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Procedure for determination of sound power levels of direct-radiator loudspeakers in the low-frequency range using the sound pressure within the system enclosure

机译:使用系统外壳内的声压确定低频范围内直射式扬声器的声功率级的步骤

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In this paper, a method of sound power level determination in the low-frequency range applied to direct-radiator loudspeakers and using the sound pressure within the system enclosure is proposed and discussed. The procedure is based on the Thiele-Small model of the loudspeaker, whereby the emitted sound power over a 2 pi sr solid angle is related to the total acoustic volume velocity radiated by the system, which simultaneously can be linked to the internal sound pressure in the box. Under normal conditions, this sound pressure is independent of the acoustic environment present outside the loudspeaker. To determine the internal sound pressure, the microphone could be easily inserted into the enclosure, usually through the bass-reflex opening in vented-box systems or via a small orifice in closed-box loudspeakers. The proposed method has been tested and compared with the standard methods used commonly nowadays (the reverberation room method and the anechoic room technique) on a bass-reflex loudspeaker system whose electrical analogous circuit model and sound power response are deeply known. To assess the results, the theoretical sound power response based on the electrical analogous circuit of the loudspeaker (Thiele-Small model) has been compared with all the former measurements, obtaining high agreement in the low-frequency range when the proposed method is compared with the sound power response of the theoretical model, thus validating the procedure. Even more, the measurements on the loudspeaker using the method here proposed seem to be better in the low-frequency range than that obtained by the standard methods, that is, the reverberation and the anechoic room techniques. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出并讨论了一种应用于直接辐射扬声器并利用系统外壳内声压的低频范围内声功率级确定方法。该程序基于扬声器的Thiele-Small模型,由此,在2 pi sr立体角上发出的声功率与系统辐射的总声速有关,同时可以与内部声压相关。盒子。在正常情况下,此声压与扬声器外部的声学环境无关。为了确定内部声压,通常可以通过通风箱系统中的低音反射孔或封闭箱式扬声器中的小孔,将麦克风轻松插入外壳。已对该方法进行了测试,并与当今在电模拟电路模型和声功率响应众所周知的低音反射扬声器系统上常用的标准方法(混响室方法和消声室技术)进行了比较。为了评估结果,已将基于扬声器电模拟电路的理论声功率响应(Thiele-Small模型)与所有以前的测量结果进行了比较,当将所提出的方法与以下方法进行比较时,在低频范围内获得了较高的一致性。理论模型的声功率响应,从而验证了该过程。此外,使用此处提出的方法在扬声器上进行的测量似乎在低频范围内比通过标准方法(即混响和消音室技术)获得的测量更好。 (C)2015 Elsevier Ltd.保留所有权利。

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