首页> 外文会议>Asilomar Conference on Signals, Systems and Computers >A COMPARISON BETWEEN BASS MANAGEMENT PARAMETER SELECTION TECHNIQUES FOR MULTICHANNEL AND MULTI-POSITION ROOM EQUALIZATION
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A COMPARISON BETWEEN BASS MANAGEMENT PARAMETER SELECTION TECHNIQUES FOR MULTICHANNEL AND MULTI-POSITION ROOM EQUALIZATION

机译:多通道和多位置室均衡的低音管理参数选择技术的比较

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摘要

Traditionally, room acoustic equalization is performed to improve sound quality. In a multi-channel audio system, employing simultaneous multi-position room equalization, the selection of the bass management parameter(s) between the subwoofer and a satellite is important for accurate reproduction of sound at the listening positions. Presently, many systems, such as home-theater receivers, have selectable crossover frequencies with fixed decay rates. Furthermore, the crossover frequency is selected by the user through informal listening tests. However, a choice of a single bass management parameter (viz., the crossover frequency) can limit equalization performance in the crossover region at all listening positions as shown in this paper. Such limitations arise from interactions, due to complex addition (i.e., phase and amplitude) of the subwoofer and satellite response, and manifest as large spectral deviations in the crossover region. In this paper, we present a comparison in the equalization performance resulting from the automatic optimization of a single bass management parameter (viz., the crossover frequency) with an all-parameter optimization (viz., the crossover frequency and the decay rates) using the spectral deviation measure. As expected, the results indicate that the all-parameter optimization provides a significant improvement over the standard single parameter optimization.
机译:传统上,进行房间声学均衡,以提高音质。在多通道音频系统中,采用同时进行多位置房间均衡,低音炮和卫星之间的低音管理参数(一个或多个)的选择是用于在收听位置的声音的精确再现重要。目前,许多系统,如家庭影院接收器,具有可选择交叉频率固定衰减率。此外,交叉频率是通过非正式的监听测试的用户来选择。然而,一个单一的低音管理参数的选择(即,交叉频率)可以在所有收听位置限制了交叉区域均衡性能如图本文。这样的限制,从交互出现时,由于复杂的加成(即,相位和振幅)的低音炮和卫星响应的,并且表现为在交叉区域大的光谱偏差。在本文中,我们提出在均衡性能从一个单一的低音管理参数的自动优化所得的比较(即,交叉频率)与一个全参数优化(即,交叉频率和衰减率),使用的光谱偏差量度。正如所料,结果表明,所有参数的优化提供了标准的单参数优化显著的改善。

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