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Shading constraint improves accuracy of time-of-flight measurements

机译:遮蔽约束可提高飞行时间测量的准确性

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We describe a technique for improving the accuracy of range maps measured by a time-of-flight (TOF) camera, a novel type of sensor that provides a range map registered perfectly with an intensity image.Our technique is based on the observation that the range map and intensity image measured by a TOF camera are not independent but are linked by the shading constraint: If the reflectance properties of the surface are known, a certain range map implies a corresponding intensity image. In practice, a general reflectance model (such as Lambertian reflectance) provides a sufficient approximation for a wide range of surfaces. We impose the shading constraint using a probabilistic model of image formation and find a maximum a posteriori estimate for the true range map. We present results on both synthetic and real TOF camera images that demonstrate the robust shape estimates achieved by the algorithm. We also show how the reflectivity (or albedo) of the surface can be estimated, both globally for an entire object and locally for objects where albedo varies across the surface.
机译:我们介绍了一种用于提高飞行时间(TOF)相机测量的距离图准确性的技术,这是一种新型传感器,可提供与强度图像完美配准的距离图。用TOF摄像机测量的距离图和强度图像不是独立的,而是由阴影约束联系在一起的:如果已知表面的反射率特性,则某个距离图表示相应的强度图像。实际上,一般的反射率模型(例如Lambertian反射率)可为各种表面提供足够的近似值。我们使用图像形成的概率模型强加阴影约束,并为真实距离图找到最大后验估计。我们在合成和实际TOF相机图像上均显示了结果,这些结果证明了该算法实现的鲁棒形状估计。我们还展示了如何估计整个表面的反射率(或反照率),包括整个对象的全局反射率和整个表面反照率变化的对象的局部反射率。

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