[1] |
刘超. 起重机检验中“啃轨”问题分析[J]. 科学技术创新, 2018(5):40-41.
|
|
Liu Chao. Analysis of "rail gnawing" in crane inspection[J]. Scientific and Technological Innovation, 2018(5):40-41.
|
[2] |
丁克勤, 王志杰, 赵娜, 等. 大型起重机械结构健康监测技术研究进展[J]. 起重运输机械, 2012(8):1-4.
|
|
Ding Keqin, Wang Zhijie, Zhao Na, et al. Research advances in structural health monitoring technology for large hoisting machinery[J]. Hoisting and Conveying Machinery, 2012(8):1-4.
|
[3] |
孙远韬, 章增增, 张氢, 等. 基于全站仪及轨道机器人的桥式起重机轨道检测[J]. 起重运输机械, 2017(8):1-3.
|
|
Sun Yuantao, Zhang Zengzeng, Zhang Qing, et al. Bridge crane track inspection based on total station and railway robot[J]. Hoisting and Conveying Machinery, 2017(8):1-3.
|
[4] |
孔庆彬, 程维明. 基于全站仪的新型起重机轨道检测仪设计[J]. 化工自动化及仪表, 2015, 42(5):504-506.
|
|
Kong Qingbin, Cheng Weiming. Design of new crane rail detector based on total station[J]. Control and Instruments in Chemical Industry, 2015, 42(5):504-506.
|
[5] |
张世杰, 李家飞, 梁秀霞. 桥式起重机轨道维修与调整[J]. 设备管理与维修, 2017(9):74-75.
|
|
Zhang Shijie, Li Jiafei, Liang Xiuxia. Overhead crane track maintenance and adjustment[J]. Plant Maintenance Engineering, 2017(9):74-75.
|
[6] |
余杰, 杭杰. 起重机械轨道测量装置及检测方法的研究[J]. 中国特种设备安全, 2016, 32(9):21-25.
|
|
Yu Jie, Hang Jie. Research on measuring device and measuring method of crane rails[J]. China Special Equipment Safety, 2016, 32(9):21-25.
|
[7] |
马学文, 李鹏. 桥(门)式起重机轨距偏差检测现状及发展[J]. 建设机械技术与管理, 2012, 25(10):82-84.
|
|
Ma Xuewen, Li Peng. The status quo and the development to detect track centre deviation of overhead travelling crane or portal bridge crane[J]. Construction Machinery Technology & Management, 2012, 25(10):82-84.
|
[8] |
康飞. 基于机器视觉的轨道检测系统研究[D]. 兰州:兰州交通大学, 2014.
|
|
Kang Fei. Research on track detection system based on machine vision[D]. Lanzhou:Lanzhou Jiaotong University, 2014.
|
[9] |
Yoshihiro T, Yamamoto R I. Rail flaw detection technologies for maintaining the stable transport of railway[J]. Journal of Japanese Society of Tribologists, 2017, 62(11):679-684.
|
[10] |
葛雯, 高立群, 石振刚. 一种基于小波提升变换的多尺度边缘提取算法[J]. 东北大学学报(自然科学版), 2007(4):473-476.
|
|
Ge Wen, Gao Liqun, Shi Zhengang. An algorithm based on wavelet lifting transform for extraction of multi-scale edge[J]. Journal of Northeastern University(Natural Science), 2007(4):473-476.
|
[11] |
刘博峰, 郜丽鹏. 基于FPGA的Sobel图像边缘检测算法[J]. 应用科技, 2016, 43(6):59-61.
|
|
Liu Bofeng, Gao Lipeng. Sobel image edge detection method based on FPGA[J]. Applied Science and Technology, 2016, 43(6):59-61.
|
[12] |
范晞, 费胜巍, 储有兵. 基于Canny算子的改进型图像边缘提取算法[J]. 自动化与仪表, 2019, 34(1):41-44.
|
|
Fan Xi, Fei Shengwei, Chu Youbing. Improved algorithm for image edge extraction based on Canny operator[J]. Automation & Instrumentation, 2019, 34(1):41-44.
|
[13] |
孙汝萍. 一种改进的图像边缘提取方法[J]. 科技通报, 2018, 34(10):158-161.
|
|
Sun Ruping. An improved image edge extraction method[J]. Bulletin of Science and Technology, 2018, 34(10):158-161.
|
[14] |
张绍堂, 吴鸿, 宁德琼. 一种高精度的激光图像光斑中心检测方法[J]. 激光杂志, 2018, 39(8):153-156.
|
|
Zhang Shaotang, Wu Hong, Ning Deqiong. A high-accuracy detection method for laser image spot center[J]. Laser Journal, 2018, 39(8):153-156.
|
[15] |
Nuckolls J, Wood L, Thiessen A, et al. Laser compression of matter to super-high densities: thermonuclear(CTR) application[J]. Nature, 1972, 239(5368):139-142.
doi: 10.1038/239139a0
|
[16] |
Meng L Q, Kong Q Q, Ji K H, et al. Characterization of beam quality of unstable laser beams with the multiple hyperbolas method[J]. Results in Physics, 2019(12):38-45.
|
[17] |
张惠, 李国平, 张勇, 等. 基于三维反正切函数拟合的光斑质心提取算法[J]. 红外与激光工程, 2019, 48(2):268-275.
|
|
Zhang Hui, Li Guoping, Zhang Yong, et al. Spot centroid extraction algorithm based on three-dimensional arctangent function fitting[J]. Infrared and Laser Engineering, 2019, 48(2):268-275.
|
[18] |
叶大华. 高斯光束特性分析及其应用[J]. 激光技术, 2019, 43(1):142-146.
|
|
Ye Dahua. Analysis of characteristic of Gaussian beam and its application[J]. Laser Technology, 2019, 43(1):142-146.
|
[19] |
吴頔, 吕且妮, 卢琳, 等. 基于互相关和改进高斯拟合的光斑中心提取方法[J]. 光电子·激光, 2017, 28(2):202-210.
|
|
Wu Di, Lü Qieni, Lu Lin, et al. Spot center extraction method based on cross-correlation and improved Gaussian fitting[J]. Journal of Optoelectronics·Laser, 2017, 28(2):202-210.
|
[20] |
Goh T Y, Basah S N, Yazid H, et al. Performance analysis of image thresholding: Otsu technique[J]. Measurement, 2018, 11(4):298-307.
|
[21] |
袁小翠, 黄志开, 马永力, 等. Otsu阈值分割法特点及其应用分析[J]. 南昌工程学院学报, 2019, 38(1):85-90.
|
|
Yuan Xiaocui, Huang Zhikai, Ma Yongli, et al. Analysis of characteristics and application of Otsu threshold method[J]. Journal of Nanchang Institute of Technology, 2019, 38(1):85-90.
|
[22] |
Guo W Y, Wang X F, Xia X Z. Two-dimensional Otsu’s thresholding segmentation method based on grid box filter[J]. Optik, 2014, 125(18):5234-5240.
doi: 10.1016/j.ijleo.2014.05.003
|
[23] |
穆娟. 利用圆拟合进行激光光斑中心检测[J]. 舰船科学技术, 2016, 38(24):127-129.
|
|
Mu Juan. Laser spot center detection based on circle fitting[J]. Ship Science and Technology, 2016, 38(24):127-129.
|