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Tag: modulation depth

8- Analysis of Wind Turbine Acoustic Signals in Terms of Detecting Amplitude Modulation and Frequency Deviation

The operation of a wind turbine is characterized by the fluctuation in the emitted noise related to the rotational speed of the turbine – the periodical movement of the blade in variable atmospheric conditions (amplitude modulation, AM) as well as the movement towards and away from the observation point (Doppler effect – frequency modulation, FM). Amplitude modulation is one of the factors that contributes to the increased nuisance caused by wind turbines. The phenomenon of amplitude modulation has been subject of numerous scientific studies. However, the problem remains of determining the depth of AM’s impact on the increase in annoyance of wind turbine noise. The results of this research showing the characteristic features and depth of AM in different frequency bands. In addition, it has been shown that, in the recorded results, modulation (deviation) of the frequency of the modulated band occurs simultaneously with amplitude modulation. Cyclical changes in the density distribution of spectra in time and space have been demonstrated. Examples have been presented show that defined metrics to determine the variability of modulation frequency depending on the observer’s position relative to the signal source. One such parameter that can demonstrate objective frequency offset is the popular jitter indicator.

3- Experimental Research of the AMWG Algorithm for Assessing Amplitude Modulation in Wind Turbine Noise

The operation of a wind turbine (WT) is characterized by fluctuations in sound pressure amplitude associated with the passage of the propeller blade through the tower. Amplitude Modulation (AM) is one of the factors that contributes to the increased annoyance of wind turbine noise. The phenomenon of AM is currently the subject of research in many research centers around the world in the context of a parametric assessment of its impact on annoyance. Despite the development of many methods to measure the AM of a WT noise, there is no commonly accepted method. This paper discusses the most crucial factors that stimulate the phenomenon of AM and the implementation in the MATLAB environment of the algorithm to find the frequency and depth of AM proposed by the Amplitude Modulation Working Group (AMWG). The results of verification of the developed algorithm as well as the measurement results of the frequency and depth of modulation for two measurement samples of a 2 MW wind turbine are presented.