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Lightning locating systems: Insights on characteristics and validation techniques

机译:闪电定位系统:特性和验证技术见解

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AbstractGround-based and satellite-based lightning locating systems are the most common ways to detect and geolocate lightning. Depending upon the frequency range of operation, LLSs may report a variety of processes and characteristics associated with lightning flashes including channel formation, leader pulses, cloud-to-ground return strokes, M-components, ICC pulses, cloud lightning pulses, location, duration, peak current, peak radiated power and energy, and full spatial extent of channels. Lightning data from different types of LLSs often provide complementary information about thunderstorms. For all the applications of lightning data, it is critical to understand the information that is provided by various lightning locating systems in order to interpret it correctly and make the best use of it. In this study, we summarize the various methods to geolocate lightning, both ground-based and satellite-based, and discuss the characteristics of lightning data available from various sources. The performance characteristics of lightning locating systems are determined by their ability to geolocate lightning events accurately with high detection efficiency and with low false detections and report various features of lightning correctly. Different methods or a combination of methods may be used to validate the performance characteristics of different types of lightning locating systems. We examine these methods and their applicability in validating the performance characteristics of different LLS types.
机译:摘要基于地面和基于卫星的闪电定位系统是检测和定位闪电的最常见方法。根据工作频率范围,LLS可能会报告与闪电相关的各种过程和特征,包括通道形成,前导脉冲,云对地回程,M分量,ICC脉冲,云闪电,位置,持续时间,峰值电流,峰值辐射功率和能量,以及通道的整个空间范围。来自不同类型的LLS的闪电数据通常会提供有关雷暴的补充信息。对于雷电数据的所有应用,至关重要的是要了解各种雷电定位系统提供的信息,以便正确地解释并充分利用它。在这项研究中,我们总结了各种对闪电进行地理定位的方法,包括地面和人造卫星,并讨论了可从各种来源获得的闪电数据的特征。闪电定位系统的性能特征取决于它们以较高的检测效率和较低的错误检测准确地对闪电事件进行地理定位的能力,并正确报告闪电的各种特征。可以使用不同的方法或方法的组合来验证不同类型的闪电定位系统的性能特征。我们检查了这些方法及其在验证不同LLS类型的性能特征中的适用性。

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