Feedback Control for Isolated LED DriverUsing Magnetic Field

碩士 === 國立中興大學 === 電機工程學系所 === 106 === After the innovation of LED was release, the relevant technology of LED has became more and more mature. There are two types of driver, isolated and non-isolated. In terms of the safety requirement of LED driver, isolateddriver has became the most popular driver...

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Bibliographic Details
Main Authors: Chung-Hsin Huang, 黃鍾信
Other Authors: 林俊良
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/xc9a7g
Description
Summary:碩士 === 國立中興大學 === 電機工程學系所 === 106 === After the innovation of LED was release, the relevant technology of LED has became more and more mature. There are two types of driver, isolated and non-isolated. In terms of the safety requirement of LED driver, isolateddriver has became the most popular driver in the market. Due to the requirement of minimizing the size of driver in the market, inventors of driver have to overcome the limitation of areaby the PCB, circuit protection and the requirement of the system liability. Since the awareness of energy saving and the energy regulation in the world, the inventors of the driver have to follow the energy relation in order to design a qualified driver. According to the research " LED Lighting Cloud Service Analysis and Implementation Based-on Wireless Communication for Energy-Saving and High Reliability " It states that the energy-saving LED lighting system are based on wireless communication technology. This research provide an improvement LED fly-back driver Transformer magnetic field generated to pass information and respond to these information automatically adjust the LED brightness. This study offers a method without setting up wireless transmission. For instance, the previous study proposes the router without the cloud lighting management system can automatically adjust the LED brightness to achieve energy-saving effect. magnetic field communication is done by the secondary side of the microcontroller Frequency-Shift Keying to send data back to the primary side. while the primary side of the microcontroller through the detection of changes in frequency to interpret the control signal and the LED driver to do the corresponding brightness adjustment.