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Honeybee Colony Vibrational Measurements to Highlight the Brood Cycle

机译:蜜蜂菌落振动测量以突出育雏周期

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摘要

Insect pollination is of great importance to crop production worldwide and honey bees are amongst its chief facilitators. Because of the decline of managed colonies, the use of sensor technology is growing in popularity and it is of interest to develop new methods which can more accurately and less invasively assess honey bee colony status. Our approach is to use accelerometers to measure vibrations in order to provide information on colony activity and development. The accelerometers provide amplitude and frequency information which is recorded every three minutes and analysed for night time only. Vibrational data were validated by comparison to visual inspection data, particularly the brood development. We show a strong correlation between vibrational amplitude data and the brood cycle in the vicinity of the sensor. We have further explored the minimum data that is required, when frequency information is also included, to accurately predict the current point in the brood cycle. Such a technique should enable beekeepers to reduce the frequency with which visual inspections are required, reducing the stress this places on the colony and saving the beekeeper time.
机译:昆虫授粉对全球农作物生产至关重要,蜜蜂是其主要促成因素。由于受管理的殖民地的减少,传感器技术的使用正日益普及,因此有兴趣开发能够更准确,侵入性更小地评估蜜蜂殖民地状态的新方法。我们的方法是使用加速度计测量振动,以提供有关菌落活动和发育的信息。加速度计提供振幅和频率信息,该信息每三分钟记录一次,并且仅在夜间进行分析。通过与视觉检查数据(尤其是育雏发育)进行比较来验证振动数据。我们在传感器附近的振动振幅数据和育雏周期之间显示出很强的相关性。当还包括频率信息时,我们进一步探讨了所需的最小数据,以准确预测育雏周期中的当前点。这种技术应使养蜂人减少要求进行目视检查的频率,从而减轻对蜂群的压力并节省养蜂人的时间。

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