• 专利标题:   Plantar pressure monitoring system based on graphene nanowall tactile sensor comprises foot pressure measurement platform, graphene nano-wall tactile sensing, signal acquisition unit, signal control and processing unit and display unit.
  • 专利号:   CN111256887-A
  • 发明人:   WEI D, YANG J, XIE Y, SUN T, SHI H
  • 专利权人:   CHINESE ACAD SCI CHONGQING GREEN INTEL
  • 国际专利分类:   A61B005/00, A61B005/103, G01L001/20
  • 专利详细信息:   CN111256887-A 09 Jun 2020 G01L-001/20 202051 Pages: 11 Chinese
  • 申请详细信息:   CN111256887-A CN10048600 16 Jan 2020
  • 优先权号:   CN10048600

▎ 摘  要

NOVELTY - Plantar pressure monitoring system based on graphene nanowall tactile sensor comprises foot pressure measurement platform, graphene nano-wall tactile sensing, inflatable airbag, signal acquisition unit, signal control and processing unit and display unit. The plantar pressure measurement platform includes inflation and exhaust buffer layer, graphene nanowall sensing layer and inflatable airbag adjustment layer. The person stands still on platform and array sensor collects plantar pressure information of human body against plantar pressure measurement platform. The airbag adjustment system is located in measurement platform, which improve pressure distribution of sole of user according to the reconstruction signal of system and adjust amount of inflation until user feels a comfortable pressure distribution. The insole customization system collects plantar pressure image of person standing on platform in measurement area and system model can redistribute plantar pressure distribution. USE - Used as a plantar pressure monitoring system based on graphene nanowall tactile sensor. ADVANTAGE - The system obtains rich plantar pressure data via graphene nano-wall tactile sensor; restores user's normal plantar pressure distribution via large amount of model training; and realizes personalization and intelligentization of insole customization. DESCRIPTION OF DRAWING(S) - The drawing shows a schematic representation of the plantar pressure monitoring system based on graphene nanowall tactile sensor.