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Microphone variability and degradation: implications for monitoring programs employing autonomous recording units

机译:麦克风的可变性和退化:对采用自主录音装置的监控程序的影响

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Autonomous recording units (ARUs) are emerging as an effective tool for avian population monitoring and research. Although ARU technology is being rapidly adopted, there is a need to establish whether variation in ARU components and their degradation with use might introduce detection biases that would affect long-term monitoring and research projects. We assessed whether microphone sensitivity impacted the probability of detecting bird vocalizations by broadcasting a sequence of 12 calls toward an array of commercially available ARUs equipped with microphones of varying sensitivities under three levels (32 dBA, 42 dBA, and 50 dBA) of experimentally induced noise conditions selected to reflect the range of noise levels commonly encountered during avian surveys. We used binomial regression to examine factors influencing probability of detection for each species and used these to examine the impact of microphone sensitivity on the effective detection area (ha) for each species. Microphone sensitivity loss reduced detection probability for all species examined, but the magnitude of the effect varied between species and often interacted with distance. Microphone sensitivity loss reduced the effective detection area by an average of 25% for microphones just beyond manufacturer specifications (-5 dBV) and by an average of 66% for severely compromised microphones (-20 dBV). Microphone sensitivity loss appeared to be more problematic for low frequency calls where reduction in the effective detection area occurred most rapidly. Microphone degradation poses a source of variation in avian surveys made with ARUs that will require regular measurement of microphone sensitivity and criteria for microphone replacement to ensure scientifically reproducible results. We recommend that research and monitoring projects employing ARUs test their microphones regularly, replace microphones with declining sensitivity, and record sensitivity as a potential covariate in statistical analyses of acoustic data.
机译:自主记录单位(ARU)逐渐成为一种有效的禽类种群监测和研究工具。尽管ARU技术正在被迅速采用,但是需要确定ARU组件的变化及其使用引起的降解是否会引入检测偏差,从而影响长期的监测和研究项目。我们评估了麦克风的灵敏度是否会通过向一系列装有不同灵敏度的麦克风的市售ARU阵列广播12个呼叫序列来影响检测鸟声的可能性,这些ARU会在三种水平(32 dBA,42 dBA和50 dBA)的实验感应噪声下进行广播选择条件以反映禽类调查中通常遇到的噪声水平范围。我们使用二项式回归来检验影响每种物种检测概率的因素,并使用这些因子来检查麦克风灵敏度对每种物种有效检测面积(ha)的影响。麦克风灵敏度损失降低了所有被检查物种的检测概率,但是影响的大小在物种之间有所不同,并且通常与距离相互作用。对于刚超出制造商规格(-5 dBV)的麦克风,麦克风灵敏度损失使有效检测区域平均减少了25%,对于严重受损的麦克风(-20 dBV),麦克风的有效检测区域平均减少了66%。对于低频通话来说,麦克风灵敏度的降低似乎是一个更大的问题,在低频通话中,有效检测区域的减小最快。麦克风质量下降是ARU在禽类调查中产生变化的原因,这将需要定期测量麦克风灵敏度和更换麦克风的标准,以确保科学地再现结果。我们建议使用ARU的研究和监视项目定期测试其麦克风,以降低灵敏度的麦克风进行替换,并在声学数据的统计分析中将灵敏度记录为潜在的协变量。

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