星载激光雷达粒子后向散射系数bbp评估验证方案

Sayoob Vadakke-Chanat, C. Jamet
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引用次数: 1

摘要

导语:来自CALIOP等传感器的星载激光雷达测量最近被用于在全球范围内检索海洋上层的颗粒后向散射系数bbp,这些观测结果在海洋颜色与深度分辨观测的未来具有强大的潜力,从而补充了传统的海洋颜色遥感观测,并克服了其一些局限性。由于CALIOP最初不是为海洋应用而设计的,因此评估和验证用于海洋应用的星载激光雷达测量至关重要。CALIOP的验证练习很少发表,每个练习都设计了自己的验证协议。我们在这里提出了一个客观的验证协议,可以应用于任何当前和未来的海洋应用的星载激光雷达。方法:我们首先评估了已发表的CALIOP bbp产品验证方案。在我们的研究中,通过使用BGC-Argo浮标的原位测量,评估了两种已发表的验证方案。这些研究要么限于白天或夜间,要么限于使用的年份或地理范围。我们将比对工作扩展到白天和夜间观测,并将其扩展到2010-2017年全球范围。我们通过灵敏度研究研究了原位测量与CALIOP足迹之间的时间和距离差异的影响。测试了距离(从9公里到50公里)和时间(从9小时到16天)差异的20种组合。结果与讨论:统计评分用于客观地选择最佳的最佳时间窗口,从而在配对次数和CALIOP产品的低错误方面达到最佳折衷。我们建议使用24 h/9 km或24 h/15 km窗口对星载激光雷达海洋产品进行评估。
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Validation protocol for the evaluation of space-borne lidar particulate back-scattering coefficient bbp
Introduction: Space-borne lidar measurements from sensors such as CALIOP were recently used to retrieve the particulate back-scattering coefficient, bbp, in the upper ocean layers at a global scale and those observations have a strong potential for the future of ocean color with depth-resolved observations thereby complementing the conventional ocean color remote sensed observations as well as overcoming for some of its limitations. It is critical to evaluate and validate the space-borne lidar measurements for ocean applications as CALIOP was not originally designed for ocean applications. Few validation exercises of CALIOP were published and each exercise designed its own validation protocol. We propose here an objective validation protocol that could be applied to any current and future space-borne lidars for ocean applications.Methods: We, first, evaluated published validation protocols for CALIOP bbp product. Two published validation schemes were evaluated in our study, by using in-situ measurements from the BGC-Argo floats. These studies were either limited to day- or nighttime, or by the years used or by the geographical extent. We extended the match-up exercise to day-and nighttime observations and for the period 2010–2017 globally. We studied the impact of the time and distance differences between the in-situ measurements and the CALIOP footprint through a sensitivities study. Twenty combinations of distance (from 9-km to 50-km) and time (from 9 h to 16 days) differences were tested.Results & Discussion: A statistical score was used to objectively selecting the best optimal timedistance windows, leading to the best compromise in term of number of matchups and low errors in the CALIOP product. We propose to use either a 24 h/9 km or 24 h/15 km window for the evaluation of space-borne lidar oceanic products.
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