基于FPGA的实时背部姿势校正装置

Srijan Verma, Nandha Kumar Thulasiraman, Andy Chan Tak Yee
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引用次数: 0

摘要

这是一个公认的主题,不良的姿势导致严重的健康并发症,从幼儿到老年人。这种不良的姿势可能是严重受伤、手术后遗症或悲惨的先天缺陷造成的。这种姿势的长期影响不仅会引起骨科问题,还会引起神经和心血管疾病。本文提出了一种基于现场可编程门阵列(FPGA)和陀螺仪的概念设计,通过实时提供腰椎支持来缓解背痛和改善形态。三个陀螺仪放置在用户的背后,以准确测量佩戴者的身体方向。陀螺仪的数据使用超高速集成电路硬件描述语言(VHDL)开发的数字设计进行处理,并使用适当的测试台在仿真环境中进行验证。实验证明,该系统检测人体位置角度变化的精度可达0.005度。提出的设计旨在解决现有系统中最常见的部署能力和可靠性问题。多功能性是设计建议的关键,因为它可以与其他几种美容设备连接,并且可以根据消费者的需求进行定制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FPGA Based Real Time Back Posture Correction Device
It is a well agreed upon subject that bad posture leads to serious health complications from toddlers to elderly. This bad posture can be a result of a serious injury, an aftermath of a surgery or a tragic birth defect. Long term effects of such posture not only give rise to orthopaedic issue but nervous and cardiovascular as well. This paper presents a Field Programmable Gate Array (FPGA) and gyroscope-based concept design for alleviating back pain and improving form by offering lumbar support in real time. The three gyroscopes placed at the back of the user to accurately measure wearers body orientation. The data from the gyroscopes are processed using a digital design developed using Very high-speed integrated circuit Hardware Description Language (VHDL) and it is validated in the simulation environment using the appropriate testbench. The presented system proved to have an accuracy of detecting the angle variation of the body position to 0.005 degree. The proposed design is intended to tackle the deploy ability and reliability issues found most in the existing systems. Versatility is the key to the design proposed as it can be interfaced with several other cosmetic devices and it can be customized based on the consumer’s needs.
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