基于 Arduino 的驱蚊系统的设计、测试、评估和实施

Sumaiya Malik, Syed Golam Abid, Tasfiq Ahmed Rafi, Prof. Dr. Engr. Muhibul Haque Bhuyan
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摘要

目的:这项研究活动的主要目的是设计、开发和评估基于 Arduino 的驱蚊系统。这项工作强调了开发可持续和生态友好型灭蚊解决方案的重要性。研究设计:使用 Arduino 微控制器板,开发汇编语言程序来驱赶周围环境中的蚊子。该系统使用压电盘、LED 灯、液晶显示器和 Arduino 板,并产生超声波,以保护人类和环境免受蚊虫侵害。研究地点和时间:作为孟加拉国达卡美国国际大学(AIUB)计算机科学与工程专业工程学士学位课程顶点项目工作的一部分,作者在一名教师的指导下以小组形式开展了这项研究工作。作者于 2023 年 5 月至 2024 年 1 月在 AIUB 完成了研究任务。研究方法创新的驱蚊系统使用 Arduino Mega 2560 微控制器来生成解决蚊虫侵扰问题的尖端解决方案。该系统可产生电信号,从而发出机械超声波信号,利用串联的八个压电圆盘加以利用。为了给系统供电,它使用四块锂离子充电电池,通过家庭太阳能系统的太阳能充电。此外,它还使用 LED 指示驱虫系统的状态。结果:在示波器屏幕上观察产生的超声波信号,并在液晶显示屏上显示其值,以评估系统性能。测试证实,该系统可在 2-3 分钟内驱赶周围 3 米范围内的蚊子。此外,系统参数和成本比较表明,该方案对创造无蚊环境具有价值和可持续性。结论基于 Arduino 微控制器的超声波驱蚊系统的开发为传统灭蚊方法提供了一种可持续的有效替代方法。由于该系统不含化学物质,对健康无害,因此是环保的,能让人类生活得更舒适。该系统便于携带,成本效益高,适合在各种环境中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, Testing, Evaluation, and Implementation of an Arduino-based Mosquito-Repellent System
Aims: The primary objective of this research drive is to design, develop, and evaluate an Arduino-based mosquito-repellent system. This work underscores the importance of developing sustainable and eco-friendly solutions for mosquito control. Study Design: An Arduino microcontroller board is used, and an assembly language program is developed to repel mosquitoes from the surroundings. This system uses piezoelectric disks, LED lights, LCD monitor along with the Arduino board and produces ultrasonic sound to protect humans and the environment from mosquitoes. Place and Duration of Study: The research effort was steered by the authors in a group under the supervisor of a faculty member as a part of the course capstone project work of the Bachelor of Science in Engineering degree in Computer Science and Engineering at the American International University Bangladesh (AIUB), Dhaka, Bangladesh. The authors performed their research tasks at AIUB from May 2023 to January 2024. Methodology: The innovative mosquito-repellent system uses an Arduino Mega 2560 microcontroller to generate a cutting-edge solution to tackle the problem of mosquito infestations. The system can produce an electric signal that can emit mechanical ultrasound signals to be harnessed using a series-connected eight piezo-electric discs. To power up the system, it uses four Li-ion rechargeable batteries charged by using solar energy from the home solar system. Besides, it uses LEDs to indicate the status of the repellent system. Results: The generated ultrasonic signal is observed on the oscilloscope screen and its’ value is exhibited on the LCD screen to evaluate the system performance. Testing confirms that the system can drive away mosquitoes within its 3 m surroundings in 2-3 minutes. Besides, the system parameter and cost comparison show that this scheme suggests a worthwhile and sustainable result for making a mosquito-free environment. Conclusion: The development of a mosquito-repellent system using ultrasonic sound waves based on an Arduino microcontroller offers a sustainable and effective alternative to traditional methods of mosquito control. Since the system is chemical and health-hazard-free, it is eco-friendly and makes human life more comfortable. The system is portable and cost-effective, making it suitable for use in various settings.
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