Nanosecond laser cleaning method for high-capacity fast storage and data multiplexing in ARM architecture

被引:0
|
作者
Wang, Chenyu [1 ]
Sun, Ting [1 ]
Hu, Zhihua [1 ]
机构
[1] Shanghai Polytech Univ, Sch Intelligent Mfg & Control Engn, Shanghai 201209, Peoples R China
关键词
SURFACE; REMOVAL; ABLATION; STEEL;
D O I
10.1364/AO.533055
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
As the application of laser cleaning technology continues to expand, various fields have put forward higher requirements for the performance and quality of the operation, and at present, laser cleaning has problems such as low efficiency in handling repetitive tasks, and the system deployment and maintenance costs are high. This paper proposes a nanosecond laser cleaning method based on ARM architecture with high-capacity fast storage and data reuse, integrating high-capacity fast storage technique and data reuse strategy to optimize the laser cleaning process. In this paper, SDRAM is used to store and record the laser scanning path, Cache is integrated to weaken the data calling delay and improve the system response speed, and the scanning cycle is finely adjusted by combining positional modulation laser frequency technology to avoid the edge erosion caused by the motor deceleration and to ensure the homogeneity and accuracy of laser cleaning. The results indicate that, under the same output point conditions, the dynamic phase difference spiral algorithm in this paper outperforms the linear filling algorithm in terms of speed and data filling efficiency, reducing the burden of repetitive task calculations. While maintaining surface erosion uniformity during cleaning, excessive erosion is prevented, leading to a comprehensive enhancement in the overall efficiency and performance of laser cleaning operations. (c) 2024 Optica Publishing Group. All rights, including for text and data mining (TDM), Artificial Intelligence (AI) training, and similar technologies, are reserved.
引用
收藏
页码:6704 / 6712
页数:9
相关论文
共 50 条
  • [1] Vanadium hexacyanoferrate as high-capacity cathode for fast proton storage
    Peng, Xuancheng
    Guo, Haocheng
    Ren, Wenhao
    Su, Zhen
    Zhao, Chuan
    CHEMICAL COMMUNICATIONS, 2020, 56 (79) : 11803 - 11806
  • [2] High-capacity optical data storage by ultraviolet femtosecond laser writing in silica glass
    Wang, Qing
    Lei, Yu-hao
    Wang, Yi
    Liu, Zi-ting
    Yu, Yan-hao
    Liu, Xue-qing
    Gao, Bing-rong
    Xu, Ke-mi
    Wang, Lei
    OPTICS EXPRESS, 2024, 32 (26): : 46140 - 46149
  • [3] A Review of High-Capacity Hologram Data Storage for Big Data Applications
    Hu, Dejiao
    Wang, Zhen
    Luo, Tiewei
    Xia, Qifan
    Zhang, Diqin
    Zhao, Yuxia
    Zheng, Mu
    Li, Xiangping
    Cao, Yaoyu
    CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2023, 50 (18):
  • [4] Quasi-orthogonal subcarrier multiplexing for high-capacity optical data links
    Benterud, Kevin P.
    Krzymien, Witold A.
    Grover, Wayne D.
    Canadian Journal of Electrical and Computer Engineering, 1993, 18 (04) : 159 - 169
  • [5] A High-Capacity Mobile Storage Device Data Protection Scheme
    Liu Ming
    Wang Pengfei
    Wang Hongyan
    Meng Xiangrui
    FRONTIERS OF MANUFACTURING SCIENCE AND MEASURING TECHNOLOGY III, PTS 1-3, 2013, 401 : 1796 - +
  • [6] A high-capacity data hiding method for polygonal meshes
    Wu, Hao-tian
    Cheung, Yiu-ming
    INFORMATION HIDING, 2007, 4437 : 188 - +
  • [7] High-capacity index based data hiding method
    Ki-Hyun Jung
    Kee-Young Yoo
    Multimedia Tools and Applications, 2015, 74 : 2179 - 2193
  • [8] A high-capacity reversible data hiding method: HCRHide
    Yalman, Y.
    Akar, F.
    IMAGING SCIENCE JOURNAL, 2014, 62 (02): : 121 - 126
  • [9] High-capacity index based data hiding method
    Jung, Ki-Hyun
    Yoo, Kee-Young
    MULTIMEDIA TOOLS AND APPLICATIONS, 2015, 74 (06) : 2179 - 2193
  • [10] High capacity holographic data storage with phase-coded multiplexing
    Darmstadt Univ of Technology, Darmstadt, Germany
    Guangdianzi Jiguang, (302-304):