本章参考文献

[1]JOHNSON E A. Touch display—a novel input/output device for computers [J]. Electronics Letters, 1965, 1(8):219-220.

[2]JOHNSON E A. Touch Displays: A Programmed Man-Machine Interface [J]. Ergonomics, 1967, 10(2):271-277.

[3]张乾桢,欧晓丹,胡贝贝,等.触摸屏技术的专利分析[J].电视技术,2013,37(S2):166-168.

[4]HECHT D S, HU L, IRVIN G. Emerging transparent electrodes based on thin films of carbon nanotubes, graphene, and metallic nanostructures [J]. Advanced Materials, 2011, 23(13):1482-1513.

[5]陈康平.触控LCD模组制造工艺中的智能检测技术研究[D].杭州:浙江大学,2019.

[6]CAIRNS D R, WITTE R P, SPARACIN D K, et al. Strain-dependent electrical resistance of tin-doped indium oxide on polymer substrates [J]. Applied Physics Letters, 2000, 76(11):1425-1427.

[7]LAYANI M, KAMYSHNY A, MAGDASSI S. Transparent conductors composed of nanomaterials [J]. Nanoscale, 2014, 6(11):5581-5591.

[8]张卫,王庆浦,徐佳伟,等.OGS触控显示模组一体黑技术研究[J].液晶与显示,2019,34(10):969-976.

[9]BID A, BORA A, RAYCHAUAHURI A K. Temperature dependence of the resistance of metallic nanowires of diameter>=15nm: Applicability of Bloch-Gruneisen theorem [J]. Physical Review B Condensed Matter, 2006, 74(3):035426.

[10]黄蕾,舒强,刘柱,等.基于自容内嵌式触控面板触控电极的横纹研究[J].光电子技术,2019,39(2):131-136.

[11]SEAGER C H, PIKE G E. Percolation and conductivity: A computer study. I [J]. Phys. Rev. B, 1974, 10(4):1435-1446.

[12]崔永鑫.柔性触控屏中的Ag纳米线导电层研究[D].苏州:苏州大学,2019.

[13]LI J H, LUCZKA, JERZY. Thermal-inertial ratchet effects: Negative mobility, resonant activation, noise-enhanced stability, and noise-weakened stability [J]. Physical Review E Statal Nonlinear & Soft Matter Physics, 2010, 82(4):041104.

[14]林钢,吕岳敏,吴永俊.电容式触控显示模组的抗反射结构及其性能研究[J].液晶与显示,2015,30(4):621-627.

[15]ELLMER, KLAUS. Past achievements and future challenges in the development of optically transparent electrodes [J]. Nature Photonics, 2012, 6(12):809-817.

[16]田晶,田丰,凌晨,等.基于光学的真三维触控定位与识别方法研究[J].液晶与显示,2013,28(1):64-70.

[17]梁列全.基于稀疏特征的触摸屏图像缺陷检测及识别方法的研究[D].广州:华南理工大学,2015.

[18]汪海波,薛澄岐,朱玉婷,等.多点触控手势在复杂系统数字界面中的应用优势[J].东南大学学报(自然科学版),2016,46(5):1002-1006.

[19]詹思维.投射电容式触控芯片的研究与设计[J].固体电子学研究与进展,2016,36(1):60-65,82.

[20]刘信,杨妮,李辉,等.电容式触摸屏气泡线不良的研究与改善[J].液晶与显示,2019,34(7):676-681.

[21]FUKUDA T, MESEROLE C A, KIGAWA K. Touch Panel Surface Modification Technology: The Latest Trends [J]. Sid Symposium Digest of Technical Papers, 2015, 45(1):1622-1625.

[22]XING H, DENG L, KE J, et al. High Sensitive Readout Circuit for Capacitance Touch Panel With Large Size [J]. IEEE Sensors Journal, 2019, 19(4):1412-1415.

[23]MOHATTA S, PERLA R, GUPTA G, et al. Robust Hand Gestural Interaction for Smartphone Based AR/VR Applications [C]. IEEE Winter Conference in Applications of Computer Vision. IEEE, 2017.

[24]LEE S, JEON S, CHAJI R, et al. Transparent Semiconducting Oxide Technology for Touch Free Interactive Flexible Displays [J]. Proceedings of the IEEE, 2015, 103(4):644-664.

[25]郭瑞,朱沛立.红外触摸屏响应分析及延时优化[J].液晶与显示,2015,30(6):1057-1062.

[26]CHOU K Y, CHAO C P, CHEN C X, et al. Modeling and analysis of touch on flexible ultra-thin touch sensor panels for AMOLED displays employing finite element methods [J]. Microsystem Technologies, 2017, 23(11):5211-5220.

[27]余玉卿,宋爱国,陈大鹏,等.用于触摸屏图像感知的指端力触觉再现系统[J].仪器仪表学报,2017,38(6):1523-1530.

[28]CHEN J, QIAO G, LI W, et al. Recent Development on Flexible Touch Sensor for Flexible AMOLED Display [J]. SID Symposium Digest of Technical Papers, 2018, 49:426-427.

[29]GOTO H, GE M, QIAN Z, et al. Study of the Finger Detection Technology for the One Camera Touch Panel [C]. The 5th IIAE International Conference on Intelligent Systems and Image Processing, 2017.

[30]蔡浩,陈超平,卢佳惠,等.液晶显示屏与电容式触摸屏间的信号串扰抑制[J].液晶与显示,2018,33(6):504-510.

[31]CHEON B J, KIM J W, OH M C. Plastic optical touch panels for large-scale flexible display [J]. Optics Express, 2013, 21(4):4734-4739.

[32]TAI Y H, LIN C H, CHEU W J. Active in-cell touch circuit using floating common electrode as sensing pad for the large size in-plane-switching liquid crystal displays [J]. Journal of the Society for Information Display, 2017, 25(10):610-620.