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Trying to Break New Ground in Aerial Archaeology

机译:尝试在航空考古领域开创新局面

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摘要

Aerial reconnaissance continues to be a vital tool for landscape-oriented archaeological research. Although a variety of remote sensing platforms operate within the earth’s atmosphere, the majority of aerial archaeological information is still derived from oblique photographs collected during observer-directed reconnaissance flights, a prospection approach which has dominated archaeological aerial survey for the past century. The resulting highly biased imagery is generally catalogued in sub-optimal (spatial) databases, if at all, after which a small selection of images is orthorectified and interpreted. For decades, this has been the standard approach. Although many innovations, including digital cameras, inertial units, photogrammetry and computer vision algorithms, geographic(al) information systems and computing power have emerged, their potential has not yet been fully exploited in order to re-invent and highly optimise this crucial branch of landscape archaeology. The authors argue that a fundamental change is needed to transform the way aerial archaeologists approach data acquisition and image processing. By addressing the very core concepts of geographically biased aerial archaeological photographs and proposing new imaging technologies, data handling methods and processing procedures, this paper gives a personal opinion on how the methodological components of aerial archaeology, and specifically aerial archaeological photography, should evolve during the next decade if developing a more reliable record of our past is to be our central aim. In this paper, a possible practical solution is illustrated by outlining a turnkey aerial prospection system for total coverage survey together with a semi-automated back-end pipeline that takes care of photograph correction and image enhancement as well as the management and interpretative mapping of the resulting data products. In this way, the proposed system addresses one of many bias issues in archaeological research: the bias we impart to the visual record as a result of selective coverage. While the total coverage approach outlined here may not altogether eliminate survey bias, it can vastly increase the amount of useful information captured during a single reconnaissance flight while mitigating the discriminating effects of observer-based, on-the-fly target selection. Furthermore, the information contained in this paper should make it clear that with current technology it is feasible to do so. This can radically alter the basis for aerial prospection and move landscape archaeology forward, beyond the inherently biased patterns that are currently created by airborne archaeological prospection.
机译:空中侦察仍然是景观考古研究的重要工具。尽管在地球大气层中运行着各种遥感平台,但大多数航空考古信息仍来自于观察员指挥的侦察飞行中收集的倾斜照片,这种勘探方法在上个世纪一直占据着考古航空调查的主导地位。如果有的话,通常会在次优(空间)数据库中对产生的高度偏差的图像进行分类,然后对少量图像进行正射和解释。几十年来,这一直是标准方法。尽管出现了许多创新,包括数码相机,惯性单元,摄影测量和计算机视觉算法,地理信息系统和计算能力,但它们的潜力尚未得到充分利用,以重新发明和高度优化该关键领域。景观考古学。作者认为,需要根本改变,以改变航空考古学家处理数据采集和图像处理的方式。通过解决地理偏颇的航空考古照片的核心概念并提出新的成像技术,数据处理方法和处理程序,本文就航空考古尤其是航空考古摄影的方法论组成应如何演变提出了个人看法。未来十年,如果要建立一个更可靠的过去记录将是我们的主要目标。在本文中,通过概述用于总覆盖率勘测的交钥匙航空探矿系统以及负责照片校正和图像增强以及管理和解释性制图的半自动化后端管线,来说明可能的实际解决方案。结果数据产品。这样,拟议的系统解决了考古研究中的许多偏见问题之一:由于选择性覆盖,我们赋予视觉记录的偏见。尽管此处概述的总覆盖率方法可能无法完全消除调查偏见,但可以大大增加在一次侦察飞行中捕获的有用信息量,同时减轻基于观察者的实时目标选择的歧视性影响。此外,本文中包含的信息应明确表明,使用当前技术是可行的。这可以从根本上改变空中勘测的基础,并使景观考古学向前发展,超越机载考古勘查当前造成的固有偏差模式。

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