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61.
62.
文中针对传统的基于签名匹配的威胁检测系统存在的局限,探讨了人工智能技术在网络安全防护中的应用。通过分析异常检测、恶意软件检测和自动化安全响应3个方面,阐明了机器学习和深度学习模型可以实现对未知威胁的检测和主动防御。研究认为,人工智能驱动的网络安全防护系统代表了技术发展的方向,但还需进一步的数据积累和模型优化,以实现更智能的商业安全产品的开发。 相似文献
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To evaluate the impact of zinc sulfate (ZnSO4) concentration on the structural properties of the films, Cd1-xZnxS thin films were formed on glass substrates using chemical bath deposition (CBD) in this study. The effect of ZnSO4 precursor concentration on the surface morphology, optical properties, and morphological structure of the Cd1-xZnxS films was investigated. To study the impact of zinc doping content on the performance metrics of Cu(In1-xGax)Se2 (CIGS) cells in the experimental group and to improve the buffer layer thickness, simulations were run using one-dimensional solar cell capacitance simulator (SCAPS-1D) software. 相似文献
65.
Aero-optic imaging deviation research is carried out for infrared-guided vehicle with cone-head side window, with a focus on the propagation characteristics of light in an aero-optic flow field. When the light entering the aero-optic flow field from the free-stream should be close to the normal, numerous data indicate that the light is refracted away from the normal. This paper divides the aero-optic flow field into two parts and uses the gas density distribution in the aero-optic flow field to ... 相似文献
66.
为了研究采样响应对光电成像系统生成图像的质量的影响,本文提出了将规范图像作为输入建立封闭的模型来分析采样响应的方法。首先给出了规范图像的定义并得到了USAF 1951规范图像的数学模型,然后分析了光电成像系统的采样响应过程和采样响应函数,最后讨论了USAF 1951规范图像在不同条件下的采样响应结果。研究结果表明:当采样前MTF截止频率、采样频率与采样后MTF截止频率之间的关系不同时,采样响应对像质的影响不同;当采样频率与采样前MTF截止频率满足一定的条件时,可在图像模糊与混叠之间取得平衡。 相似文献
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Clinical information about a variety of disorders is available through blood cell counting, which is usually done by manual methods. However, manual methods are complex, time-consuming and susceptible to the subjective experience of inspectors. Although many efforts have been made to develop automated blood cell counting algorithms, the complexity of blood cell distribution and the highly overlapping nature of some red blood cells (RBCs) remain significant challenges that limit the improvement of analytical accuracy. Here, we proposed an end-to-end method for blood cell counting based on deep learning. Firstly, U-Net++ was used to segment the whole blood cell image into several regions of interest (ROI), and each ROI contains only one single cell or multiple overlapping cells. Subsequently, YOLOv5 was used to detect blood cells in each ROI. Specifically, we proposed several strategies, including fine classification of RBCs, adaptive adjustment for non-maximal suppression (NMS) threshold and blood cell morphology constraints to improve the accuracy of detection. Finally, the detection outcomes for each ROI were combined and superimposed. The results show that our method can effectively address the issue of high overlap and precisely segment and detect blood cells, with a 98.18% accuracy rate for blood cell counting. 相似文献
69.
WANG Jiangchao XUE Yuming DAI Hongli WANG Luoxin ZHANG Jiuchao HU Zhaoshuo 《光电子快报》2023,19(9):548-555
LiNi0.8Co0.1Mn0.1O2 cathode material is prepared by sol-gel method and the effects of Nb5+ doping and different calcination temperatures on cathode materials were deeply investigated. Structural and morphological characterizations revealed that the optimal content of 1 mol% Nb5+ can stabilize layered structures, mitigate Ni2+ migration to Li layers, improve lithium diffusion capacity, and reduce lattice expansion/shrinkage while cycling. And calcination temperature at 800 °C can not only ensure good morphology, but also suppress the mixed discharge of lithium and nickel in the internal structure. Electrochemical performance evaluation revealed that Nb5+ doping improves the discharge-specific capacity of the material, which is conducive to ameliorating its rate capability and cycle performance. And the material at 800 °C exhibits the highest discharge specific capacity, the best magnification performance, low polarizability, and the best cycle reversibility. 相似文献