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Novel All Digital Ring Cavity Locking Servo

机译:新颖的所有数字环腔锁定伺服

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We plan to use this servo in the new 50W 589-nm sodium guidestar laser to be installed in the AMOS facility in July 2010. Though the basic design is unchanged from the successful Hillman/Denman design, numerous improvements are being implemented in order to bring the device even further out of the lab and into the field. The basic building block of the Hillman/Denman design are two low noise master oscillators that are injected into higher power slave oscillators that are locked to the frequencies of the master oscillator cavities. In the previous system a traditional analog Pound-Drever-Hall (PDH) loop was employed to provide the frequency locking. Analog servos work well, in general, but robust locking for a complex set of multiply-interconnected PDH servos in the guidestar challenge existing analog approaches. One of the significant changes demonstrated thus far is the implementation of an all-digital servo using only COTS components and a fast CISC processing architecture for orchestrating the basic PDH loops active within the system. Compared to the traditionally used analog servo loops, an all-digital servo is not only an orders-of-magnitude simpler servo loop to implement but the control loop can be modified by merely changing the computer code. Field conditions are often different from laboratory conditions, requiring subtle algorithm changes, and physical accessibility in the field is generally limited and difficult. Remotely implemented, trimmer-less and solderless servo upgrades are a much welcomed improvement in the field installed guidestar system. Also, OEM replacement of usual benchtop components saves considerable space and weight as well in the locking system. We will report on the details of the servo system and recent experimental results locking a master-slave laser oscillator system using the all-digital Pound-Drever-Hall loop.
机译:我们计划在2010年7月在新的50W 589-NM GuideStar激光器中使用此伺服。尽管基本设计从成功的Hillman / Denman设计中没有变化,但正在实施众多的改进以便带来该装置甚至进一步走出实验室并进入了该领域。 Hillman / Denman Design的基本构建块是两个低噪声主振荡器,注入更高的功率从机振荡器,锁定到主振荡器腔的频率。在先前的系统中,采用传统的模拟磅 - 防铠 - 展厅(PDH)环路提供频率锁定。模拟伺服功能良好,一般,但坚固锁定在GuideStar挑战现有模拟方法中的复杂乘法互连的PDH伺服伺服组合。到目前为止,迄今为止展示的一个重要变化是使用COTS组件和快速CISC处理架构实现All-Digital伺服,用于在系统内进行协调基本PDH环路。与传统使用的模拟伺服循环相比,All-Digital伺服不仅是数量级更简单的伺服环路,而且可以通过仅改变计算机代码来修改控制回路。现场条件通常与实验室条件不同,需要细微算法的变化,并且该领域的物理可访问性通常是有限且困难的。远程实现,修剪少和无歪伺服升级是一个非常受欢迎的领域安装Guidestar系统的改进。此外,OEM更换通常的台式组件在锁定系统中也可节省相当的空间和体重。我们将报告伺服系统的细节和最近的实验结果,使用全数字磅钵厅循环锁定主从激光振荡器系统。

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