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Design and Implementation of Arduino Microcontroller Based Automatic Lighting Control with I2C LCD Display

机译:具有I2C LCD显示屏的基于Arduino单片机的自动照明控制的设计与实现

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The project uses closed loop control system to automatically operate a lighting system. It employed Light Dependent Resistor LDR to sense the illumination level and compare the measured signal with the reference voltage realized through the usage of a potentiometer forming a potential divider. It highlights how an operational amplifier can be used as a comparator. This idea was transferred into Arduino Microcontroller. The latter is used to compare the signals using Arduino programming functions. The Arduino is multitasked using millis() to sound alarm at system switch-On or Reset. An i2C is used to interface a Liquid Crystal Display with an advantage of using two analog pins A4 and A5 instead of four or eight I/O pins for four and eight LCD modes respectively. The innovation will allow those I/O pins dedicated to other tasks plus its attendant simplicity. The usage of i2C scanner in identifying i2C programming address as 0 × 3F is explained. The step by step explanation of Arduino codes is an asset. The paper recommends among others further improvement in the display interactivity through robust programming. An alarm could also be made to sound at each switch- over. It is believed that its simplicity will encourage its mass production with its attendant socio economic benefits.
机译:该项目使用闭环控制系统来自动操作照明系统。它采用了光敏电阻LDR来感测照明水平,并将测得的信号与通过使用形成分压器的电位计实现的参考电压进行比较。它着重介绍了如何将运算放大器用作比较器。这个想法被转移到了Arduino Microcontroller中。后者用于使用Arduino编程功能比较信号。使用millis()可以对Arduino进行多任务处理,以便在系统打开或重置时发出警报。 i2C用于连接液晶显示器,其优点是分别为四个和八个LCD模式使用两个模拟引脚A4和A5而不是四个或八个I / O引脚。这项创新将使那些专门用于其他任务的I / O引脚及其附带的简便性成为可能。说明了在将i2C编程地址标识为0×3F时i2C扫描程序的用法。 Arduino代码的逐步说明是一项资产。本文建议通过鲁棒编程进一步改善显示交互性。每次切换时也会发出警报声。据信,其简单性将鼓励其大规模生产及其伴随的社会经济利益。

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