基于手机遥控的潜水电机有效供水应用设计

Winfred Adjardjah, David Bright Kofi Arthur, Alex Ewuam, Kingsley Nunoo
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引用次数: 0

摘要

在过去的几十年里,几种与水位检测相结合的监测系统一直是研究的重点。提高产量及其可持续性主要取决于可持续的供水,测量水位和避免浪费是所有利益相关者的基本任务。因此,本文的目的是设计并实现一个基于手机的遥控器。这将应用于控制水箱中潜水电机的操作。检测水箱内的水位,并远程开启/关闭电机泵。设计过程是通过开发一个基于GSM技术的android应用程序来实现对水箱加注的管理。使用AT89C51单片机进行所需的编程。在发送端,传感器进行液位检测,GSM模块将信息发送给用户。根据这些信息,用户控制泵的开/关操作。它需要一张SIM卡才能操作,并且它支持AT (attention)命令。该装置设计实现后,测试结果表明,该装置各项功能正常,装置功能完全符合预期。更重要的是,该论文展示了超声波传感器可以用来确定水箱中的水位,GSM模块可以用来控制潜水泵。该装置的设计和实现有助于减少时间和功率的浪费。最终,它避免了水的浪费,从而确保了水供应的可用性、保护和可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Design of a Mobile Phone-Based Remote-Control Application to Submersible Motor for Effective Water Supply
In the last few decades, several monitoring systems integrated with water level detection have been the major research focus. Production boost and its sustainability depend mainly on sustainable water supply, measuring water level, and avoiding waste of water is an essential task for all stakeholders. There-fore, the aim of this paper is to design and implement a mobile phone-based remote control. This will be applied to control the operation of a submersible motor in a water tank. The water level in the tank is detected and the device remotely turns the motor pump on/off. The design process is accomplished by developing an android application that works on GSM technology to man-age the filling of water tank. An AT89C51 microcontroller is used for the desired programming. At the transmitting end, sensor is used for level detection and GSM module is used to send the information to user. According to this information, user controls the on/off operation of the pump. A SIM card is required for its operation and it works on attention (AT) commands. After the design and implementation of the device, the test results showed that all features of the device worked properly, and the device functions exactly as expected. More significantly, the paper has shown that ultrasonic sensors can be used to determine the level of water in a water tank and a GSM module can be used to control a submersible pump. The design and implementation of this device can help to reduce waste of time and power. Ultimately, it avoids water wastage thereby ensuring availability, conservation, and sustainability of water supply.
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