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An Arduino-Based Resonant Cradle Design with Infant Cries Recognition

机译:具有婴儿哭声识别的基于Arduino的共振支架设计

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摘要

This paper proposes a resonant electric cradle design with infant cries recognition, employing an Arduino UNO as the core processor. For most commercially available electric cradles, the drive motor is closely combined with the bearing on the top, resulting in a lot of energy consumption. In this proposal, a ball bearing design was adopted and the driving force is under the cradle to increase the distance from the object to fulcrum and torque. The sensors are designed to detect the oscillation state, and then the force is driven at the critical time to achieve the maximum output response while saving energy according to the principle of resonance. As for the driving forces, the winding power and motors are carefully placed under the cradle. The sensors, including the three-axis accelerometer and infrared sensor, are tested and applied under swinging amplitude control. In addition, infant cry recognition technology was incorporated in the design to further develop its functionality, which is a rare feature in this kind of hardware. The proposed nonlinear operator of fundamental frequency (f0) analysis is able to identify different types of infant cries. In conclusion, this paper proposes an energy-saving electric cradle with infant cries recognition and the experimental results demonstrate the effectiveness of this approach.
机译:本文提出了一种具有婴儿啼哭声识别功能的共振电子支架设计,该设计采用Arduino UNO作为核心处理器。对于大多数市售的电动支架,驱动马达与顶部的轴承紧密结合,从而导致大量能耗。在该建议中,采用了滚珠轴承设计,并且驱动力位于支架下方,以增加从物体到支点和扭矩的距离。传感器设计用于检测振动状态,然后在关键时刻驱动力以达到最大输出响应,同时根据共振原理节省能量。至于驱动力,绕组功率和电机都小心地放置在底座下面。传感器(包括三轴加速度计和红外传感器)在摆幅控制下进行测试和应用。此外,婴儿哭声识别技术被纳入设计中以进一步开发其功能,这在此类硬件中是罕见的功能。提出的基本频率(f0)分析的非线性算子能够识别不同类型的婴儿哭声。总之,本文提出了一种具有婴儿哭声识别功能的节能型电动摇篮,实验结果证明了该方法的有效性。

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