In this paper we discuss the motivation, design, and analysis of ambisonic decoders for systems where the vertical order is less than the horizontal order, known as mixed-order Ambisonic systems. This can be due to the use of microphone arrays that emphasize horizontal spatial resolution or speaker arrays that provide sparser coverage vertically. First, we review Ambisonic reproduction criteria, as defined by Gerzon, and summarize recent results on the relative perceptual importance of the various criteria. Then we show that using full-order decoders with mixed-order program material results in poorer performance than with a properly designed mixed-order decoder. We then introduce a new implementation of a decoder optimizer that draws upon techniques from machine learning for quick and robust convergence, discuss the construction of the objective function, and apply it to the problem of designing two-band decoders for mixed-order signal sets and non-uniform loudspeaker layouts. Results of informal listening tests are summarized and future directions discussed.
翻译:在本文中,我们讨论了垂直顺序低于水平顺序的系统(称为混合顺序的Ambisonic系统)的氨离心器的动力、设计和分析。这可以归功于使用麦克风阵列,这些麦克风阵列强调横向空间分辨率或声器阵列,垂直覆盖较稀小。首先,我们审查Gerzon界定的氨离心机复制标准,并总结关于各种标准相对概念重要性的最新结果。然后,我们表明,使用全序离心机和混合顺序程序材料的功能比设计得适当的混合顺序解心器差。然后,我们引入一个新的拆心机优化器,利用机器学习的技术进行快速和稳健的融合,讨论客观功能的构造,并将其应用于设计两波段离心器用于混合顺序信号装置和非单声器布局的问题。非正式监听测试的结果得到了总结,并讨论了今后的方向。