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一个分阶段天线阵列系统的设计和实施,用于LEO卫星通信
Cezar-Ion Adomnitei1,2, Cezar-Eduard Lesanu1, Adrian Done1
1Department of Computers, Electronics and Automation, Stefan cel Mare University of Suceava, 720229 Suceava, Romania.
Sensors (Basel, Switzerland)
|March 28, 2024
概括
这项研究引入了一种用于低地球轨道 (LEO) 卫星通信的新型分相天线阵列,增强偏远地区物联网 (IoT) 设备的连接性. 该系统展示了对辐射叶的精确控制,改善了整体链路性能.
科学领域:
- 卫星通信工程 卫星通信工程
- 天线阵列设计设计
- 无线网络无线网络.
背景情况:
- 低地球轨道 (LEO) 卫星星座为扩大全球连接提供了潜力.
- 物联网 (IoT) 需要强大的通信基础设施,特别是在偏远地区.
- 现有的陆地网络在覆盖孤立的地理区域方面面临限制.
研究的目的:
- 为了提高低地轨道 (LEO) 卫星通信性能,用于物联网 (IoT) 应用.
- 引入和验证用于LEO卫星接收的新型分相天线阵列系统.
- 为了证明精确控制主辐射叶的方向性.
主要方法:
- 实现一个四元,四分之三的波长分相天线阵列.
- 使用渐进的相位转移来引导天线的主要辐射叶.
- 进行数值分析和实验测量以评估性能.
主要成果:
- 实现了对主要辐射叶方向的有效控制.
- 数字分析表明,在42°的高度上,最大增益约为12dBi.
- 实验结果显示,半功率光束宽度 (HPBW) 在线平面内在76°和87°之间,最大前后比为14.5dB.
结论:
- 新型分相天线阵列系统已成功实现并优化为LEO IoT卫星接收.
- 该系统具有高性能,精确的辐射叶控制,证实了其可行性.
- 这项技术可以通过LEO卫星网络显著改善偏远地区的连接.
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