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Singing performance of the talking robot with newly redesigned artificial vocal cords

机译:重新设计的人工声带会说话的机器人的演唱性能

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The authors are developing a talking robot which is a mechanical vocalization system modeling the human articulatory system. The talking robot is constructed with mechanical parts that are made by referring to human vocal organs biologically and functionally. In this study, a newly redesigned artificial vocal cords is developed for the purpose of extending the speaking capability of the talking robot. The artificial vocal cords is developed using functional approach. A thin layer of rubber band with a width of 7mm is attached on a plastic body in a sealed chamber creates an artificial sound source. The fundamental frequency of the sound source vary from 80Hz to 250 Hz depending on the pressure to the rubber band and the curving shape of the rubber band. The curving shape of the rubber band is adjustable by an innovative design mechanism driven by a servo motor. The amount of air pressure applied to the rubber band is controlled by another servo motor. The experiments to verify the speak capability of the talking robot with this newly redesigned vocal cords is conducted by letting the robot generating five vowel sounds with different combinations of 20 levels of rubber band shape and 5 levels of air pressure input. The pitch of each sound is extracted to determine the effect of the rubber band shape and the pressure input on the output sound. The result shows that this newly redesigned vocal cords greatly increase the speaking capability of the talking robot, especially its singing performance.
机译:作者正在开发一种会说话的机器人,这是一种模拟人的发音系统的机械发声系统。会说话的机器人由机械零件构成,这些机械零件是从生物学和功能上参照人体声器官制成的。在这项研究中,为了扩展说话机器人的说话能力,开发了一种新设计的人工声带。人造声带是使用功能性方法开发的。在密封室内的塑料主体上附着一薄层宽度为7mm的橡皮筋,从而产生人造声源。声源的基频从80Hz到250Hz,这取决于对橡皮筋施加的压力和橡皮筋的弯曲形状。橡皮圈的弯曲形状可通过伺服电机驱动的创新设计机构进行调节。施加在橡皮筋上的气压由另一个伺服电机控制。通过让机器人自动产生五种元音,并用20种橡皮筋形状和5种气压输入的不同组合来产生五种元音,从而进行实验来验证使用这种新设计的声带的发声机器人的说话能力。提取每个声音的音高,以确定橡皮筋形状和输入压力对输出声音的影响。结果表明,这种新设计的声带极大地提高了说话机器人的说话能力,尤其是其唱歌性能。

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