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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Development of constant-power driving control for light-emitting-diode (LED) luminaire
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Development of constant-power driving control for light-emitting-diode (LED) luminaire

机译:发光二极管(LED)灯具恒功率驱动控制的开发

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摘要

The illumination of an LED may be affected by operating temperature even under constant-current condition. A constant-power driving technique is proposed in the present study for LED luminaire. A linear system dynamics model of LED luminaire is first derived and used in the design of the feedback control system. The PI controller was designed and tuned taking into account the control accuracy and robust properties with respect to plant uncertainty and variation of operating conditions. The control system was implemented on a microprocessor and used to control a 150W LED luminaire. The test result shows that the feedback system accurately controls the input power of LED luminaire to within 1.3 per cent error. As the ambient temperature changes from 0 to 40℃, the LED illumination varies slightly (-1.7%) for constant-power driving, as compared to that of constant-current driving (-12%) and constant-voltage driving (+50%). The constant-power driving has revealed advantage in stabilizing the illumination of LED under large temperature variation.
机译:即使在恒定电流条件下,LED的照明也会受到工作温度的影响。在本研究中,提出了一种恒功率驱动技术,用于LED照明器。首先得出LED灯具的线性系统动力学模型,并将其用于反馈控制系统的设计中。在设计和调整PI控制器时,要考虑到控制精度和针对工厂不确定性和运行条件变化的鲁棒特性。该控制系统在微处理器上实现,并用于控制150W LED照明器。测试结果表明,该反馈系统可将LED灯具的输入功率精确控制在1.3%的误差范围内。随着环境温度从0到40℃变化,与恒流驱动(-12%)和恒压驱动(+ 50%)相比,恒功率驱动的LED照明略有变化(-1.7%) )。恒定功率驱动显示出在较大温度变化下稳定LED照明的优势。

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