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使用蒙特卡罗方法对高度不对称散射介质,通过工程化的Janus粒子遮蔽物进行非对称成像。

Asymmetric imaging through engineered Janus particle obscurants using a Monte Carlo approach for highly asymmetric scattering media.

作者信息

da Mota Achiles F, Sadafi Mohammad Mojtaba, Mosallaei Hossein

机构信息

Department of Electrical and Computer Engineering, Northeastern University, Boston, MA, 02115, USA.

Department of Electrical Engineering, University of Brasília (UnB), Brasília, 70910-900, Brazil.

出版信息

Sci Rep. 2024 Feb 15;14(1):3850. doi: 10.1038/s41598-024-54035-7.

Abstract

The advancement of imaging systems has significantly ameliorated various technologies, including Intelligence Surveillance Reconnaissance Systems and Guidance Systems, by enhancing target detection, recognition, identification, positioning, and tracking capabilities. These systems can be countered by deploying obscurants like smoke, dust, or fog to hinder visibility and communication. However, these counter-systems affect the visibility of both sides of the cloud. In this sense, this manuscript introduces a new concept of a smoke cloud composed of engineered Janus particles to conceal the target image on one side while providing clear vision from the other. The proposed method exploits the unique scattering properties of Janus particles, which selectively interact with photons from different directions to open up the possibility of asymmetric imaging. This approach employs a model that combines a genetic algorithm with Discrete Dipole Approximation to optimize the Janus particles' geometrical parameters for the desired scattering properties. Moreover, we propose a Monte Carlo-based approach to calculate the image formed as photons pass through the cloud, considering highly asymmetric particles, such as Janus particles. The effectiveness of the cloud in disguising a target is evaluated by calculating the Probability of Detection (PD) and the Probability of Identification (PID) based on the constructed image. The optimized Janus particles can produce a cloud where it is possible to identify a target more than 50% of the time from one side (PID > 50%) while the target is not detected more than 50% of the time from the other side (PD < 50%). The results demonstrate that the Janus particle-engineered smoke enables asymmetric imaging with simultaneous concealment from one side and clear visualization from the other. This research opens intriguing possibilities for modern obscurant design and imaging systems through highly asymmetric and inhomogeneous particles besides target detection and identification capabilities in challenging environments.

摘要

成像系统的进步通过增强目标检测、识别、定位和跟踪能力,显著改善了包括情报监视侦察系统和制导系统在内的各种技术。可以通过部署烟雾、灰尘或雾气等遮蔽物来阻碍能见度和通信,从而对抗这些系统。然而,这些对抗系统会影响云雾两侧的能见度。从这个意义上说,本文引入了一种由工程化的Janus粒子组成的烟雾云的新概念,以在一侧隐藏目标图像,而在另一侧提供清晰的视野。所提出的方法利用了Janus粒子独特的散射特性,这些粒子与来自不同方向的光子选择性相互作用,从而开启了非对称成像的可能性。该方法采用了一种将遗传算法与离散偶极近似相结合的模型,以优化Janus粒子的几何参数,使其具有所需的散射特性。此外,我们提出了一种基于蒙特卡洛的方法,来计算光子穿过云雾时形成的图像,其中考虑了诸如Janus粒子等高度不对称的粒子。通过基于构建的图像计算检测概率(PD)和识别概率(PID),来评估云雾对目标的伪装效果。优化后的Janus粒子可以产生一种云雾,在一侧有超过50%的时间能够识别目标(PID>50%),而在另一侧目标未被检测到的时间超过50%(PD<50%)。结果表明,Janus粒子工程化的烟雾能够实现非对称成像,同时在一侧隐藏目标,在另一侧实现清晰可视化。这项研究为现代遮蔽物设计和成像系统开辟了有趣的可能性,除了在具有挑战性的环境中的目标检测和识别能力外,还通过高度不对称和不均匀的粒子实现了这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/970b/10869813/bf57ebe280e1/41598_2024_54035_Fig1_HTML.jpg

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