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首页> 外文期刊>IEEE Sensors Letters >A Multiaxis, Large-Output, Sensing Framework of Integrating Linear Optical Encoders for Nanopositioning Systems
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A Multiaxis, Large-Output, Sensing Framework of Integrating Linear Optical Encoders for Nanopositioning Systems

机译:集成用于纳米定位系统的线性光学编码器的多轴大输出传感框架

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Linear optical encoders have been widely applied in nanopositioning systems when combined with compliant mechanisms to provide feedback control. A linear encoder can offer large-range nanometric sensing quality by a noncontact frictionless operation, with affordable cost and no dynamic range limitation. Traditionally, linear encoders are guided by translational compliant mechanisms to measure the single-axis input or output. In a multiaxis large-range nanopositioning system, the linear encoder is not feasible to directly measure the multiaxis output motion, since the required large-range lateral motion (perpendicular to the measuring direction or primary direction) will make it disabled when sensing the motion in the intended primary direction. This letter proposes a multiaxis large-output sensing framework that only uses linear optical encoders to provide feedback, which is based on the closed-loop kinematic decoupling principle. An XY compliant stage system with only two linear encoders is proposed to explain the multiaxis output sensing approach for nanopositioning applications.
机译:线性光学编码器与顺应性机构结合使用以提供反馈控制时,已广泛应用于纳米定位系统。线性编码器可通过非接触式无摩擦操作提供大范围的纳米传感质量,且价格可承受且不受动态范围的限制。传统上,线性编码器由平移顺应机构引导,以测量单轴输入或输出。在多轴大范围纳米定位系统中,线性编码器无法直接测量多轴输出运动,因为所需的大范围横向运动(垂直于测量方向或主方向)将使其在感应运动时被禁用。预期的主要方向。这封信提出了一种基于闭环运动解耦原理的仅使用线性光学编码器提供反馈的多轴大输出传感框架。提出了一个仅具有两个线性编码器的XY位移台系统,以解释用于纳米定位应用的多轴输出传感方法。

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