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An Optimal Driving Strategy for Maximum Electro-optical Conversion Efficiency of Laser Diode in Laser Power Transmission System

机译:激光电力传输系统激光二极管最大电光转换效率的最优驾驶策略

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Laser Power Transmission (LPT) technique features high energy density, flexible devices and advantageous orientation ability, making itself extremely promising for realizing long-distance, high-power wireless power transmission. Laser diode (LD), a core component in LPT system's transmitter, realizes power conversion from electricity to high-intensity laser beam. LD's performance significantly affects the efficiency of LPT transmitter. Different driving current patterns lead to different electro-optical conversion efficiency (EOCE). The paper presents a novel LD driving strategy for optimal EOCE under different working conditions. To precisely estimate EOCE of LD, a simplified LD equivalent circuit model with only five parameters is proposed, which can readily be adopted to characterize any commercial LD using curves given in their datasheets. Though simplified, the model can still depict the power-current-voltage (P-I-V) characteristics well, and its accuracy is shown to be as close as its traditional counterparts. Based on the model, the optimal driving current strategy for maximum EOCE is derived for all optical power output conditions. A four-phase interleaved Buck converter is constructed to verify the proposed driving strategy. As all experimental results indicate, the proposed method enjoys a fine performance in improving LD's EOCE.
机译:激光功率传输(LPT)技术具有高的能量密度,柔性装置和有利的取向能力,使得本身非常有前途的用于实现长距离,高功率无线电力传输。激光二极管(LD),在LPT系统的发送器的核心部件,实现了从电到高强度的激光束的功率转换。 LD的表现显著影响LPT发射机的效率。不同的驱动电流模式导致不同的电光转换效率(EOCE)。本文提出了一种新颖的用LD驱动战略,在不同工况下的最佳EOCE。为了精确地估计LD的EOCE,只有五个参数的简化LD的等效电路模型,提出了一种可以很容易地采用以表征使用在他们的数据表给出的曲线任何商业LD。虽然简化,模型仍然可以描绘出功率 - 电流 - 电压(P-I-V)特性良好,并且其准确度被示出为尽可能接近其传统的对应。基于该模型,最佳驾驶最大EOCE当前策略导出了所有光功率输出条件。四相交错式降压转换器采用验证了带动战略。由于所有的实验结果表明,该方法享有在提高LD的EOCE一个优良性能。

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