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Robust nonlinear congestion controller for cognitive radio based wireless network

机译:基于认知无线电的无线网络鲁棒非线性拥塞控制器

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Under the constraints of limited bandwidth and exponentially rising user demand, there is a dire need to maximize throughput. Maintaining Quality of Service (QoS) in a communication network demands congestion control with high accuracy. This paper focuses on this challenging task that incorporates design of effective congestion controller to reduce packet loss in cognitive radio networks. Limited buffer capacity and bandwidth impose restriction on the performance when number of requests increase. The controller is designed on the notions of sliding mode which is a variable structure control technique known for its robustness and disturbance rejection capabilities. An optimal design strategy is used in development of the controller. The efficiency of the controller is confirmed by numerical simulations.
机译:在有限的带宽和用户需求呈指数增长的约束下,迫切需要最大化吞吐量。在通信网络中维持服务质量(QoS)要求高精度的拥塞控制。本文着重于这项具有挑战性的任务,该任务结合了有效的拥塞控制器设计,以减少认知无线电网络中的数据包丢失。当请求数量增加时,有限的缓冲区容量和带宽会限制性能。控制器是根据滑模概念设计的,滑模是一种以其鲁棒性和抗干扰能力而闻名的可变结构控制技术。在控制器的开发中使用了最佳的设计策略。控制器的效率通过数值模拟得到确认。

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