Recent advances in multimodal sensing integration and decoupling strategies for tactile perception

Huijun Kong, Weiyan Li, Zhongqian Song, Li Niu
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Abstract

Human skin perceives external environmental stimulus by the synergies between the subcutaneous tactile corpuscles. Soft electronics with multiple sensing capabilities by mimicking the function of human skin are of significance in health monitoring and artificial sensation. The last decade has witnessed unprecedented development and convergence between multimodal tactile sensing devices and soft bioelectronics. Despite these advances, traditional flexible electronics achieve multimodal tactile sensing for pressure, strain, temperature, and humidity by integrating monomodal sensing devices together. This strategy results in high energy consumption, limited integration, and complex manufacturing process. Various multimodal sensors and crosstalk-free sensing mechanisms have been proposed to bridge the gap between natural sensory system and artificial perceptual system. In this review, we provide a comprehensive summary of tactile sensing mechanism, integration design principles, signal-decoupling strategies, and current applications for multimodal tactile perception. Finally, we highlight the current challenges and present the future perspectives to promote the development of multimodal tactile perception.
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多模态传感整合与触觉解耦策略的最新进展
人体皮肤通过皮下触觉团之间的协同作用感知外部环境刺激。通过模仿人体皮肤的功能,具有多种感知能力的软电子器件在健康监测和人工感知方面具有重要意义。过去十年见证了多模态触觉传感设备和软生物电子学的空前发展和融合。尽管取得了这些进步,传统的柔性电子器件仍通过将单模态传感设备集成在一起来实现压力、应变、温度和湿度的多模态触觉传感。这种策略导致了高能耗、有限的集成度和复杂的制造工艺。为了缩小自然感知系统与人工感知系统之间的差距,人们提出了各种多模态传感器和无串扰传感机制。在这篇综述中,我们全面总结了触觉传感机制、集成设计原理、信号去耦策略以及当前多模态触觉感知的应用。最后,我们强调了当前面临的挑战,并提出了未来促进多模态触觉感知发展的展望。
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