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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Bias Voltage Control in Pulsed Applications for Mach–Zehnder Electrooptic Intensity Modulators
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Bias Voltage Control in Pulsed Applications for Mach–Zehnder Electrooptic Intensity Modulators

机译:马赫曾德尔电光强度调制器脉冲应用中的偏置电压控制

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摘要

Mach–Zehnder electrooptic intensity modulators (EOM) provide efficient intensity modulation in optical systems and can be used to shape laser pulses. It is necessary to avoid a low extinction ratio—which can cause a significant prepulse—by maintaining a low base modulation. The EOM’s modulation can be modeled by its nonlinear transfer function and is dependent on environmental conditions. A feedback algorithm was devised to regulate the EOM’s base intensity output and account for these dynamic environmental conditions. The field programmable gate array-based control algorithm interlaces a set of diagnostic pulses between the laser’s main pulses to map the transfer function. After mapping, the algorithm utilizes curve fitting to accurately target the minimum of the EOM’s transfer function and maintain the EOM’s highest possible extinction ratio. Testing demonstrated the effectiveness of the algorithm in maintaining a high extinction ratio in response to both the temperature and temporal drift of the transfer function.
机译:马赫曾德尔电光强度调制器(EOM)在光学系统中提供有效的强度调制,可用于整形激光脉冲。有必要通过保持较低的基极调制来避免较低的消光比,后者可能导致明显的预脉冲。 EOM的调制可以通过其非线性传递函数来建模,并且取决于环境条件。设计了一种反馈算法来调节EOM的基本强度输出并考虑这些动态环境条件。基于现场可编程门阵列的控制算法在激光器的主脉冲之间交错一组诊断脉冲,以映射传递函数。映射后,该算法利用曲线拟合准确地确定EOM传递函数的最小值,并保持EOM尽可能高的消光比。测试证明了该算法在响应传递函数的温度和时间漂移的同时保持高消光比的有效性。

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