Initial Results From the First Field Expedition of UAPx to Study Unidentified Anomalous Phenomena

M. Szydagis, K. H. Knuth, B. W. Kugielsky, C. Levy, J. D. McGowan, M. D. Phelan, G. P. Voorhis Jr
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Abstract

In July 2021, faculty from the UAlbany Department of Physics participated in a week-long field expedition with the organization UAPx to collect data on UAPs in Avalon, California, located on Catalina Island, and nearby. This paper reviews both the hardware and software techniques which this collaboration employed, and contains a frank discussion of the successes and failures, with a section about how to apply lessons learned to future expeditions. Both observable-light and infrared cameras were deployed, as well as sensors for other (non-EM) emissions. A pixel-subtraction method was augmented with other similarly simple methods to provide initial identification of objects in the sky and/or the sea crossing the cameras' fields of view. The first results will be presented based upon approximately one hour in total of triggered visible/night-vision-mode video and over 600 hours of untriggered (far) IR video recorded, as well as 55 hours of (background) radiation measurements. Following multiple explanatory resolutions of several ambiguities that were potentially anomalous at first, we focus on the primary remaining ambiguity captured at approximately 4am Pacific Time on Friday, July 16: a dark spot in the visible/near-IR camera possibly coincident with ionizing radiation that has thus far resisted a prosaic explanation. We conclude with quantitative suggestions for serious researchers in this still-nascent field of hard-science-based UAP studies, with an ultimate goal of identifying UAPs without confirmation bias toward either mundane or speculative conclusions.
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UAPx首次野外考察研究未确定异常现象的初步结果
2021年7月,来自UAlbany物理系的教师与UAPx组织一起参加了为期一周的实地考察,以收集位于卡塔利娜岛及其附近的加利福尼亚州阿瓦隆的UAPx数据。本文回顾了这次合作所使用的硬件和软件技术,并对成功和失败进行了坦率的讨论,并介绍了如何将经验教训应用到未来的探险中。部署了可观测光和红外摄像机,以及其他(非电磁)发射传感器。将像素减法与其他类似的简单方法相结合,对穿过相机视场的天空和/或海洋中的物体进行初步识别。第一批结果将基于大约一小时的触发可见光/夜视模式视频和超过600小时的未触发(远)红外视频记录,以及55小时的(背景)辐射测量。在对最初可能异常的几个模糊点进行多重解释后,我们将重点放在太平洋时间7月16日星期五凌晨4点左右捕获的主要模糊点上:可见光/近红外相机上的一个黑点,可能与电离辐射一致,迄今为止还没有一个平淡的解释。最后,我们为这个仍处于萌芽阶段的以硬科学为基础的UAP研究领域的严肃研究人员提供了定量建议,最终目标是在没有世俗或推测结论的确认偏见的情况下识别UAP。
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