论文部分内容阅读
This paper aims to examine the architecture design of a distributed antenna based Gbps wireless communication system using the high frequency band.In order to analyze the feasibility of the higher frequency band applications,the cumulative distribution of simulated user throughput in a cellular is investigated firstly.It shows that capacity improvement can be obtained using higher operating frequency band,especially in hotspot scenarios.Secondly,the architecture of the distributed antenna system(DAS) is introduced to overcome the disadvantages of weak coverage and rank deficient for the traditional multiple-input multiple-output(MIMO) systems using higher frequency bands in line-of-sight(LOS)environments.In addition,a software-defined-radio(SDR) based Gbps wireless transmission system with scalable hardware architecture is designed and implemented.Finally,a demo of outdoor DAS coverage for high data throughput application is given.Field trials show that 1 Gbps data rate and a large coverage in outdoor environments can be achieved over 6.05 GHz.It is proved that the Gbps DAS system at a higher frequency band can be a successful model for future wireless broadband coverage in hotspot scenarios.
This paper aims to examine the architecture design of a distributed antenna based Gbps wireless communication system using the high frequency band. Order to analyze the feasibility of the higher frequency band applications, the cumulative distribution of simulated user throughput in a cellular is investigated initially. It shows that capacity improvement can be obtained using higher operating frequency band, especially in hotspot scenarios. Secondarily, the architecture of the distributed antenna system (DAS) is introduced to overcome the disadvantages of weak coverage and rank deficient for the traditional multiple-input multiple -output (MIMO) systems using higher frequency bands in line-of-sight (LOS) environments. In addition, a software-defined-radio (SDR) based Gbps wireless transmission system with scalable hardware architecture is designed and implemented. demo of outdoor DAS coverage for high data throughput application is given. Field trials show that 1 Gbps data rate and a large cov erage in outdoor environments can be achieved over 6.05 GHz .It is proved that the Gbps DAS system at a higher frequency band can be a successful model for future wireless broadband coverage in hotspot scenarios.