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Exploring underlying mechanisms for human response to wind turbine noise

机译:探索人类响应风力涡轮机噪声的基础机制

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This papers investigates underlying mechanisms for human response to wind turbine noise by studying the effects in terms of source detection, recognition and annoyance with and without road traffic noise. Recordings from a single 1.8-MW wind turbine have been mixed with samples of highway noise and of local roads at different signal-to-noise ratios. These fragments have been presented to 50 normal-hearing participants in a two-stage experiment. First, annoyance and source recognition have been evaluated during quiet leisure activities in background noise, with people unaware of the actual purpose. Secondly, wind turbine noise had to be identified in a paired comparison test. The second focused identification task indicates that wind turbine noise detectability in background noise at different signal-to-noise ratios is clearly different in highway noise than in noise from local roads. Furthermore, individuals with higher detection scores are also more capable to recognize wind turbine noise in the non-focused listening experiment, and better recognition could be linked with higher annoyance reports. These findings suggest that higher level appraisal, emotional and/or cognitive processes contribute to reported wind turbine noise annoyance, but further research is needed to consolidate this hypothesis.
机译:本文通过在源检测,识别和烦恼方面,对风力涡轮机噪声进行潜在机制,通过源检测,识别和烦恼,无论有道路交通噪音。来自单个1.8 MW风力涡轮机的录音已与公路噪声样本和不同信噪比的当地道路混合。已经在两阶段实验中提出了这些碎片到50名正常听力参与者。首先,在背景噪音的安静休闲活动中,令人烦恼和来源认可,人们没有意识到实际目的。其次,必须在配对的比较测试中识别风力涡轮机噪声。第二聚焦识别任务表明,不同信噪比的背景噪声中的风力涡轮机噪声可检测性在公路噪声中明显不同于当地道路的噪音。此外,具有较高检测分数的个体也更能识别不集中的听力实验中的风力涡轮机噪声,并且更好的识别可以与较高的烦恼报告相关联。这些调查结果表明,较高的级别评估,情绪和/或认知过程有助于报告的风力涡轮机噪音烦恼,但需要进一步研究来巩固这一假设。

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