IoT-Based Switch Board for Kids Using ESP Module And AWS

Sudip Chakraborty, P. S. Aithal
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Abstract

Purpose: To trigger the electrical switchboard by the kids not only harmful but also life risk. We always keep our kids away from it. We take lots of precautions not to touch it anyway. However, sometimes we need to operate electrical loads like a fan, TV, etc., by our kids when we are engaged with another essential task. We know it is unsafe, but sometimes we do. Here we demonstrate how to create a switchboard for kids to turn on/off the bedroom electrical load safely. We created an electrically isolated switchboard for them. It operates using small batteries and has no electrical connection with high-voltage AC. It is fixed on the wall using glue inside the kid's reachable area. It is entirely IoT based. When Kids press any switch, the ESP module sense and upload the corresponding command to the AWS shadow register. Then, AWS sends the updated content to the MQTT client running in another ESP module connected to all electrical equipment. According to the command module, turn the equipment on/off. The Code is available on GitHub to continue the research work. Design/Methodology/Approach: we installed some feather-touch soft switches inside the system. All buttons are connected with NodeMcu (ESP Module) GPIO. The complete tiny module may be fixed beside the Bed. We need two nos. AAA battery as a power supply to run the miniature system. Turn on the system. It will try to communicate with the nearest configured wifi router. If the wifi connection is OK, it will try connecting with the AWS IoT server using the hardcoded configuration profile inside the “secret. h” file. After successfully connecting with the AWS IoT server, the ESP module is ready to send the command. On the other hand, another Wifi module is connected to all electrical equipment. When powered up, it tries to communicate with the AWS IoT server through the internet using connected Wifi. Once connected, it is ready to receive the command to trigger the load. Findings/Result: The described procedure is a unique application of an electrical switchboard that kids will use. We tested it in real life. It is working well. The AWS IoT is also a secure and robust, and cheap solution. So recurring cost to operate the device is as low as possible. The automation researcher or enthusiast can replace traditional switchboards with IoT-based intelligent devices for our daily life operations. Originality/Value: We designed a switchboard for kids differently using the latest emerging technology IoT. The traditional electrical switchboard is unsafe for kids, but this technology is better and completely safe. So we can quickly adapt to our modern lifestyle. Paper Type: Experimental-based Research.
使用ESP模块和AWS的儿童物联网交换板
目的:触发配电板的孩子不仅有害,而且有生命危险。我们总是让孩子远离它。我们采取了很多预防措施,不去碰它。然而,有时当我们忙于另一项重要任务时,我们需要让孩子操作电扇、电视等电器负载。我们知道这是不安全的,但有时我们确实知道。在这里,我们演示如何创建一个开关板,让孩子们安全地打开/关闭卧室的电气负载。我们为他们制造了一个电隔离的配电板。它使用小电池工作,没有与高压交流电连接。它是固定在墙上,用胶水在孩子可以到达的区域内。它完全基于物联网。当孩子按下任何开关时,ESP模块感知并上传相应的命令到AWS影子寄存器。然后,AWS将更新的内容发送到运行在与所有电气设备连接的另一个ESP模块中的MQTT客户端。根据命令模块的指示,打开/关闭设备。代码可以在GitHub上获得,以继续研究工作。设计/方法/方法:我们在系统内部安装了一些轻触软开关。所有按钮都连接到NodeMcu (ESP Module)的GPIO。完整的小模块可以固定在床的旁边。我们需要两节AAA电池作为微型系统运行的电源。打开系统。它将尝试与最近配置的wifi路由器进行通信。如果wifi连接正常,它将尝试使用“secret”中的硬编码配置文件连接AWS IoT服务器。h”文件。ESP模块与AWS IoT服务器连接成功后,准备发送命令。另一方面,另一个Wifi模块连接到所有电气设备。通电后,它会尝试使用连接的Wifi通过互联网与AWS物联网服务器进行通信。一旦连接上,它就准备好接收触发加载的命令。发现/结果:所描述的过程是孩子们将使用的电气配电板的独特应用。我们在现实生活中进行了测试。它运行得很好。AWS物联网也是一个安全、强大、廉价的解决方案。因此,操作该设备的经常性成本尽可能低。自动化研究人员或爱好者可以用基于物联网的智能设备取代传统的配电盘,用于我们的日常生活操作。创意/价值:我们使用最新的新兴技术物联网为孩子们设计了一个不同的交换机。传统的电气配电板对孩子来说是不安全的,但这项技术更好,完全安全。所以我们可以很快适应我们的现代生活方式。论文类型:实验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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