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An Intelligent Framework to Manage and Control an Autonomous Platform for Detection, Inspection and Monitoring Applications in Chemical Environments

机译:一个智能框架,用于管理和控制化学环境中的检测,检查和监控应用的自主平台

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摘要

Implementing an intelligent framework using an autonomous robotic platform offers an effective and versatile solution for monitoring chemical environments. The robotic platform can be customized by adding different types of sensors depending on the desired application. The intelligent control system is realized using a PID control line tracker algorithm allowing it to cover a larger area for data acquisition for further analysis. The data is logged in terms of platform position based on GPS coordinates and time stamp and time interval between sampling. We were able to test the behavior of the developed robot in aggressive chemical environments- acid and base- as well as in experimental ambient conditions (variable concentrations of 02 and CO). The only limitation we found this moment is the concentrations of acids and bases to be used (Perchloric acid, Hydrochloric acid, Sulfuric acid, Acetic acid, Methanesulfonic acid, Sodium hydroxide, Potassium hydroxide, Sodium carbonate, Sodium sulfate, Sodium fluoride) starting from the observed and proved damage on the plastics of the wheel.
机译:使用自主机器人平台实施智能框架为监测化学环境提供了有效和多功能的解决方案。根据所需的应用,可以通过添加不同类型的传感器来定制机器人平台。智能控制系统使用PID控制线跟踪器算法实现,允许其覆盖更大的区域以进​​行进一步分析。基于GPS坐标和采样之间的时间戳和时间间隔,以基于GPS坐标和时间间隔的平台位置来记录数据。我们能够在侵略性化学环境中测试开发机器人的行为 - 以及基础 - 以及实验环境条件(02和CO的可变浓度)。我们发现这一刻的唯一限制是待使用的酸和碱的浓度(高氯酸,盐酸,硫酸,乙酸,甲磺酸,氢氧化钠,氢氧化钾,碳酸钠,硫酸钠,氟化钠)起源观察到的车轮塑料的损伤。

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