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Satellite‐Beacon Ionospheric‐Scintillation Global Model of the Upper Atmosphere (SIGMA) III: Scintillation Simulation Using A Physics‐Based Plasma Model

机译:卫星 - 信标电离层 - 闪烁的上层大气(Sigma)III的全局模型:使用基于物理基质模型的闪烁模拟

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Abstract >Electromagnetic signals including Global Navigation Satellite Systems (GNSS) signals often experience fluctuations due to ionospheric density structures termed as scintillation. Physical processes contributing to these structures in polar cap regions likely include gradient‐drift instability. GNSS scintillations are frequently observed at high latitudes and are potentially useful diagnostics of how energy from the transient forcing in the cusp or polar cap region cascades, via instabilities, to small scales. This work interfaces a physics‐based plasma model (Geospace Environment Model of Ion‐Neutral Interactions) to a radio wave propagation model (Satellite‐beacon Ionospheric‐scintillation Global Model of the upper Atmosphere) to explore this cascade. In this work, Geospace Environment Model of Ion‐Neutral Interactions‐Satellite‐beacon Ionospheric‐scintillation Global Model of the upper Atmosphere is used to simulate signal propagation through gradient‐drift instability over Resolute Bay for comparison with GNSS observations during a geomagnetic storm presented earlier in this series of papers. Our spectral and multiscale analyses show close agreement for simulated and observed data, suggesting the use of our physics‐based platform for understanding and predicting the effects of ionospheric instabilities on navigation and communication. </abstract> </span> <span class="z_kbtn z_kbtnclass hoverxs" style="display: none;">展开▼</span> </div> <div class="translation abstracttxt"> <span class="zhankaihshouqi fivelineshidden" id="abstract"> <span>机译:</span><Abstract Type =“main”XML:Lang =“en”XML:ID =“Grl58887-Abs-Abs-0001”> <标题类型=“main”>抽象</ title> >电磁信号,包括全球导航卫星系统( GNSS)信号通常由于电离层密度结构而被称为闪烁的波动。在极帽区域中贡献这些结构的物理过程可能包括梯度漂移不稳定性。 GNSS闪烁经常在高纬度下观察到,并且可能是如何有用的诊断如何通过瞬态强制在尖端或极性帽区级联,通过稳定性到小尺度。这项工作界面接口基于物理的等离子体模型(离子中性相互作用的地球空间环境模型)到无线电波传播模型(卫星 - 信标电离层 - 闪烁全球式的上大气层),以探索这一级联。在这项工作中,离子中性相互作用的地球空间环境模型 - 卫星 - 信标电离层 - 闪烁的上层大气层的全局模型用于通过梯度漂移不稳定性通过腐蚀性浴室来模拟信号传播,以便与早期出现的地磁风暴期间的GNSS观测比较在这一系列论文中。我们的光谱和多尺度分析显示模拟和观察数据的密切协议,建议使用我们的物理学平台,以了解和预测电离层稳定性对导航和通信的影响。</ p> </摘要> </span> <span class="z_kbtn z_kbtnclass hoverxs" style="display: none;">展开▼</span> </div> </div> <div class="record"> <h2 class="all_title" id="enpatent33" >著录项</h2> <ul> <li> <span class="lefttit">来源</span> <div style="width: 86%;vertical-align: text-top;display: inline-block;"> <a href='/journal-foreign-23539/'>《Geophysical Research Letters》</a> <b style="margin: 0 2px;">|</b><span>2019年第9期</span><b style="margin: 0 2px;">|</b><span>共9页</span> </div> </li> <li> <div class="author"> <span class="lefttit">作者</span> <p id="fAuthorthree" class="threelineshidden zhankaihshouqi"> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Deshpande Kshitija Bharat&option=202" target="_blank" rel="nofollow">Deshpande Kshitija Bharat;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Zettergren Matthew David&option=202" target="_blank" rel="nofollow">Zettergren Matthew David;</a> </p> <span class="z_kbtnclass z_kbtnclassall hoverxs" id="zkzz" style="display: none;">展开▼</span> </div> </li> <li> <div style="display: flex;"> <span class="lefttit">作者单位</span> <div style="position: relative;margin-left: 3px;max-width: 639px;"> <div class="threelineshidden zhankaihshouqi" id="fOrgthree"> <p>Department of Physical Sciences and Center for Space and Atmospheric Research (CSAR)Embry‐Riddle Aeronautical UniversityDaytona Beach FL USA;</p> <p>Department of Physical Sciences and Center for Space and Atmospheric Research (CSAR)Embry‐Riddle Aeronautical UniversityDaytona Beach FL USA;</p> </div> <span class="z_kbtnclass z_kbtnclassall hoverxs" id="zhdw" style="display: none;">展开▼</span> </div> </div> </li> <li > <span class="lefttit">收录信息</span> <span style="width: 86%;vertical-align: text-top;display: inline-block;"></span> </li> <li> <span class="lefttit">原文格式</span> <span>PDF</span> </li> <li> <span class="lefttit">正文语种</span> <span>eng</span> </li> <li> <span class="lefttit">中图分类</span> <span><a href="https://www.zhangqiaokeyan.com/clc/163.html" title="地球物理学">地球物理学;</a></span> </li> <li class="antistop"> <span class="lefttit">关键词</span> <p style="width: 86%;vertical-align: text-top;"> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=ionosphere&option=203" rel="nofollow">ionosphere;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=irregularities&option=203" rel="nofollow">irregularities;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=plasma instabilities&option=203" rel="nofollow">plasma instabilities;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=propagation&option=203" rel="nofollow">propagation;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=gradient drift instability&option=203" rel="nofollow">gradient drift instability;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=polar cap patch&option=203" rel="nofollow">polar cap patch;</a> </p> <div class="translation"> 机译:电离层;违规;等离子体稳定性;传播;梯度漂移不稳定;极帽补丁; 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satellite signals, and for providing the ionospheric scintillation prediction data for a user at a user location, computer program product, and network based application</a> <b>[P]</b> . <span> 外国专利: <!-- --> BR112017004344A2 </span> <span> . 2017-12-05</span> </div> <p class="zwjiyix translation" style="max-width: initial;height: auto;word-break: break-all;white-space: initial;text-overflow: initial;overflow: initial;"> <span>机译:产生电离层闪烁预测数据的方法,从gnss卫星信号产生电离层闪烁预测数据,以及在用户位置为用户提供电离层闪烁预测数据的系统,计算机程序产品以及基于网络的应用 </span> </p> </li> <li> <div> <b>4. </b><a class="enjiyixqcontent" href="/patent-detail/06130499919878.html">GLOBAL NAVIGATION SATELLITE SYSTEM REAL-TIME GLOBAL IONOSPHERE TOTAL ELECTRON CONTENT MODELING METHOD</a> <b>[P]</b> . <span> 外国专利: <!-- --> WO2021082191A1 </span> <span> . 2021-05-06</span> </div> <p class="zwjiyix translation" style="max-width: initial;height: auto;word-break: break-all;white-space: initial;text-overflow: initial;overflow: initial;"> 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