Division of Biomedical Systems Engineering, Graduate School of Information Science and Technology, Hokkaido University, Hokkaido, Japan.
Biomed Eng Online. 2012 Nov 27;11:90. doi: 10.1186/1475-925X-11-90.
The objective of our study was to develop a novel capacitive force sensor that enables simultaneous measurements of yaw torque around the pressure axis and normal force and shear forces at a single point for the purpose of elucidating pressure ulcer pathogenesis and establishing criteria for selection of cushions and mattresses.
Two newly developed sensors (approximately 10 mm × 10 mm × 5 mm (10) and 20 mm × 20 mm × 5 mm (20)) were constructed from silicone gel and four upper and lower electrodes. The upper and lower electrodes had sixteen combinations that had the function as capacitors of parallel plate type. The full scale (FS) ranges of force/torque were defined as 0-1.5 N, -0.5-0.5 N and -1.5-1.5 N mm (10) and 0-8.7 N, -2.9-2.9 N and -16.8-16.8 N mm (20) in normal force, shear forces and yaw torque, respectively. The capacitances of sixteen capacitors were measured by an LCR meter (AC1V, 100 kHz) when displacements corresponding to four degrees of freedom (DOF) forces within FS ranges were applied to the sensor. The measurement was repeated three times in each displacement condition (10 only). Force/torque were calculated by corrected capacitance and were evaluated by comparison to theoretical values and standard normal force measured by an universal tester.
In measurements of capacitance, the coefficient of variation was 3.23% (10). The Maximum FS errors of estimated force/torque were less than or equal to 10.1 (10) and 16.4% (20), respectively. The standard normal forces were approximately 1.5 (10) and 9.4 N (20) when pressure displacements were 3 (10) and 2 mm (20), respectively. The estimated normal forces were approximately 1.5 (10) and 8.6 N (10) in the same condition.
In this study, we developed a new four DOF force sensor for measurement of force/torque that occur between the skin and a mattress. In measurement of capacitance, the repeatability was good and it was confirmed that the sensor had characteristics that enabled the correction by linear approximation for adjustment of gain and offset. In estimation of forces/torque, we considered accuracy to be within an acceptable range.
本研究旨在开发一种新型电容式力传感器,该传感器可同时测量压力轴周围的偏航扭矩以及单点处的法向力和剪切力,以阐明压疮发病机制并为选择床垫和坐垫建立标准。
我们使用硅凝胶和四个上下电极制作了两个新开发的传感器(大约 10mm×10mm×5mm(10)和 20mm×20mm×5mm(20))。上下电极有十六种组合,具有平行板电容的功能。力/扭矩的满量程(FS)范围分别定义为 0-1.5N、-0.5-0.5N 和-1.5-1.5Nmm(10)和 0-8.7N、-2.9-2.9N 和-16.8-16.8Nmm(20)的法向力、剪切力和偏航扭矩。当传感器受到 FS 范围内四个自由度(DOF)力的位移时,通过 LCR 表(AC1V,100kHz)测量十六个电容器的电容。在每个位移条件下重复测量三次(仅 10 次)。通过校正后的电容计算力/扭矩,并通过与理论值和万能试验机测量的标准法向力进行比较进行评估。
在电容测量中,变异系数为 3.23%(10)。估计力/扭矩的最大 FS 误差小于或等于 10.1%(10)和 16.4%(20)。当压力位移分别为 3mm(10)和 2mm(20)时,标准法向力约为 1.5N(10)和 9.4N(20)。在相同条件下,估计的法向力约为 1.5N(10)和 8.6N(10)。
本研究开发了一种新的四自由度力传感器,用于测量皮肤和床垫之间的力/扭矩。在电容测量中,重复性良好,并且确认传感器具有通过线性近似进行校正以调整增益和偏移的特性。在力/扭矩的估计中,我们认为精度在可接受的范围内。