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首页> 外文期刊>Progress in Physical Geography >A 21st-century renaissance of kites as platforms for proximal sensing (Reprinted)
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A 21st-century renaissance of kites as platforms for proximal sensing (Reprinted)

机译:21世纪的风筝复兴作为近端感测的平台(转载)

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摘要

In 1903, WH Dines first proposed kites as platforms from which scientific measurements could be captured. This early paper was focused on the collection of atmospheric measurements but later on, kites were used widely as platforms for aerial photography - a memorable example is the aerial survey of San Francisco captured from a kite platform after the 1906 earthquake. In this paper, we begin by providing a brief overview of this early scientific and remote sensing work from kite platforms. We then discuss the resurgence of kite use within modern geography and environmental science research using examples from published work in the past 20 years. We discuss how the use of kites in these disciplines has expanded in recent years, with a renewed focus on the collection of proximal remote sensing data. Also, we present a variety of contemporary examples of kite-based sensing (including basic mapping, ecological survey, population counts and humanitarian mapping) and discuss the merits of kites compared to drone-based platforms which have captured much of the public and scientific attention as proximal sensing platforms in recent times. The beauty of kite-based proximal sensing lies in the simplicity and low-cost nature of data capture, as highlighted by Dines' 1903 paper. This simplicity supported by the wide array of modern complex data processing capabilities means that kites are now in a position to deliver fine-grained spatial data to the modern geographer. Furthermore, in today's world, there are many situations where kites can fly freely, but drones cannot.
机译:1903年,WH Dines首次提出风筝作为可以捕捉科学测量数据的平台。这份早期的论文着重于大气测量的收集,但后来风筝被广泛用作航空摄影的平台-一个令人难忘的例子是1906年地震后从风筝平台捕获的旧金山航空测量。在本文中,我们首先简要介绍风筝平台的这项早期科学和遥感工作。然后,我们使用过去20年中已发表的作品中的例子,讨论风筝在现代地理学和环境科学研究中的兴起。我们讨论了近年来风筝在这些学科中的使用情况如何扩大,并将重点重新放在近端遥感数据的收集上。此外,我们还介绍了各种基于风筝的当代感测实例(包括基本测绘,生态调查,人口计数和人道主义测绘),并讨论了与基于无人机的平台相比,风筝的优点,后者已引起了公众和科学界的广泛关注作为近端传感平台。基于风筝的近端传感之美在于数据捕获的简单性和低成本,正如Dines的1903年论文所强调的那样。各种现代复杂数据处理功能所支持的这种简单性意味着风筝现在可以将细粒度的空间数据传递给现代地理学家。此外,在当今世界上,在许多情况下风筝可以自由飞行,而无人机则不能。

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