回程通信网络中微波射频频段自由空间路径损耗模型研究

A. A. Minhas, Ahmed Qaddus
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引用次数: 0

摘要

近年来,微波无线电已成为枢纽操作中心与远程实体之间建立回程通信的关键技术来源。特别是在发生自然灾害的情况下,回程通信必须在较短的操作间隔内迅速建立。因此,这使得微波无线电成为在任何自然灾害或人为悲剧中采用的最佳适应性解决方案。此外,微波无线电可以为点对点(PTP)和点对多点(PTMP)部署模式下的语音、视频和数据流应用提供高数据速率带宽。因此,微波无线电成为部署高带宽消耗应用的合适解决方案。本研究作者根据应用需求和部署场景,提出使用1 GHz至10 GHz不同的微波射频频段和抛物面天线。微波网络数据吞出率在不同的射频频段上是不同的,而且自由空间路径损耗特性、衰减裕度、接收信号强度指标(RSSI)、误码率(BER)和信噪比(SNR)也会随着发射和接收天线之间跳距长度的增加和减少而受到影响。
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Investigation of Free Space Path Loss Modelfor Microwave Radio Frequency Bands in Backhaul Communication Networks
In the recent times Microwave Radios have been a key technological source for establishing backhaul communication between the Hub Operations Centre to remote entities. Especially in the event of natural catastrophes where backhaul communication has to be established swiftly in less operational interval. Therefore this makes Microwave Radios to be the best adaptive solution to adopt in any natural calamity or manmade tragedy. Further Microwave radios can offer high data rate bandwidth for streaming of voice, video and data applications in Point to Point (PTP) and Point to Multi Point (PTMP) Mode of deployment. Thus which makes microwave radios an appropriate solution for deployment of High Bandwidth consumption applications. Authors in this research have proposed the use of different Microwave Radio Frequency Bands from 1 GHz to 10 GHz and Parabolic Dish antennas as per requirement of the application and scenario of deployment. Microwave net data throughput rates vary at different Radio Frequency Bands, Plus the Free Space Path Loss characteristics, Fade Margin, Receive Signal Strength Indicator (RSSI), Bit Error Rates (BER) and Signal to Noise Ratio (SNR) are also affected with increase and decrease of hop distance length between the transmitting and receiving antennas.
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