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THE GENERATION OF PANNING LAWS FOR IRREGULAR SPEAKER ARRAYS USING HEURISTIC METHODS.

机译:采用启发式方法对不规则扬声器阵列的淘汰法律的生成。

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Currently, the ITU standard surround sound speaker arrangement is based on an irregular 5 speaker array. However, this may change to an irregular 7 speaker array (as is now the standard on computer hardware) or more in the future. The Ambisonic system, pioneered by Micheal Gerzon, among others, in the late 1960?s, is very well suited to situations where the end system speaker configuration is not fixed in terms of number or position while also offering a simple way (via energy and velocity vector analysis) of quantifying the performance of such systems. However, while the derivation of the decoders is well documented for regular speaker arrangements [1], optimising the decoders for irregular layouts is not a simple task, where optimisation requires the solution of a set of non linear simultaneous equations, complicated further by the fact that multiple solutions are possible [2]. Craven [3] extended the system to use higher order circular harmonics and presented a 4th order Ambisonic decoder (9 input channels), although the derivation method used was not presented.
机译:目前,国际电联标准环绕声扬声器布置基于不规则的5个扬声器阵列。但是,这可能会改为不规则的7个扬声器阵列(如现在的计算机硬件上的标准)或更新。由Micheal Gerzon和1960年代后期开创的Ambisonic System,非常适合在最终系统扬声器配置在数量或位置而不是提供简单的方式(通过能量和量化这些系统性能的速度矢量分析。然而,虽然解码器的推导良好地记录了正规扬声器布置[1],但是优化用于不规则布局的解码器不是一个简单的任务,其中优化需要一组非线性同时方程的解决方案,并通过事实进一步复杂多种解决方案是可能的[2]。 Craven [3]扩展了系统使用高阶循环谐波并呈现第4阶AMBISONIC解码器(9个输入通道),尽管未呈现使用的推导方法。

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