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Design and testing of a novel audio transducer to train string musical instrument

机译:新型音频传感器的设计与测试训练弦乐器

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Stringed wooden instruments, like violins or double basses, experience a decrease in performance if they are not played for a long time. For this reason, top class instruments are usually given to musicians and played every day to preserve sound quality. The paper deals with the design, construction and testing of a device to be inserted in the bridge of a stringed wooden instrument to simulate the stresses experienced by the instrument during normal playing. The device could provide a simple, fast and inexpensive way to recover the sound of an instrument that has not been played for a period of time, or even to enhance the instrument's sound. The device is based on two magnetostrictive actuators that can exert suitable forces on the body of the violin. The device has been designed and tested to exert forces as constant as possible in the range of frequency between 10 Hz and 15kHz. Experimental tests are carried out to evaluate the effect of the device on the sound produced by the violin during a 3 weeks hours training. Two hi-quality microphones have been used to measure principal harmonics and changes during the test. Results show that in the first part of the test (approximately 100 hours) amplitudes of main harmonics widely change, while in the following their values remain constant. This behavior demonstrates the violin has reached its "nominal" status.
机译:弦乐器,如小提琴或双息,如果它们没有长时间没有播放,则会减少性能。因此,通常对音乐家提供顶级课程,并每天玩耍以保持音质。本文涉及将设备插入弦乐器桥梁的设计,施工和测试,以模拟仪器在正常播放期间所经历的应力。该设备可以提供一种简单,快速且廉价的方式来恢复未在一段时间内播放的仪器的声音,甚至可以增强仪器的声音。该装置基于两个磁致伸缩致动器,可以在小提琴的主体上发挥适当的力。该装置已经设计和测试,以尽可能施加恒定的力,在10Hz和15kHz之间的频率范围内。进行了实验测试,以评估装置在3周工作时间内由小​​提琴产生的声音的影响。两种高质量的麦克风已经用于测量考试期间的主要谐波和变化。结果表明,在测试的第一部分(约100小时)的主要谐波幅度广泛发生变化,而在以下它们的值保持恒定。这种行为展示了小提琴已达到其“标称”状态。

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