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Algorithms with low computational cost for monitoring and analysis of Colombia soundscapes

机译:用于监测和分析哥伦比亚SoundScapes的低计算成本的算法

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Studies focused on soundscape are important on biological conservation, because natural sounds are permanent and with dynamic properties, they have been linked to the welfare of the environment and the structure of the landscape. These studies usually analyze the sound in time and frequency domains, with computationally heavy and centralized algorithms. However, new technologies for real time analysis requires distributed algorithms with low computational cost. Hence, the present work evaluates the computational cost of alternative methods with potential applicability in analysis of time-varying signals. The analyzed methods are short time Fourier transform, harmonic expansion, wavelet transform (analytical and non-analytical Morlet, Mexican hat, and Paul) and orthogonal polynomial expansion (Legendre, Chebyshev, and Hermite). A comparison between these methods is presented, in which processing time, memory consumption, quality of reconstruction and grouping index are some of the features selected, resulting in a useful computational cost ranking. The methods are applied to several signals generated with different procedures, such as artificial modulated signals and natural recorded sounds (provided by The Alexander von Humboldt Institute). In conclusion, Harmonic expansion, Chebyshev expansion, Legendre expansion and Short Time Fourier Transform are the best methods with excellent performance in all features.
机译:专注于Soundscape的研究对生物保护很重要,因为天然声音是永久性的,并且具有动态性质,它们与环境的福利与环境的福利联系起来。这些研究通常在时间和频率域中分析声音,具有计算沉重和集中的算法。然而,用于实时分析的新技术需要具有低计算成本的分布式算法。因此,本作作品评估了替代方法的计算成本,在分析时变信号中具有潜在的适用性。分析的方法是短时间傅里叶变换,谐波膨胀,小波变换(分析和非分析Morlet,墨西哥帽和保罗)和正交多项式扩张(Legendre,Chebyshev和Hermite)。提出了这些方法之间的比较,其中处理时间,内存消耗,重建和分组索引的质量是选择的一些特征,从而产生有用的计算成本排名。该方法应用于用不同程序产生的几个信号,例如人造调制信号和自然记录的声音(由亚历山大州洪堡Humboldt Institute提供)。总之,谐波扩张,Chebyshev扩展,传说中扩张和短时间傅里叶变换是所有功能性能优异的最佳方法。

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