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Development of Microcontroller Based Digital AC Dimmer for Light Intensity Control

机译:基于微控制器的数字交流调光器的光强度控制开发

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This paper presents the development of an intelligent microcontroller based digital alternating current (AC) dimmer for controlling the ambient light intensity. The domestic AC dimmer that are widely used for controlling the load voltage is based on varying the phase angle of bidirectional triode thyristor (TRIAC) using the time constant value which is manually adjusted using variable resistor or capacitor of gate firing circuit of TRIAC. The AC load connected to these domestic dimmers is isolated using the transformer. The main objective of this work is to implement the digitally isolated forward phase controlled TRIAC based light intensity control from the onsite or at remote location using different topologies that replaces the conventional AC dimmer. The capacitive touch sensor is used for finger touch controlled dimming at the onsite location while the remote dimming is performed using Bluetooth communication interface. To perform onsite dimming, AC input voltage supplied to light source is varied in proportional to the time period elapsed during which the finger is placed over the capacitive touch sensor. In order to facilitate remote dimming, the dimming level signal is supplied from Android based smart phone having the application software for paring connection and data communication with Bluetooth transceiver interfaced with microcontroller.
机译:本文介绍了一种用于控制环境光强度的基于智能微控制器的数字交流(AC)调光器的开发。广泛用于控制负载电压的家用交流调光器是基于使用时间常数来改变双向三极晶闸管(TRIAC)的相角的,该时间常数是使用TRIAC的栅极触发电路的可变电阻器或电容器手动调节的。连接到这些家用调光器的交流负载通过变压器隔离。这项工作的主要目的是使用替代传统交流调光器的不同拓扑结构,从现场或远程实施基于数字隔离正向相位控制TRIAC的光强度控制。电容式触摸传感器用于现场位置的手指触摸控制调光,而使用蓝牙通信接口执行远程调光。为了执行现场调光,提供给光源的AC输入电压与手指放在电容式触摸传感器上方所经过的时间成比例地变化。为了促进远程调光,从具有应用软件的基于Android的智能手机提供调光电平信号,该应用软件用于与连接到微控制器的蓝牙收发器进行连接和数据通信的配对。

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