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Network architecture model of infrastructure based mobile cognitive radio system in licensed band with blocking probability assessment

机译:基于网络架构基于网络架构模型的概率评估许可乐队中的移动认知无线电系统

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Performance of Cognitive Radio (CR) is affected by the estimation of availability of vacant channels based on traffic distribution observation of licensed users. Telecom traffic prediction at a particular instant depends on thorough knowledge of day of the week, hour of the day and instant of the hour. Distributed cooperative spectrum sensing is infrastructure based in which the sensor nodes themselves takes several iteration to arrive at decision about vacant channels where CR nodes have no previous knowledge about each channel behaviour. The proposed network is also architecture based but channel availability decision is taken by a separate control unit called Cognitive Radio-Base Station Controller (CR-BSC). In this architecture, SU functions as probe for occupied primary and secondary channels available in the environment and transmit to Cognitive Radio-Base Station (CR-BS) for periodic updation of channel status database. Frequency of probing and transmission to CR-BS consumes good quantum of energy of SU and needs to be scheduled properly for optimum SU battery life. On placement of SU call, minutewise prediction is done for next few minutes for available set of channels and its blocking probability when both secondary user traffic together with primary user traffic are present in the system. The results obtained have been validated through live mobile data of primary user network.
机译:认知无线电(CR)的性能受到基于许可用户的交通分布观察的空置渠道的可用性估计的影响。特定瞬间的电信交通预测取决于彻底了解一周中的一天,一天小时和小时的瞬间。分布式协作频谱感测是基础设施的基础设施,其中传感器节点本身需要几次迭代以确定关于空置通道的决定,其中CR节点没有关于每个信道行为的知识。所提出的网络也是基于架构的,但是由称为认知无线电基站控制器(CR-BSC)的单独控制单元拍摄的信道可用性决定。在此架构中,SU用作环境中可用的占用的主要和辅助信道的探测器,并发送到认知无线电基站(CR-BS),用于定期更新信道状态数据库。探测和传输频率和CR-BS的频率消耗苏的良好量,需要适当地调度以获得最佳的苏电池寿命。在SU呼叫的放置时,对于可用的通道集及其在系统中的辅助用户流量以及主要用户流量一起存在时,可以进行多次几分钟的接下来的通道和阻塞概率。通过主用户网络的实时移动数据验证所获得的结果。

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