Li Qianhui, Dong Liquan, Hu Yao, Hao Qun, Lv Jiahang, Cao Jie, Cheng Yang
Key Laboratory for Precision Optoelectronic Measurement Instrument and Technology, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China.
Sensors (Basel). 2023 Aug 3;23(15):6906. doi: 10.3390/s23156906.
In a data-driven context, bionic polarization navigation requires a mass of skylight polarization pattern data with diversity, complete ground truth, and scene information. However, acquiring such data in urban environments, where bionic polarization navigation is widely utilized, remains challenging. In this paper, we proposed a virtual-real-fusion framework of the skylight polarization pattern simulator and provided a data preparation method complementing the existing pure simulation or measurement method. The framework consists of a virtual part simulating the ground truth of skylight polarization pattern, a real part measuring scene information, and a fusion part fusing information of the first two parts according to the imaging projection relationship. To illustrate the framework, we constructed a simulator instance adapted to the urban environment and clear weather and verified it in 174 urban scenes. The results showed that the simulator can provide a mass of diverse urban skylight polarization pattern data with scene information and complete ground truth based on a few practical measurements. Moreover, we released a dataset based on the results and opened our code to facilitate researchers preparing and adapting their datasets to their research targets.
在数据驱动的背景下,仿生偏振导航需要大量具有多样性、完整的地面真值和场景信息的天空光偏振模式数据。然而,在广泛应用仿生偏振导航的城市环境中获取此类数据仍然具有挑战性。在本文中,我们提出了一种天空光偏振模式模拟器的虚实融合框架,并提供了一种补充现有纯模拟或测量方法的数据准备方法。该框架由模拟天空光偏振模式地面真值的虚拟部分、测量场景信息的真实部分以及根据成像投影关系融合前两部分信息的融合部分组成。为了说明该框架,我们构建了一个适用于城市环境和晴朗天气的模拟器实例,并在174个城市场景中进行了验证。结果表明,该模拟器可以基于一些实际测量提供大量具有场景信息和完整地面真值的多样化城市天空光偏振模式数据。此外,我们基于这些结果发布了一个数据集,并开放了代码,以方便研究人员准备数据集并使其适应他们的研究目标。