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Controller Design for Propeller Phase Synchronization with Aeroacoustic Performance Metrics

机译:具有航空声学性能指标的螺旋桨相位同步控制器设计

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Active noise reduction using phase control takes advantage of the propellers used in a distributed electric air vehicle by treating each propeller as an independent acoustic source. These acoustic sources can destructively interfere if the propellers are synchronized. With this method, the radiated sound power around the vehicle can be reduced. The purpose of this paper is to design a controller that regulates propeller positions to reduce the radiated sound power through destructive interference and to demonstrate the performance of the controller through acoustic testing. There are two control requirements for reducing the sound pressure level considered in this paper. The first is accurately regulating the difference between the propeller azimuthal blade positions (phase) relative to their neighbors. By changing the phase at the source, we can control the phase of the sound wave at an arrival position to create destructive interference. The second consideration is maintaining high coherence between the two propeller sources. To achieve significant attenuation, the controller needs to regulate phase error and suppress sources of incoherence. Performance is demonstrated through sound recordings performed in the NASA Langley Structural Acoustic Loads and Transmission (SALT) anechoic chamber. We show that the controller is capable of reducing sound pressure level at a given observer location by 17 dB at the blade passage frequency and that this method can reduce the radiated sound power by 6 dB at the blade passage frequency.
机译:通过将每个螺旋桨视为独立的声源,使用相位控制进行主动降噪可充分利用分布式电动飞机中使用的螺旋桨。如果螺旋桨同步,这些声源会产生相消干扰。利用这种方法,可以减小车辆周围的辐射声功率。本文的目的是设计一种控制器,该控制器可调节螺旋桨的位置,以通过相消干扰降低辐射声功率,并通过声学测试证明控制器的性能。为降低声压级有两个控制要求,在本文中进行了考虑。首先是精确调节螺旋桨方位角叶片位置(相位)相对于其相邻叶片之间的差异。通过改变声源的相位,我们可以控制声波在到达位置的相位,从而产生相消干扰。第二个考虑因素是保持两个螺旋桨源之间的高度连贯性。为了获得显着的衰减,控制器需要调节相位误差并抑制不相干源。通过在NASA兰利结构声载荷和传输(SALT)消声室中执行的录音来证明性能。我们表明,该控制器能够在给定的观察者位置以叶片通过频率将声压级降低17 dB,并且该方法可以以叶片通过频率将辐射声功率降低6 dB。

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