Vlatacom Institute, 11070 Belgrade, Serbia.
Faculty of Information Technologies, Doctoral Studies in Software Engineering, Belgrade Metropolitan University, 11158 Belgrade, Serbia.
Sensors (Basel). 2023 Mar 3;23(5):2784. doi: 10.3390/s23052784.
Multi-sensor imaging systems have a very important role and wide applications in surveillance and security systems. In many applications, it is necessary to use an optical protective window as an optical interface connecting the imaging sensor and object of interest's space; meanwhile an imaging sensor is mounted in a protective enclosure, providing separation from environmental conditions. Optical windows are often used in various optical and electro-optical systems, fulfilling different sometimes very unusual tasks. There are lots of examples in the literature that define optical window design for targeted applications. Through analysis of the various effects that follow optical window application in connection with imaging systems, we have suggested a simplified methodology and practical recommendation for how to define optical protective window specifications in multi-sensor imaging systems, using a system engineering approach. In addition, we have provided initial set of data and simplified calculation tools that can be used in initial analysis to provide proper window material selection and definition of the specifications of optical protective windows in multi-sensor systems. It is shown that although the optical window design seems as a simple task, it requires serious multidisciplinary approach.
多传感器成像系统在监控和安全系统中具有非常重要的作用和广泛的应用。在许多应用中,有必要使用光学保护窗口作为连接成像传感器和感兴趣物体空间的光学接口;同时,成像传感器安装在保护外壳中,与环境条件隔离。光学窗口常用于各种光学和光电系统,完成不同的、有时非常特殊的任务。文献中有很多示例定义了针对特定应用的光学窗口设计。通过分析与成像系统相关的光学窗口应用的各种影响,我们使用系统工程方法提出了一种简化的方法和实用建议,用于定义多传感器成像系统中光学保护窗口的规格。此外,我们还提供了一组初始数据和简化的计算工具,可用于初步分析,以选择适当的窗口材料并定义多传感器系统中光学保护窗口的规格。结果表明,尽管光学窗口设计看起来很简单,但它需要认真的多学科方法。