automate some of the surgical sub tasks for the construction of the shared control m…

Cited by 43SourceScholar
2021

Real-time Surgical Environment Enhancement for Robot-Assisted Minimally Invasive Surgery Based on Super-Resolution

ICRA 2021poster

In Robot-Assisted Minimally Invasive Surgery (RAMIS), a camera assistant is normally required to control the position and the zooming ratio of the laparoscope, following the surgeon’s instructions. However, moving the laparoscope frequently may lead to unstable and suboptimal views, while the adjust…

Cited by 16SourceScholar
2021

Surgical Gesture Recognition Based on Bidirectional Multi-Layer Independently RNN with Explainable Spatial Feature Extraction

ICRA 2021poster

Minimally invasive surgery mainly consists of a series of sub-tasks, which can be decomposed into basic gestures or contexts. As a prerequisite of autonomic operation, surgical gesture recognition can assist motion planning and decision-making, and build up context-aware knowledge to improve the sur…

Cited by 18SourceScholar
2020

A Learning-Driven Framework with Spatial Optimization For Surgical Suture Thread Reconstruction and Autonomous Grasping Under Multiple Topologies and Environmental Noises

IROS 2020poster

Surgical knot tying is one of the most fundamental and important procedures in surgery, and a high-quality knot can significantly benefit the postoperative recovery of the patient. However, a longtime operation may easily cause fatigue to surgeons, especially during the tedious wound closure task. I…

Cited by 17SourceScholar
2020

An Ergonomic Shared Workspace Analysis Framework for the Optimal Placement of a Compact Master Control Console

RA-L 2020

Master-Slave control is commonly used for RobotAssisted Minimally Invasive Surgery (RAMIS). The configuration, as well as the placement of the master manipulators, can influence the remote control performance. An ergonomic shared workspace analysis framework is proposed in this letter. Combined with

Cited by 23SourceScholar
2020

Automatic Microsurgical Skill Assessment Based on Cross-Domain Transfer Learning

RA-L 2020

The assessment of microsurgical skills for Robot-Assisted Microsurgery (RAMS) still relies primarily on subjective observations and expert opinions. A general and automated evaluation method is desirable. Deep neural networks can be used for skill assessment through raw kinematic data, which has the

Cited by 46SourceScholar
2020

Supervised Semi-Autonomous Control for Surgical Robot Based on Banoian Optimization

IROS 2020poster

The recent development of Robot-Assisted Minimally Invasive Surgery (RAMIS) has brought much benefit to ease the performance of complex Minimally Invasive Surgery (MIS) tasks and lead to more clinical outcomes. Compared to direct master-slave manipulation, semi-autonomous control for the surgical ro…

Cited by 37SourceScholar
2019

A Handheld Master Controller for Robot-Assisted Microsurgery

IROS 2019poster

Accurate master-slave control is important for Robot-Assisted Microsurgery (RAMS). This paper presents a handheld master controller for the operation and training of RAMS. A 9-axis Inertial Measure Unit (IMU) and a micro camera are utilized to form the sensing system for the handheld controller. A n…

Cited by 22SourceScholar
2019

A Self-Adaptive Motion Scaling Framework for Surgical Robot Remote Control

RA-L 2019

Master-slave control is a common form of human-robot interaction for robotic surgery. To ensure seamless and intuitive control, a mechanism of self-adaptive motion scaling during teleoperaton is proposed in this letter. The operator can retain precise control when conducting delicate or complex mani

Cited by 44SourceScholar
2019

Design and Verification of A Portable Master Manipulator Based on an Effective Workspace Analysis Framework

IROS 2019poster

Master manipulators represent a key component of Robot-Assisted Minimally Invasive Surgery (RAMIS). In this paper, an Analytic Hierarchy Process (AHP) method is used to construct an effective workspace analysis framework, which can assist the configuration selection and design evaluation of a portab…

Cited by 20SourceScholar
2019

WSRender: A Workspace Analysis and Visualization Toolbox for Robotic Manipulator Design and Verification

RA-L 2019

Workspace analysis is essential for robotic manipulators, which helps researchers study, evaluate, and optimize their designs based on specific criteria with due consideration of ergonomics and usability. Although workspace analysis is a common research topic, current solutions provide design-specif

Cited by 19SourceScholar