Cohen Khen, Mendlovic David, Raviv Dan
The Faculty of Engineering, Department of Physical Electronics, Tel Aviv University, Tel Aviv 69978, Israel.
Sensors (Basel). 2024 Jan 28;24(3):857. doi: 10.3390/s24030857.
While sensing in high temporal resolution is necessary for a wide range of applications, it is still limited nowadays due to the camera sampling rate. In this work, we try to increase the temporal resolution beyond the Nyquist frequency, which is limited by the sensor's sampling rate. This work establishes a novel approach to temporal super-resolution that uses the object-reflecting properties from an active illumination source to go beyond this limit. Following theoretical derivation and the development of signal-processing-based algorithms, we demonstrate how to increase the detected temporal spectral range by a factor of six and possibly even more. Our method is supported by simulations and experiments, and we demonstrate (via application) how we use our method to dramatically improve the accuracy of object motion estimation. We share our simulation code on GitHub.
虽然高时间分辨率传感对于广泛的应用来说是必要的,但由于相机采样率的限制,目前它仍然受到制约。在这项工作中,我们试图将时间分辨率提高到超过奈奎斯特频率,而奈奎斯特频率受传感器采样率的限制。这项工作建立了一种新颖的时间超分辨率方法,该方法利用有源照明源的物体反射特性来突破这一限制。经过理论推导和基于信号处理算法的开发,我们展示了如何将检测到的时间频谱范围提高六倍甚至更多。我们的方法得到了模拟和实验的支持,并且我们(通过应用)展示了如何使用我们的方法显著提高物体运动估计的准确性。我们在GitHub上分享了我们的模拟代码。