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Microcontroller Based Digital AC Dimming Techniques for Light Intensity Control

机译:基于微控制器的数字交流调光技术,用于光强控制

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This paper presents microcontroller based digital alternating current (AC) dimming techniques for controlling the ambient light intensity. In this work, the light intensity control is intelligently implemented by varying the AC voltage using the digitally isolated forward phase controlled gate pulses of bidirectional triode thyristor (TRIAC). The main objective of this work is to digitally control the firing angle delay of gate of TRIAC from both onsite and remote location using different methods that replaces the conventional AC dimmer. The dimming level signal is transmitted to the low cost microcontroller board from the capacitive touch sensor at the onsite location. At the remote location, dimming is performed using either the Bluetooth communication interface or web based dimming from the client computer to microcontroller board using NI (National Instruments) LabVIEW software. In order 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. 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 and also the dimming signals are supplied from the client computer to microcontroller board using web publishing tool of LabVIEW.
机译:本文介绍了用于控制环境光强度的基于微控制器的数字交流(AC)调光技术。在这项工作中,通过使用双向三极晶闸管(TRIAC)的数字隔离正向相位控制栅极脉冲来改变交流电压,从而智能地实现了光强度控制。这项工作的主要目的是使用替代传统交流调光器的不同方法,从现场和远程位置对TRIAC闸门的触发角延迟进行数字控制。调光电平信号从现场位置的电容式触摸传感器传输到低成本微控制器板。在远程位置,可使用蓝牙通信接口或基于Web的调光从客户端计算机到微控制器板(使用NI(National Instruments)LabVIEW软件)进行调光。为了执行现场调光,提供给光源的AC输入电压与手指放置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,调光电平信号由基于Android的智能手机提供,该智能手机具有用于与连接至微控制器的蓝牙收发器进行连接和数据通信的应用软件的配对,并且使用Web发布工具将调光信号从客户端计算机提供给微控制器板LabVIEW。

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