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Tongshu Chen

5 accepted papers

2026

Design of a Passive Gravity Compensation Mechanism for Wearable Bilateral Lower Limb Exoskeletons

RA-L 2026

Gravity compensation has been widely employed in lower limb exoskeletons to reduce leg load and alleviate muscle fatigue. Passive compensation approaches offer inherent safety and lightweight advantages; however, existing designs are often constrained by the bulk and complexity of spring-based mecha

Cited by 0SourceScholar
2026

Design of a Passive Gravity Compensation Mechanism for Wearable Bilateral Lower Limb Exoskeletons

ICRA 2026poster

,重力补偿已被广泛应用于下肢 外骨骼用于减轻腿部负荷并缓解肌肉疲劳。被动 补偿方式具有固有的安全性和轻量化 优势;然而,现有设计常常受限于体积 以及基于弹簧的机制复杂性,这会损害 外骨骼的紧凑性和可靠性。为了解决这些问题 局限性,针对 可穿戴的被动双侧下肢外骨骼,具有紧凑型, 设计简单且坚固。基于 合成质心映射方法首先被引入,随后进行扩展 通过微分结构实现双侧配置。综合赛 采用自适应恒定力机制,最终系统 保持结构简洁和空间效率,使其 适合集成空间有限的可穿戴应用。一个 外骨骼原型基于所提出的机制构建, 其性能通过实验进行

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2026

Floating Prosthesis: A Wearable Passive Exoskeleton for Transradial Prosthesis Gravity Compensation

RA-L 2026

Gravitational loading from a transradial prosthesis imposes continuous mechanical stress on the residual limb, potentially causing discomfort and even prosthesis rejection. This letter presents the Floating Prosthesis, a wearable passive exoskeleton designed for gravity compensation (GC) in transrad

Cited by 0SourceScholar