Kitamura Tatsuya, Nota Yukiko, Hashi Michiko, Hatano Hiroaki
Faculty of Intelligence and Informatics, Konan University, Kobe, Hyogo, 658-8501, Japan.
Brain Activity Imaging Center, ATR-Promotions Incorporated, Seika-cho, Soraku-gun, Kyoto, 619-0288, Japan.
J Acoust Soc Am. 2018 Mar;143(3):EL154. doi: 10.1121/1.5025167.
This study attempted to improve the five-degrees-of-freedom sensors of the Northern Digital Incorporated's Wave electromagnetic articulography system by replacing their cables with thinner and more flexible cables to reduce interference in articulation. Measurement errors and data loss rates were compared between the original and the proposed sensors. The proposed sensors showed twofold tracking accuracy and data loss rates compared to the original sensors in an experiment using a crank-rocker mechanism. Data loss rates of the proposed sensors increased in articulatory data collection from four speakers. The proposed sensors have been made available commercially.
本研究试图通过用更细且更灵活的电缆替换其电缆来改进北方数字公司的Wave电磁关节造影系统的五自由度传感器,以减少关节活动中的干扰。比较了原始传感器和改进后的传感器的测量误差和数据丢失率。在使用曲柄摇杆机构的实验中,改进后的传感器与原始传感器相比,跟踪精度提高了两倍,数据丢失率降低。在从四名说话者收集的发音数据中,改进后的传感器的数据丢失率有所增加。改进后的传感器已在市场上销售。