Laboratory of Optoelectronics, University of Brescia / via Branze 38, Brescia I-25123, Italy; E-Mails:
Sensors (Basel). 2009;9(1):568-601. doi: 10.3390/s90100568. Epub 2009 Jan 20.
3D imaging sensors for the acquisition of three dimensional (3D) shapes have created, in recent years, a considerable degree of interest for a number of applications. The miniaturization and integration of the optical and electronic components used to build them have played a crucial role in the achievement of compactness, robustness and flexibility of the sensors. Today, several 3D sensors are available on the market, even in combination with other sensors in a "sensor fusion" approach. An importance equal to that of physical miniaturization has the portability of the measurements, via suitable interfaces, into software environments designed for their elaboration, e.g., CAD-CAM systems, virtual renders, and rapid prototyping tools. In this paper, following an overview of the state-of-art of 3D imaging sensors, a number of significant examples of their use are presented, with particular reference to industry, heritage, medicine, and criminal investigation applications.
近年来,用于获取三维(3D)形状的 3D 成像传感器在许多应用中引起了相当大的兴趣。用于构建这些传感器的光学和电子组件的小型化和集成在实现传感器的紧凑性、坚固性和灵活性方面发挥了关键作用。如今,市场上有几种 3D 传感器,甚至可以与其他传感器结合使用,采用“传感器融合”方法。通过合适的接口将测量值传输到专门为其设计的软件环境中,例如 CAD-CAM 系统、虚拟渲染和快速原型制作工具,这与物理小型化同样重要。在本文中,在概述 3D 成像传感器的现状之后,介绍了它们在工业、遗产、医学和犯罪调查等应用中的一些重要示例。