[1] Majidi C, Kramer R, Wood R J. A non-differential elastomer curvature sensor for softer-than-skin electronics[J]. Smart Materials Structures, 2011, 20(10):105017.
[2] Song S, Li Z, Yu H, et al. Electromagnetic positioning for tip tracking and shape sensing of flexible robots[J]. IEEE Sensors Journal, 2015, 15(8):4565-4575.
[3] Asbeck A T, Rossi S M M D, Galiana I, et al. Stronger, smarter, softer:next-generation wearable robots[J]. IEEE Robotics Automation Magazine, 2014, 21(4):22-33.
[4] Abayazid M, Kemp M, Misra S. 3D flexible needle steering in soft-tissue phantoms using Fiber Bragg Grating sensors[C]//IEEE International Conference on Robotics and Automation. IEEE, 2013:5843-5849.
[5] Lou Xiaoping, Chen Zhongqin, Zhuang Wei, et al. Error analysis and calibration for FBG shape reconstruction based on non-orthogonal curvatures[J]. Chinese Journal of Scientific Instrument, 2017, 38(2):386-393. (in Chinese)
[6] Roesthuis R J, Kemp M, Dobbelsteen J J V D, et al. Three-dimensional needle shape reconstruction using an array of fiber Bragg grating sensors[J]. IEEE/ASME Transactions on Mechatronics, 2014, 19(4):1115-1126.
[7] Yang Linghui, Wang Lijun, Lin Jiarui, et al. 3D coordinate measurement method based on space resection of the orthogonal cylindrical imaging camera[J]. Infrared and Laser Engineering, 2018, 47(3):0317001. (in Chinese)
[8] Zhao Yalong, Liu Shouqi, Zhang Qican. 3D shape measurement accelerated by GPU[J]. Infrared and Laser Engineering, 2018, 47(3):0317003. (in Chinese)
[9] Xu Ning, Dai Ming. Design of distributed optical fiber sensor for temperature and pressure measurement[J]. Chinese Optics, 2015, 8(4):629-635. (in Chinese)
[10] Xu Guoquan, Xiong Daiyu. Applications of fiber Bragg grating sensing technology in engineering[J]. Chinese Optics, 2013, 6(3):306-317. (in Chinese)
[11] Arritt B J, Klimcak C, Pollard E, et al. Shape determination of large deployable space structures through the use of fiber-optics with integrated fiber-Bragg's gratings[C]//SPIE, 2007, 6530:653016.
[12] Payo I, Feliu V, Cortzar O D. Fibre Bragg grating (FBG) sensor system for highly flexible single-link robots[J]. Sensors Actuators A Physical, 2009, 150(1):24-39.
[13] Bang H J, Kim H I, Lee K S. Measurement of strain and bending deflection of a wind turbine tower using arrayed FBG sensors[J]. International Journal of Precision Engineering and Manufacturing, 2012, 13(12):2121-2126.
[14] Di Haiting, Fu Yili. Three dimensional reconstruction of curved shape based on curvature fiber optic sensor[J]. Optics and Precision Engineering, 2010, 18(5):1092-1098. (in Chinese)
[15] Zhang Yanan, Xiao Hai, Shen Linyong, et al. Coordinate point fitting in FBG curve reconstruction algorithm[J]. Optics and Precision Engineering, 2016, 24(9):2149-2157. (in Chinese)
[16] Shin W, Lee Y L, Yu B A, et al. Highly sensitive strain and bending sensor based on in-line fiber Mach-Zehnder interferometer in solid core large mode area photonic crystal fiber[J]. Optics Communications, 2010, 283(10):2097-2101.
[17] Martinezrios A, Monzonhernandez D, Salcedadelgado G, et al. Compact optical fiber curvature sensor based on concatenating two tapers[J]. Optics Letters, 2011, 36(22):4380-4382.
[18] Ge J, James A E, Xu L, et al. Bidirectional soft silicone curvature sensor based on off-centered embedded fiber Bragg grating[J]. IEEE Photonics Technology Letters, 2016, 28(20):2237-2240.
[19] Wang H, Zhang R, Chen W, et al. Shape detection algorithm for soft manipulator based on fiber bragg gratings[J]. IEEE/ASME Transactions on Mechatronics, 2016, 21(6):2977-2981.
[20] Payo I, Feliu V, Cortazar O D. Fibre Bragg grating (FBG) sensor system for highly flexible single-link robots[J].Sensors and Actuators A:Physical, 2009, 150:24-39.