物联网模拟汽车5-CH随动器传感器的有效性评价

P. Netinant, Wiphoosana Malawittaya, Meennapa Rukhiran
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引用次数: 0

摘要

由于2019年底开始的2019冠状病毒病(COVID-19)全球大流行,世界发生了变化,迫使所有人类生活以新的形式生活,与社区隔离,工作和学习。COVID-19疾病无疑对交通生态系统产生了影响。食品、杂货甚至药物都是由送货员直接从餐馆送到顾客手中的,他们可能会导致接触并容易感染。通过应用物联网(IoT)知识,提出并解决了交付解决方案,以减少客户交付方的风险。物联网概念可以帮助我们开发一种无需人为干预的移动物体或模拟汽车。车辆被编程为平行于一条连续线的表面运行,这被称为直线跟随。为了在各种条件下(如线宽或粗糙表面)实现更高的有效跟踪精度,需要对随动器传感器进行校准。本研究考察和比较了模拟汽车在不同线宽上运行时的表现,为未来的应用和开发做准备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluations of Effective on 5-CH Line Follower Sensor with IoT Simulating Car
Due to the global pandemic of Coronavirus 2019 disease (COVID-19), which began in late 2019, the world has changed and forced all human life to adapt by living in new forms, isolated from the community for both works and learning from their residences. COVID-19 disease undoubtedly has had an impact on the transportation ecosystem. Food, groceries, and even medications are delivered directly from restaurants to customers by deliverers, who can cause exposure and easily infect. Delivery solutions have been proposed and solved through the application of Internet of Things (IoT) knowledge to reduce customer-deliverer exposure. The Internet of Things concept can assist us in developing a mobility object or simulated car that operates without human intervention. The vehicle is programmed to run parallel to the surface of a continuous line, which is referred to as line following. Calibration of the line follower sensor is required to achieve a higher effective tracking accuracy under various conditions, such as line width or rough surface. This research examines and compares how the simulated car behaves when run on various linewidths in preparation for future application and development.
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