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Experimental synthesis of sound pressure fields for active structural acoustic control testing

机译:主动结构声控制测试的声压场实验合成

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For next generation aircraft, contra rotating open rotor propulsion systems are currently discussed. Their economic advantages are in conflict with their high noise emission, which concentrates in distinct frequency bands. To bring contra rotating open rotor engines into operation at commercial aircraft and to maintain the passenger comfort level, active systems for noise reduction are considered. In this article, a contra rotating open rotor noise simulator for the future testing of active systems is presented. The simulator consists of a 14×8 loudspeaker array, which is placed close to a test fuselage. Driving each loudspeaker by a particular signal, complex sound pressure fields can be synthesized on the fuselage. The algorithm presented here calculates loudspeaker signals to synthesize the target sound pressure spectra on the fuselage. These target spectra were derived from numerical contra rotating open rotor engine simulations, coupled with a Ffowcs Williams-Hawkings solver to propagate the calculated sound pressure field toward virtual surface microphone positions on the test fuselage. Requirement for such synthesis is the knowledge of the transfer paths from all loudspeakers to all surface microphones. In experiments, these paths are measured, and the loudspeaker signals are synthesized by the algorithm. Finally, measurements with the loudspeaker array and a microphone array are shown which prove the concept.
机译:对于下一代飞机,目前正在讨论反向旋转的开放旋翼推进系统。它们的经济优势与集中在不同频带上的高噪声发射相冲突。为了使对置旋转敞开式转子发动机在商用飞机上运行并保持乘客舒适度,考虑了主动降噪系统。在本文中,提出了用于未来对有源系统进行测试的反向旋转开放转子噪声模拟器。该模拟器由一个14×8扬声器阵列组成,该阵列放置在靠近测试机身的位置。通过特定的信号驱动每个扬声器,可以在机身上合成复杂的声压场。此处提出的算法计算扬声器信号,以合成机身上的目标声压谱。这些目标频谱是从数值对置旋转开式转子发动机仿真中得出的,结合Ffowcs Williams-Hawkings求解器将计算出的声压场传播到测试机身上的虚拟表面麦克风位置。这种合成的要求是要了解从所有扬声器到所有表面麦克风的传输路径。在实验中,测量这些路径,并通过算法合成扬声器信号。最后,显示了用扬声器阵列和麦克风阵列进行的测量,证明了这一概念。

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