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A ray-tracing approach for simulating recognition abilities of active infrared sensor arrays

机译:一种模拟主动红外传感器阵列识别能力的光线追踪方法

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摘要

The construction and setup of sensors or sensor arrays determines their maximum resolution and recognition abilities. Therefore, the analysis of certain setups is an important and mandatory task during the design process of a new sensor system. This paper deals with the simulation and evaluation of the recognition abilities of active infrared sensors for autonomous systems. Additionally, the simulation method as well as the results provide useful information for other applications, where infrared sensors are used. The simulation method is based on a Monte Carlo algorithm, which uses ray tracing to calculate the impulse response of the optical channel consisting of the sending and receiving components and the environment. In order to allow a fast simulation of several configurations, an efficient and flexible computation is realized. This means that all rays contribute maximally to the final result, and different sensor characteristics can easily be calculated. Extensive experiments are carried out, and the results show different evaluation options.
机译:传感器或传感器阵列的构造和设置决定了它们的最大分辨率和识别能力。因此,在新传感器系统的设计过程中,对某些设置的分析是一项重要且必不可少的任务。本文针对自主系统的有源红外传感器的识别能力进行了仿真和评估。此外,仿真方法及其结果为使用红外传感器的其他应用提供了有用的信息。该仿真方法基于蒙特卡洛算法,该算法使用光线跟踪来计算由发送和接收组件以及环境组成的光通道的脉冲响应。为了允许快速模拟几种配置,实现了高效灵活的计算。这意味着所有光线对最终结果的贡献最大,并且可以轻松计算出不同的传感器特性。进行了广泛的实验,结果显示了不同的评估选项。

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