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Development of an Acoustically Adaptive Modular System for Near Real-Time Clarity-Enhancement

机译:接近实时清晰度增强的声学自适应模块化系统的开发

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This paper details the development of an acoustically adaptive modular system capable of enhancing Speech Clarity (C_(50) Clarity Index) in specific locations within a space in near real-time. The mechanical component of the system consists of quadrilateral, truncated pyramidal modules that extend or retract perpendicularly to their base. This enables said modules (1) to change in the steepness of the sides of their frustum, which changes the way incoming sound waves are deflected/reflected/diffused by the surfaces of the pyramid; and (2) to reveal or to hide the absorbent material under each module, which enables a portion of incoming sound waves to be absorbed/dissipated in a controlled manner. The present setup considers a fragmentary implementation of six modules. The behavior of these modules is determined by two steps in the computational component of the system. First, the initial position of the modules is set via a model previously generated by an evolutionary solver, which identifies the optimal extension/retraction extent of each of the six modules to select for individual configurations that collectively ascertain the highest clarity in said specific locations. Second, a simulated receiver at the location in question measures the actual clarity attained and updates the model's database with respect to the configuration's corresponding clarity-value. Since the nature of acoustics is not exact, if the attained measurement is lower than the model's prediction for said location under the best module-configuration, but higher than the second-best configuration for the same location, the modules remain at the initial configuration. However, if the attained values are lower, this step reconfigures the modules to instantiate the second —or third-, fourth-, etc.—best configuration and updates the model's database with respect to the new optimal module-configuration value. These steps repeat each time the user moves to another specific location. The objective of the system is to contribute to the intelligent and intuitive Speech Clarity regulation of an inhabited space. This contributes to its Interior Environmental Quality, which promotes well-being and quality of life.
机译:本文详细介绍了一种声学自适应模块化系统的开发,该系统能够近乎实时地增强空间中特定位置的语音清晰度(C_(50)清晰度指数)。系统的机械组件由垂直于其底部延伸或缩回的四边形截头锥体模块组成。这使得所述模块(1)能够改变其截头锥体侧面的陡度,从而改变进入的声波被金字塔的表面偏转/反射/扩散的方式。 (2)在每个模块下方露出或隐藏吸收性材料,这使得一部分进入的声波能够以受控的方式被吸收/消散。本设置考虑了六个模块的部分实现。这些模块的行为由系统计算组件中的两个步骤确定。首先,通过事先由进化求解器生成的模型来设置模块的初始位置,该模型确定六个模块中的每个模块的最佳延伸/收缩程度,以选择在所述特定位置共同确定最高清晰度的各个配置。其次,在所讨论位置的模拟接收器会测量获得的实际清晰度,并根据配置的相应清晰度值更新模型的数据库。由于声学特性并不精确,因此,如果在最佳模块配置下获得的测量值低于该位置的模型预测,但在相同位置下高于第二最佳配置,则模块将保持初始配置。但是,如果获得的值较低,则此步骤将重新配置模块以实例化第二个(或第三个,第四个等)最佳配置,并根据新的最佳模块配置值更新模型的数据库。每次用户移动到另一个特定位置时,都会重复这些步骤。该系统的目的是为居住空间的智能和直观的语音清晰度调节做出贡献。这有助于提高其室内环境质量,从而促进人们的福祉和生活质量。

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