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Ropas: Cross-layer Cognitive Architecture For Mobile Uwb Networks

机译:Ropas:移动Uwb网络的跨层认知体系结构

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The allocation of bandwidth to unlicensed users, without significantly increasing the interference on the existing licensed users, is a challenge for Ultra Wideband (UWB) networks. Our research work presents a novel Rake Optimization and Power Aware Scheduling (ROPAS) architecture for UWB networks. Since UWB communication is rich in multipath effects, a Rake receiver is used for path diversity. Our idea of developing an optimized Rake receiver in our ROPAS architecture stems from the intention of reducing the computation complexity in terms of the number of multiplications and additions needed for the weight derivation attached to each finger of the Rake receiver. Our proposed work uses the Cognitive Radio (CR) for dynamic channel allocation among the requesting users while limiting the average power transmitted in each sub-band. In our proposed novel ROPAS architecture, dynamic channel allocation is achieved by a CR-based cross-layer design between the PHY and Medium Access Control (MAC) layers. Additionally, the maximum number of parallel transmissions within a frame interval is formulated as an optimization problem. This optimal decision is based on the distance parameter between a transmitter-receiver pair, bit error rate and frequency of request by a particular application. Moreover, the optimization problem improvises a differentiation technique among the requesting applications by incorporating priority levels among user applications. This provides fairness and higher throughput among services with varying power constraint and data rates required for a UWB network.
机译:在不显着增加对现有许可用户的干扰的情况下,将带宽分配给非许可用户对于超宽带(UWB)网络是一个挑战。我们的研究工作提出了一种用于UWB网络的新颖的Rake优化和功率感知调度(ROPAS)体系结构。由于UWB通信具有丰富的多径效应,因此将Rake接收机用于路径分集。我们在ROPAS架构中开发优化的Rake接收机的想法源于旨在降低计算复杂性的意图,因为乘法和加法的数量需要附加到Rake接收机每个分支的权重推导上。我们提出的工作使用认知无线电(CR)在请求用户之间进行动态信道分配,同时限制了每个子带中发送的平均功率。在我们提出的新颖的ROPAS体系结构中,动态通道分配是通过在PHY和媒体访问控制(MAC)层之间基于CR的跨层设计实现的。另外,将帧间隔内并行传输的最大数量公式化为优化问题。最佳决策基于收发器对之间的距离参数,误码率和特定应用程序的请求频率。而且,优化问题通过在用户应用程序之间合并优先级来提高请求应用程序之间的区分技术。这为超宽带网络所需的功率限制和数据速率各不相同的服务提供了公平性和更高的吞吐量。

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