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Exploiting avian vision with aircraft lighting to reduce bird strikes

机译:利用飞机照明开发鸟类视野减少 鸟罢工

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摘要

1. Bird–aircraft collisions (bird strikes) represent a substantial safety concern and financial burden to civil aviation world-wide. Despite an increase in the rate of damaging bird strikes, necessary steps to develop a mitigation method outside of the airport environment have not been empirically tested. 2. We assessed whether use of aircraft lighting might enhance detection of and reaction to the approach of an aircraft in flight by Canada geese Branta canadensis Linnaeus, a species responsible for a high rate of damaging bird strikes. We used a novel approach by estimating the visibility to the goose visual system of a standard radio-controlled (RC) aircraft (standard aircraft) exhibiting either a 2-Hz alternating pulse of two lights, or lights off; and another RC aircraft designed to mimic a raptor (predator model). We then exposed wing-clipped Canada geese to the approach of each aircraft and quantified behavioral responses to respective treatments. 3. Estimates of chromatic and achromatic contrasts indicated that the standard aircraft with lights on was more salient to the visual system of the Canada goose than with lights off or the predator model. 4. At individual and group levels, quicker alert responses were observed to the standard aircraft with lights compared with the lights off and predator model. Goose groups showed similar responses to approaches by the standard aircraft and the predator model, suggesting use of anti-predator behavior to avoid the aircraft. 5. Synthesis and applications. Understanding animal sensory ecology and associated behaviors can aid the development of methods exploiting certain behaviors to reduce negative human– wildlife interactions. For example, reducing the frequency of bird strikes requires the integration of wildlife management efforts within and outside of the airport environment that target species resource use and response to disturbance, with mitigation techniques focused on the aircraft. Moreover, the design of aircraft lighting systems to enhance detection and avoidance by birds is contingent upon understanding avian visual ecology and behavior. Based on spectral sensitivity in Canada geese, aircraft-mounted lights that peak in the ultraviolet ⁄ violet range (380–400 nm) are likely to produce the maximal behavioral effect.
机译:1.鸟类与飞机的碰撞(鸟类撞击)代表着重大的安全隐患,并给全世界的民航业带来了财务负担。尽管破坏性鸟击的发生率增加了,但尚未通过实验测试在机场环境之外开发缓解方法的必要步骤。 2.我们评估了使用飞机照明是否会增强对加拿大雁雁(Branta canadensis Linnaeus)飞行中的飞机进近的探测和反应,该物种对鸟类造成了严重的破坏。我们使用一种新颖的方法来估计标准无线电控制(RC)飞机(标准飞机)的鹅视觉系统的可见度,该飞机显示两个灯的2 Hz交替脉冲或熄灭;以及另一架模仿猛禽(捕食者模型)的遥控飞机。然后,我们将机翼夹着的加拿大大雁暴露于每架飞机的进场中,并量化对相应治疗的行为反应。 3.对色差和消色差对比的估计表明,开灯的标准飞机比关灯或掠食性动物模型对加拿大鹅的视觉系统更为突出。 4.在个人和团体级别,与熄灯和掠食性动物模型相比,对带灯的标准飞机观察到了更快的警报响应。鹅群对标准飞机和掠食者模型的进场表现出相似的反应,表明使用反掠食者行为来避开飞机。 5.综合与应用。了解动物的感觉生态学和相关行为可以帮助开发利用某些行为来减少人类与野生动植物之间的负面相互作用的方法。例如,减少鸟类罢工的频率需要在机场环境内外整合野生动植物管理工作,以针对物种资源的使用和对干扰的反应为目标,而缓解技术则着眼于飞机。此外,为增强鸟类的探测和回避能力而设计的飞机照明系统取决于了解鸟类的视觉生态和行为。根据加拿大鹅的光谱敏感性,在紫外线/紫色范围(380-400 nm)内达到峰值的飞机上安装的灯可能会产生最大的行为效果。

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