设计说明书

总字数:18000+

基于单片机的厨房调料盒环境测控系统

摘要

随着现代智能家居理念不断普及,厨房作为食品调料储存的重要场所,内部温湿度环境直接影响各类调味原料的保存周期与食用安全性。长期高湿环境极易造成调料结块、受潮霉变、滋生微生物,不仅缩短调料存放时长,还会带来食品安全隐患。传统厨房调料储存方式缺少常态化环境监测手段,大多依靠人工定期查看,存在环境变化发现滞后、无自动告警、环境数据无法直观展示等不足,难以实现调料储存环境的持续管控。本文提出一种基于 STM32F103C8T6 单片机的厨房调料盒环境测控系统设计方案。系统集成温湿度采集、本地人机交互、阈值自定义、本地声光报警、OLED 实时数据显示等核心功能。利用 DHT11 传感器实时采集调料盒内部环境温湿度数据,将采集得到的湿度参数与用户预设湿度上限自动比对;当监测湿度超过设定最大值时,设备立即触发本地声光报警,提醒用户及时除湿;系统搭载独立按键,支持湿度上限自定义设置,搭配 OLED 显示屏实时展示实时温湿度测量值与预设湿度上限。本系统有效解决传统调料储存缺少自动监测预警、环境状态可视化程度低等痛点,实现调料储存环境实时监测、湿度超标自动报警、参数本地可视化展示,提升厨房调料储存管理智能化水平,具备良好的家居配套应用价值与推广前景。

关键词:厨房调料盒;环境测控;STM32 单片机;温湿度监测;DHT11;声光报警

Abstract 

With the continuous popularization of modern smart home concepts, the kitchen serves as an important storage place for food condiments, and the internal temperature and humidity environment directly affect the shelf life and edible safety of various seasoning raw materials. Long-term high humidity environment can easily cause condiment caking, damp mildew and microbial growth, which not only shortens the storage time of condiments, but also brings hidden dangers to food safety. The traditional storage method of kitchen condiments lacks normalized environmental monitoring means and mostly relies on regular manual inspection. It has disadvantages such as delayed discovery of environmental changes, absence of automatic alarm and invisible environmental data, making it difficult to continuously control the condiment storage environment. This paper proposes a design scheme of environment measurement and control system for kitchen condiment box based on STM32F103C8T6 microcontroller. The system integrates core functions including temperature and humidity collection, local human-computer interaction, threshold customization, local audible and visual alarm, and real-time data display on OLED. The DHT11 sensor is used to collect real-time temperature and humidity data inside the condiment box, and the collected humidity parameters are automatically compared with the maximum humidity preset by users. When the monitored humidity exceeds the set maximum value, the device immediately triggers local audible and visual alarms to remind users to dehumidify in time. Equipped with independent keys, the system supports custom setting of the maximum humidity value, and an OLED display screen is matched to show the measured real-time temperature and humidity as well as the preset maximum humidity in real time. This system effectively solves the pain points of lacking automatic monitoring and early warning and low visualization of environmental status in traditional condiment storage. It realizes real-time monitoring of condiment storage environment, automatic alarm for excessive humidity and local visual display of parameters. The system improves the intelligent level of kitchen condiment storage management, and has favorable supporting application value and promotion prospects for household use.

Keywords:Kitchen Condiment Box; Environment Measurement and Control; STM32 Microcontroller; Temperature and Humidity Monitoring; DHT11; Audible and Visual Alarm

目   录

基于单片机的厨房调料盒环境测控系统

摘要

Abstract

目   录

第1章 绪论

1.1 研究背景及研究意义

1.2 国内外研究现状

1.2.1 国内研究现状

1.2.2 国外研究现状

国内外研究现状总结

1.3 研究目标

第2章 系统方案设计

2.1 整体方案设计

2.2 主要器件选型选择

2.2.1 主控芯片选型

2.2.2 温湿度检测模块选型

2.2.3 显示模块方案选择

2.2.4 按键模块方案选择

2.2.5 报警模块方案选择

2.2.6 器件选型总结

第 3 章 硬件电路设计

3.1 主控模块电路

3.2 DHT11 温湿度检测模块电路

3.3 OLED 显示模块电路

3.4 按键设置模块电路

3.5 声光报警模块电路

3.6 电源供电电路

3.7 调试与辅助电路

第4章 系统程序设计

4.1 编程软件介绍

4.2 系统主流程设计

4.3 OLED显示屏子流程设计

4.4 独立按键子流程设计

4.5 温湿度检测模块子流程设计

4.6 声光报警模块子流程设计

第 5 章 系统仿真测试

5.1 仿真测试环境与方案

5.2 调料盒温湿度参数采集仿真测试

5.3 阈值判断与声光报警仿真测试

5.4 人机交互功能仿真测试

5.5 仿真测试小结

第 6 章 系统实物测试

6.1 整体实物测试

6.2 DHT11 温湿度检测模块功能测试

6.3 OLED 显示模块功能测试

6.4 独立按键模块功能测试

6.5 声光报警模块功能测试

6.6 整体实物测试小结

第 7 章 总结与展望

7.1 总结

7.2 未来展望

参考文献

附录

附录一:原理图

附录二:PCB

附录三:主程序

购买后可查看具体内容!

Logo

智能硬件社区聚焦AI智能硬件技术生态,汇聚嵌入式AI、物联网硬件开发者,打造交流分享平台,同步全国赛事资讯、开展 OPC 核心人才招募,助力技术落地与开发者成长。

更多推荐