Collaborative Research: Very-Near-Ground Wireless Channel Modeling: Theory and Practice
Collaborative Research: Very-Near-Ground Wireless Channel Modeling: Theory and Practice
批准号:
1101868
负责人:
Kamal Sarabandi
金额:
$21.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-09-01 至 2015-08-31
中文摘要
这项研究的目的是建立无线电波传播的信道模型,天线安装在非常接近地面(H+)、地面(H0)和/或被冰、水、雪或其他材料覆盖(H-)的地方。该方法是通过在电波暗室和真实环境中进行的模拟、分析和测量来评估甚近地天线信道的时间、空间和频谱统计特性。智能优点:所进行的研究包括:1)开发基于物理的H+/H0/H-无线电信道在广泛频率范围内的传播模型,以满足各种应用;2)探索发射机和接收机天线高度、频率、带宽、粗糙表面材料和粗糙度对信道模型的影响;3)调查近地面信道频散及其对到达方向和到达时间估计的影响;4)研究地面粗糙度和带宽对视线和非视距场景中幅度、相位和到达时间统计的影响,以及空间相关性及其对多输入多输出系统的影响;5)针对H+/H0/H-场景设计合适的天线单元和天线阵。影响:本研究将使无线传感器网络和定位系统的优化设计能够应用于自主避碰、多机器人协作、安全服务(消防)和地下勘探等应用,这将有利于国民经济和安全。该项目将研究与教育和外联活动结合起来。理论工作通过实验室活动和测量过程的实际应用得到了验证。将为本科生和学校教师提供实践经验。未被充分代表的少数族裔学生将被招入工程教育。
英文摘要
The objective of this research is to develop channel models for radio wave propagation with antennas installed very near ground (H+), at ground level (H0), and/or covered by ice, water, snow, or other materials (H-). The approach is to evaluate the temporal, spatial and spectral statistical characteristics of very near ground antenna channels through simulations, analysis, and measurements conducted in an anechoic chamber and in real environments. Intellectual Merit: The conducted research includes: 1) development of physics-based propagation models for H+/H0/H- radio channels over a wide range of frequencies to address a variety of applications; 2) exploration of the effect of transmitter and receiver antenna heights, frequency, bandwidth, rough surface materials, and the degree of roughness on the channel model; 3) investigation of near-ground channel dispersion and its impact on direction-of-arrival and time-of-arrival estimation; 4) study of the effect of ground roughness and bandwidth on amplitude, phase, and time-of-arrival statistics in both line-of-sight and non-line-of-sight scenarios as well as spatial correlation and its effect on multi-input-multi-output systems; and 5) design of proper antenna elements and antenna arrays for H+/H0/H- situations.Broader Impacts: This research should enable optimal design of wireless sensor networks and localization systems for applications such as autonomous collision avoidance, multi-robot collaboration, safety services (firefighting), and under-ground exploration, which would benefit the national economy and security. This project integrates research with education and outreach activities. The theoretical work is demonstrated by practical applications through laboratory activities and measurement processes. Hands-on experiences will be provided for undergraduate students and school teachers. Underrepresented minority students will be recruited into engineering education.
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会议论文
Advanced Physics-Based Propagation Models for Channel Characterization in a Wireless Network
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批准号:9979376
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项目类别:Standard Grant
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资助金额:$25.0万
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财政年份:1999
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负责人:Kamal Sarabandi
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依托单位:
国内基金
海外基金
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