首页> 外文会议>2011 IEEE International Conference on Control Applications >Miniaturizing the spherical sundial: A hemispherical sensor for orientation and positioning with respect to point sources of light
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Miniaturizing the spherical sundial: A hemispherical sensor for orientation and positioning with respect to point sources of light

机译:使球形日d小型化:半球形传感器,用于相对于点光源定位和定位

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We propose a novel solar sensor geometry utilizing a hemispherical arrangement of pixels to determine the vector to the dominant light source in its environment. We show two methods for calculating this vector: one based on transforming the problem from an optical one into a geometric one, and another using a least squares approach to minimize the error function for the sensor. These methods do not depend on the physical details of any particular sensor design. Both methods rely upon certain assumptions, but methods for extracting an accurate sun vector are discussed which do not rely upon such an idealized environment. Using the estimate of the sun vector, it is possible to determine the location of the sensor on the Earth. Applications include position measurement and navigation for UAVs, UGVs, and other mobile platforms.
机译:我们提出了一种新颖的太阳能传感器几何形状,该几何形状利用像素的半球形排列来确定其环境中主导光源的矢量。我们展示了两种计算此向量的方法:一种基于将问题从光学问题转换为几何问题的方法,另一种基于最小二乘法的方法,以最小化传感器的误差函数。这些方法不依赖于任何特定传感器设计的物理细节。两种方法都依赖于某些假设,但是讨论了不依赖于这种理想化环境的用于提取准确的太阳向量的方法。使用太阳矢量的估计,可以确定传感器在地球上的位置。应用包括无人机,UGV和其他移动平台的位置测量和导航。

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