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Modelling of SPAD-based time-of-flight measurement techniques

机译:基于SPAD的飞行时间测量技术建模

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For applications like autonomous driving a fast and reliable monitoring of the vehicle's environment is essential. With the possibility of fabricating single-photon avalanche diodes in standard CMOS processes, small and cost-efficient time-of-flight sensors can be realized. To estimate the performance of such a sensor a general theoretical model taking into account the properties of the light source, the sensor, and the environment is of key importance. In this paper we will present a model to predict the performance parameters like achievable range and precision of different time-of-flight measurement techniques.
机译:对于诸如自动驾驶之类的应用,对汽车环境进行快速可靠的监控至关重要。通过在标准CMOS工艺中制造单光子雪崩二极管的可能性,可以实现小型且经济高效的飞行时间传感器。为了估计这种传感器的性能,考虑光源,传感器和环境特性的一般理论模型至关重要。在本文中,我们将提供一个模型来预测性能参数,例如不同飞行时间测量技术的可达到范围和精度。

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