Huang Yanwen, Lin Weiqiang, Wu Peijin, Wang Yongxin, Guo Ziyuan, Huang Pengcheng, Ye Zhicheng
Department of Electronic Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China, Fuzhou 350108, China.
Sensors (Basel). 2024 Aug 16;24(16):5319. doi: 10.3390/s24165319.
As screen sizes are becoming larger and larger, exceeding human physical limitations for direct interaction via touching, remote control is inevitable. However, among the current solutions, inertial gyroscopes are susceptible to positional inaccuracies, and gesture recognition is limited by cameras' focus depths and viewing angles. Provided that the issue of ghost points can be effectively addressed, grating antenna light-trapping technology is an ideal candidate for multipoint inputs. Therefore, we propose a differential amplitude modulation scheme for grating antenna-based multi-beam optical touch, which can recognize different incidence points. The amplitude of the incident beams was first coded with different pulse widths. Then, following the capture of incident beams by the grating antenna and their conversion into electrical currents by the aligned detector arrays, the incident points of the individual beams were recognized and differentiated. The scheme was successfully verified on an 18-inch screen, where two-point optical touch with a position accuracy error of under 3 mm and a response time of less than 7 ms under a modulation frequency of 10 kHz on both incident beams was achieved. This work demonstrates a practical method to achieve remote multi-point touch, which can make digital mice more accurately represent the users' pointing directions by obeying the natural three-point one-line aiming rule instantaneously.
随着屏幕尺寸越来越大,超出了人类通过触摸进行直接交互的身体限制,远程控制成为必然。然而,在当前的解决方案中,惯性陀螺仪容易出现位置不准确的问题,手势识别受到相机聚焦深度和视角的限制。如果能有效解决重影点问题,光栅天线光捕获技术是多点输入的理想选择。因此,我们提出了一种基于光栅天线的多光束光学触摸的差分幅度调制方案,该方案可以识别不同的入射点。首先用不同的脉冲宽度对入射光束的幅度进行编码。然后,在光栅天线捕获入射光束并由对齐的探测器阵列将其转换为电流之后,识别并区分各个光束的入射点。该方案在18英寸屏幕上成功得到验证,在两束入射光束的调制频率为10kHz时,实现了两点光学触摸,位置精度误差在3mm以内,响应时间小于7ms。这项工作展示了一种实现远程多点触摸的实用方法,该方法可以使数字鼠标通过瞬间遵循自然的三点一线瞄准规则,更准确地代表用户的指向方向。