[1] 童 飞,曾 文.“超吃水”航行管理问题研究[J].中国水运,2008,8(7):32-33. TONG Fei, ZENG Wen. Research on voyage management issues of “super draft”[J]. China Water Transport, 2008, 8(7): 32-33.(in Chinese)
[2] 骆国强,朱汉华,陈一奇,等.手持式智能船舶吃水及载重测量仪研制[J].航海工程,2007,36(6):27-29. LUO Guo-qiang, ZHU Han-hua, CHEN Yi-qi, et al. Research on the holding measure instrument of ship sea gauge and load[J]. Ship and Ocean Engineering, 2007, 36(6): 27-29.(in Chinese)
[3] 陈文炜,俞 汲,徐 杰,等.一种船舶吃水测量系统[J].中国造船,2013,54(1):166-171. CHEN Wen-wei, YU Ji, XU Jie, et al. A new measurement system of ship draft[J]. Shipbuilding of China, 2013, 54(1): 166-171.(in Chinese)
[4] 孙国元,毛奇凰.自动检测船舶吃水和稳性参数的方法探讨[J].中国航海,2002(2):28-30. SUN Guo-yuan, MAO Qi-huang. Study on automatic determining ship’s draft and stability parameters[J]. Navigation of China, 2002(2): 28-30.(in Chinese)
[5] 王 勇,颜昌平.船舶吃水现场检测技术及方法探讨[J].中国水运,2008,8(8):44-45. WANG Yong, YAN Chang-ping. Field detection technology and method of ship draft[J]. China Water Transport, 2008, 8(8): 44-45.(in Chinese)
[6] 罗 婧,施朝健,冉 鑫.一种视频图像船舶吃水线自动检测方法[J].船海工程,2012,41(1):30-32,37. LUO Jing, SHI Chao-jian, RAN Xin. A new method for automatic detection of ship waterline[J]. Ship and Ocean Engineering, 2012, 41(1): 30-32, 37.(in Chinese)
[7] 熊木地,朱四印,李 禄,等.通航船舶吃水实时检测系统数据处理方法研究[J].仪器仪表学报,2012,33(1):173-180. XIONG Mu-di, ZHU Si-yin, LI Lu, et al. Research on data processing method of real-time detection system for dynamic ship draft[J]. Chinese Journal of Scientific Instrument, 2012, 33(1): 173-180.(in Chinese)
[8] 罗 宁.内河船舶吃水自动检测装置研究及应用前景[J].中国水运,2012,12(2):86-88. LUO Ning. Research and application prospects of automatic detection device for inland vessels draft[J]. China Water Transport, 2012, 12(2): 86-88.(in Chinese)
[9] 毕方全,梁 山.船舶“超吃水”航行动态检测方法研究[J].中国水运,2011,11(7):1-3. BI Fang-quan, LIANG Shan. Research on dynamic detection method of ships “super draft” [J]. China Water Transport, 2011, 11(7): 1-3.(in chinese)
[10] 齐 娜,田 坦.多波束条带测深中的声线跟踪技术[J].哈尔滨工程大学学报,2003,24(3):245-248. QI Na, TIAN Tan. Ray tracing in multi-beam swath bathymetry[J]. Journal of Harbin Engineering University, 2003, 24(3): 245-248.(in Chinese)
[11] 袁延艺,刘 晓,徐 超,等.基于多波束测深系统的水下成像技术[J].海洋测绘,2012,32(4):29-32. YUAN Yan-yi, LIU Xiao, XU Chao, et al. Underwater imaging technology based on multibeam sounding system[J]. Hydrographic Surveying and Charting, 2012, 32(4): 29-32.(in Chinese)
[12] OLIVEIRA A M, CLARKE J E. Extending the multibeam angular sector to improve seafloor classification[J]. Sea Technology, 2008, 49(6): 17-25.
[13] 田晓东,刘 忠.水下成像声呐探测系统建模与仿真[J].计算机仿真,2006,23(11):176-179. TIAN Xiao-dong, LIU Zhong. Modeling and simulation of underwater detection system based on imaging sonar[J]. Computer Simulation, 2006, 23(11): 176-179.(in Chinese)
[14] 吴 俊,丁甡奇,余 葵,等.内河离港船舶吃水在线动态扫描检测方法[J].水利水运工程学报,2013(5):83-88. WU Jun, DING Shen-qi, YU Kui, et al. Research on detection method for ship’s draft measurement[J]. Hydro-Science and Engineering, 2013(5): 83-88.(in Chinese)
[15] LANZERSDORFER J. Use of the acoustic transit time method to determine the random uncertainty of planar velocity parameters in water[J]. Flow Measurement and Instrumentation, 2013, 34(12): 27-33.
[16] CHOO Y M, SEONG W J. Analysis of acoustic channels with a time-evolving sinusoidal surface[J]. Applied Acoustics, 2014, 78(4): 28-32.
[17] MEYER M, HERMAND J P, BERRADA M, et al. Remote sensing of Tyrrhenian shallow waters using the adjoint of a full-field acousticpropagation model[J]. Journal of Marine Systems, 2009, 78(6): 339-348.
[18] LABORRET S, FROHLY J, RIVART F. Evolution of an 1 MHz ultrasonic cavitation bubble field in a chopped irradiation mode[J]. Ultrasonics Sonochemistry, 2006, 13(4): 287-294.
[19] KIM B N, YOON S W. Nonlinear parameter estimation in water-saturated sandy sediment with difference frequency acoustic wave[J]. Ultrasonics, 2009, 49(4/5): 438-445.