Schlecht Sebastian J, Habets Emanuël A P
International Audio Laboratories Erlangen, 91058 Erlangen, Germany.
J Acoust Soc Am. 2016 Jul;140(1):601. doi: 10.1121/1.4955285.
Various time-varying algorithms have been applied in multichannel sound systems to improve the system's stability and, among these, frequency shifting has been demonstrated to reach the maximum stability improvement achievable by time-variation in general. However, the modulation artifacts have been found to diminish the gain improvement unusable for a higher number of channels and high-quality applications such as music reproduction. This paper proposes alternatively time-varying mixing matrices, which is an efficient algorithm corresponding to symmetric up and down frequency shifting. It is shown with a statistical approach that time-varying mixing matrices can as well achieve maximum stability improvement for a higher number of channels. A listening test demonstrates the improved quality of time-varying mixing matrices over frequency shifting.
各种时变算法已应用于多声道声音系统,以提高系统的稳定性,其中,频率偏移已被证明通常能通过时变实现最大的稳定性提升。然而,已发现调制伪像会降低增益提升,对于更多声道和诸如音乐重放等高质量应用而言,这种增益提升变得不可用。本文提出了时变混合矩阵,这是一种与对称上下频率偏移相对应的有效算法。通过统计方法表明,时变混合矩阵对于更多声道同样可以实现最大的稳定性提升。一项听力测试证明了时变混合矩阵相对于频率偏移而言,质量得到了改善。