让我们使用AWS、ESP32和c#创建我们的桌面物联网软交换机

Sudipto Chakraborty, P. Aithal
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引用次数: 2

摘要

目的:本文提供了使用Amazon Web Services (AWS)、ESP32和c#开发桌面物联网软总机的过程。它提供了一个用户友好的界面,使用户能够从台式计算机控制家庭和办公室中的各种物联网设备。它利用AWS、ESP32和c#的功能,为开发物联网应用程序创建了一个可扩展、安全可靠的平台。使用c#开发用户界面,使系统易于最终用户使用。该系统可应用于需要对多个设备进行集中控制和管理的各种行业,包括医疗保健、智能家居和制造业。它提供了一种实用高效的方式来增强用户体验,并实现对物联网设备的高效管理和控制。设计/方法/方法:第一步是设置项目所需的硬件组件,ESP32,风扇调速,5v继电器和电源模块。下一步涉及到为项目开发软件组件。这包括设置AWS帐户和配置AWS云。必须对ESP32开发板进行编程,以便与AWS云通信并控制物联网设备。使用c#编程语言开发桌面应用程序。在软件和硬件组件开发完成后,测试和验证是确保系统按预期工作的必要条件。发现/结果:所提出的系统进行了测试和验证,以确保其功能性和实用性。该系统可以通过台式电脑控制各种物联网设备,包括灯、风扇、交流和夜灯。实际实验表明,该系统对物联网设备的控制具有良好的响应性和有效性。原创性/价值:为从集中系统控制多个物联网设备提供实用高效的解决方案,使最终用户能够通过用户友好的界面管理和控制多个设备。该系统的独创性在于其能够从台式计算机控制各种物联网设备,为从集中式系统控制物联网设备提供了全面的解决方案。论文类型:实验研究。
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Let Us Create Our Desktop IoT Soft-Switchboard Using AWS, ESP32 and C#
Purpose: This paper provides the procedure for developing a desktop IoT soft switchboard using Amazon Web Services (AWS), ESP32, and C#. It provides a user-friendly interface enabling users to control various IoT devices in their homes and offices from a desktop computer. It leverages the capabilities of AWS, ESP32, and C# to create a scalable, secure, and reliable platform for developing IoT applications. C# is used to develop the user interface, making the system easy to use for end-users. The proposed system can be applied in various industries, including healthcare, smart homes, and manufacturing, where centralized control and management of multiple devices are required. It offers a practical and efficient way to enhance the user experience and enable efficient management and control of IoT devices. Design/Methodology/Approach: The first step is to set up the hardware components required for the project, ESP32, fan speed control, 5v relay, and power supply module. The next step involves developing the software components for the project. This includes setting up an AWS account and configuring the AWS cloud. The ESP32 development board must be programmed to communicate with the AWS cloud and control the IoT devices. The C# programming language is used to develop the desktop application. After the software and hardware components have been developed, testing and validation are essential to ensure the system works as expected. Findings/Result: The proposed system was tested and validated to ensure its functionality and practicality. The system could control various IoT devices from the desktop computer, including lights, fans, A.C., and night lamps. The practical experiments showed that the system is responsive and efficient in controlling IoT devices. Originality/Value: it provides a practical and efficient solution for controlling multiple IoT devices from a centralized system, enabling end-users to manage and control multiple devices through a user-friendly interface. The originality of the proposed system lies in its ability to control various IoT devices from a desktop computer, providing a comprehensive solution for controlling IoT devices from a centralized system. Paper Type: Experimental-based Research.
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