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线性分布式定向阵列波束空间覆盖面积分析
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作者 段柏宇 杨健 +3 位作者 陈聪 郭文博 李彤 邵士海 《西安电子科技大学学报》 EI CAS CSCD 北大核心 2023年第5期32-43,共12页
相控阵天线因具有高增益、高可靠性、波束指向可控等优点,已广泛应用于雷达、通信等领域。考虑到阵列天线体积、部署地形、设备功耗等因素的限制,单一相控阵天线在某些复杂场景下难以满足需求。特别是在天地间通信、侦察及干扰等场景下... 相控阵天线因具有高增益、高可靠性、波束指向可控等优点,已广泛应用于雷达、通信等领域。考虑到阵列天线体积、部署地形、设备功耗等因素的限制,单一相控阵天线在某些复杂场景下难以满足需求。特别是在天地间通信、侦察及干扰等场景下,需要多部相控阵天线分布式部署,进行协同波束合成,以获得与单部阵列天线相比更高的功率增益。分布式定向阵列利用多个分布式阵列节点形成虚拟天线阵列,通过调整各阵元的相位收发同一信号,合成定向波束。针对分布式定向阵列合成波束在特定高度平面上增益覆盖面积的计算问题,利用阵列天线波束合成原理、方向图乘积定理以及空间解析几何,提出一种理论解析计算方法。建模分析及仿真结果表明,线性分布式定向阵列波束合成的增益覆盖面积,包括主瓣及栅瓣波束增益覆盖面积,与分布式阵列的俯仰角、目标平面高度、信号载频以及分布式节点个数强相关,但与分布式节点间距关联较弱;且所提方法的解析值与计算机仿真值相符,可为远距离大功率分布式阵列的工程实现提供理论参考。 展开更多
关键词 波束合成 分布式阵列 空间解析几何 覆盖面积分析 面积测算
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Using Landsat images to monitor changes in the snow-covered area of selected glaciers in northern Pakistan 被引量:4
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作者 Chaman GUL KANG Shi-chang +3 位作者 Badar GHAURI Mateeul HAQ Sher MUHAMMAD Shaukat ALI 《Journal of Mountain Science》 SCIE CSCD 2017年第10期2013-2027,共15页
Landsat satellite images were used to map and monitor the snow-covered areas of four glaciers with different aspects(Passu: 36.473°N, 74.766°E;Momhil: 36.394°N, 75.085°E; Trivor: 36.249°N,74.9... Landsat satellite images were used to map and monitor the snow-covered areas of four glaciers with different aspects(Passu: 36.473°N, 74.766°E;Momhil: 36.394°N, 75.085°E; Trivor: 36.249°N,74.968°E; and Kunyang: 36.083°N, 75.288°E) in the upper Indus basin, northern Pakistan, from 1990-2014. The snow-covered areas of the selected glaciers were identified and classified using supervised and rule-based image analysis techniques in three different seasons. Accuracy assessment of the classified images indicated that the supervised classification technique performed slightly better than the rule-based technique. Snow-covered areas on the selected glaciers were generally reduced during the study period but at different rates. Glaciers reached maximum areal snow coverage in winter and premonsoon seasons and minimum areal snow coverage in monsoon seasons, with the lowest snow-covered area occurring in August and September. The snowcovered area on Passu glacier decreased by 24.50%,3.15% and 11.25% in the pre-monsoon, monsoon and post-monsoon seasons, respectively. Similarly, the other three glaciers showed notable decreases in snow-covered area during the pre-and post-monsoon seasons; however, no clear changes were observed during monsoon seasons. During pre-monsoon seasons, the eastward-facing glacier lost comparatively more snow-covered area than the westward-facing glacier. The average seasonal glacier surface temperature calculated from the Landsat thermal band showed negative correlations of-0.67,-0.89,-0.75 and-0.77 with the average seasonal snowcovered areas of the Passu, Momhil, Trivor and Kunyang glaciers, respectively, during pre-monsoon seasons. Similarly, the air temperature collected from a nearby meteorological station showed an increasing trend, indicating that the snow-covered area reduction in the region was largely due to climate warming. 展开更多
关键词 Snow-covered area Glacier Global warming Classification technique Northern Pakistan
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