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Zaiyang Chen

6 accepted papers

2026

Field-Superimposed Control Magnetically Driving Nanorobot Swarms with Hybrid Rotating and Gradient Fields

ICRA 2026poster

Magnetically actuated micro/nanorobot swarms have exhibited considerable promise for targeted biomedical delivery and localized therapies, attributed to their advantages of remote manipulation and robust penetration through biological tissues. However, achieving the simultaneous enhancement of both …

Cited by 0Scholar
2026

Integrated Hydrogel Patterning and Dynamic Microparticle Manipulation Using Optoelectronic Tweezers

ICRA 2026poster

This paper presents an integrated optoelectronic tweezers platform that unifies hydrogel microstructure fabrication with subsequent dynamic microsphere manipulation, enabled by a dual-wavelength optical strategy for seamless and programmable control. Initial tests in low-conductivity aqueous media c…

Cited by 0Scholar
2026

Programmable Assembly and Cooperative Manipulation of Heterogeneous Microspheres Via Optoelectronic Tweezers

ICRA 2026poster

The programmable assembly and actuation of micro- and nanostructures remain key challenges in the development of micro-robotics. This work presents a programmable assembly and cooperative actuation strategy for heterogeneous microspheres based on optoelectronic tweezers (OET). By employing Ag-PS mic…

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2026

Unified Magnetic 5-DoF Localization Framework for Capsule Robots Via PMMN-DBO: From Single to Multi-Robot Scenarios with Real-Time Control–Localization Co-Design

ICRA 2026poster

Motivated by clinical needs for precise navigation and safety, low-latency and high-precision localization has become a key enabler for capsule robots. A unified magnetic 5-DoF high-precision localization framework for capsule robots is presented. Building on layered multi-source magnetic field mode…

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2025

Control and Localization of Magnetic Nanorobot Swarms in Human-Sized Vascular Phantom

IROS 2025

Magnetically controlled micro-nano robots hold revolutionary significance in the clinical targeted treatment of brain tumors. Imaging and tracking miniature robots can provide feedback for precise magnetic field control. The cooperation among micro-nano robots, magnetic field control system, and ima

Cited by 0SourceScholar
2025

High-Precision Parallel Manipulation of Multi-Particle System Using Optoelectronic Tweezers

IROS 2025

This paper presents a multi-particle parallel manipulation optoelectronic tweezers system integrated with computer vision technology, enabling the parallel and precise manipulation of dozens of particles. This system significantly enhances manipulation efficiency while maintaining high precision. By

Cited by 0SourceScholar