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A multichannel amplitude and relative-phase controller for active sound quality control

机译:用于主动音质控制的多通道幅度和相对相位控制器

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The enhancement of the sound quality of periodic disturbances for a number of listeners within an enclosure often confronts difficulties given by cross-channel interferences, which arise from simultaneously profiling the primary sound at each error sensor. These interferences may deteriorate the original sound among each listener, which is an unacceptable result from the point of view of sound quality control. In this paper we provide experimental evidence on controlling both amplitude and relative-phase functions of stationary complex primary sounds for a number of listeners within a cavity, attaining amplifications of twice the original value, reductions on the order of 70 dB, and relative-phase shifts between ±π rad, still in a free-of-interference control scenario. To accomplish such burdensome control targets, we have designed a multichannel active sound profiling scheme that bases its operation on exchanging time-domain control signals among the control units during uptime. Provided the real parts of the eigenvalues of persistently excited control matrices are positive, the proposed multichannel array is able to counterbalance cross-channel interferences, while attaining demanding control targets. Moreover, regularization of unstable control matrices is not seen to prevent the proposed array to provide free-of-interference amplitude and relative-phase control, but the system performance is degraded, as a function of the amount of regularization needed. The assessment of Loudness and Roughness metrics on the controlled primary sound proves that the proposed distributed control scheme noticeably outperforms current techniques, since active amplitude-and/or relative-phase-based enhancement of the auditory qualities of a primary sound no longer implies in causing interferences among different positions. In this regard, experimental results also confirm the effectiveness of the proposed scheme on stably enhancing the sound qualities of periodic sounds for multiple listeners within a cavity.
机译:对于外壳内的许多听众来说,周期性扰动的声音质量的提高通常会遇到跨通道干扰所带来的困难,这是由于在每个错误传感器上同时分析主要声音而引起的。这些干扰可能会使每个听众之间的原始声音变差,从声音质量控制的角度来看,这是不可接受的结果。在本文中,我们提供了实验证据,用于控制腔内许多听众的平稳复合主声音的振幅和相对相位函数,获得两倍于原始值的放大倍率,70 dB量级的降低以及相对相位仍在无干扰控制的情况下在±πrad之间移动。为了实现这样繁重的控制目标,我们设计了一种多通道主动声音分析方案,该方案的工作基于正常运行时间在控制单元之间交换时域控制信号。如果持续激励控制矩阵的特征值的实部为正,则所提出的多通道阵列能够抵消跨通道干扰,同时达到要求的控制目标。而且,不稳定的控制矩阵的正则化不能防止所提出的阵列提供无干扰的幅度和相对相位控制,但是系统性能会降低,这取决于所需的正则化量。对受控的主要声音的响度和粗糙度度量的评估证明,由于主动声音基于振幅和/或相对相位的增强对主要声音的听觉质量的影响不再暗示会导致所提出的分布式控制方案明显优于现有技术。不同位置之间的干扰。在这方面,实验结果还证实了所提出的方案对于稳定地提高腔内多个收听者的周期性声音的音质的有效性。

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