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Millimeter-wave radar distance measurements in micro machining

机译:微加工中的毫米波雷达距离测量

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In production and automation engineering the need for highest precision distance sensors is ubiquitous especially in the field of micro-machining processes where an extremely accurate positioning is indispensable. Although the work pieces become smaller and smaller many machine tools stay big and heavy. The reason for this is that a high precision is necessary and in this way the machine tools must be robust and stiff in their rails to prevent positioning errors due to tilts or twists. By using accurate sensors integrated in the rails of the machine tool the positioning error increases since the distance between the measurement of the position and the machine tool itself is relatively large. For this reason it might be advantageous to measure as close as possible at the tool center point (TCP) which could also allow for a reduction in machine sizes. A radar system might be a promising approach for this measurement due to the progressive development in radar technology along with new and fast algorithms. In this paper an frequency modulated continuous wave (FMCW) radar system is presented working around a center frequency of 80 GHz with a modulation bandwidth of 10 GHz. In combination with an innovative signal processing concept that uses frequency and phase evaluation a sub-micrometer accuracy can be achieved over distances up to several meters. The high accuracy of ±0.5 μm is demonstrated in a novel measurement setup for a kinematic using compliant mechanisms with flexure hinges.
机译:在生产和自动化工程中,对最高精密距离传感器的需求尤其是微加工过程领域,其中极其精确定位是必不可少的。虽然工作件变得越来越小,但许多机床保持大而沉重。这样做的原因是,高精度是必要的,通过这种方式,机床必须在其轨道中坚固并坚硬,以防止由于倾斜或扭曲而定位误差。通过使用集成在机床的轨道中的精确传感器,定位误差增加,因为位置和机床本身的测量之间的距离相对较大。因此,可能是在工具中心点(TCP)尽可能接近的可能是有利的,这也可以允许减少机器尺寸。由于雷达技术的逐步发展以及新的和快速算法,雷达系统可能是这种测量的有希望的方法。在本文中,频率调制的连续波(FMCW)雷达系统围绕80GHz的中心频率,其调制带宽为10GHz。结合使用频率和相位评估的创新信号处理概念,可以通过高达几米的距离实现子微米精度。使用柔性机制的运动机制,在新的测量设置中对±0.5μm的高精度进行了演示。

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