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A cellular neural network and utility-based radio resource scheduler for multimedia CDMA communication systems

机译:用于多媒体CDMA通信系统的蜂窝神经网络和基于实用程序的无线电资源调度器

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摘要

The paper proposes a cellular neural network and utility (CNNU)-based radio resource scheduler for multimedia CDMA communication systems supporting differentiated quality-of-service (QoS). Here, we define a relevant utility function for each connection, which is its radio resource function weighted by a QoS requirement deviation function and a fairness compensation function. We also propose cellular neural networks (CNN) to design the utility-based radio resource scheduler according to the Lyapunov method to solve the constrained optimization problem. The CNN is powerful for complicated optimization problems and has been proved that it can rapidly converge to a desired equilibrium; the utility-based scheduling algorithm can efficiently utilize the radio resource for system, keep the QoS requirements of connections guaranteed, and provide the weighted fairness for connections. Therefore, the CNNUbased scheduler, which determines a radio resource assignment vector for all connections by maximizing an overall system utility, can achieve high system throughput and keep the performance measures of all connections to meet their QoS requirements. Simulation results show that the CNNU-based scheduler attains the average system throughput greater than the EXP [9] and the HOLPRO [5] scheduling schemes by an amount of 23% and 33%, respectively, in the QoS guaranteed region.
机译:本文提出了一种基于蜂窝神经网络和实用程序(CNNU)的无线资源调度程序,用于支持差异化服务质量(QoS)的多媒体CDMA通信系统。在此,我们为每个连接定义一个相关的效用函数,即由QoS要求偏差函数和公平性补偿函数加权的无线资源函数。我们还提出了细胞神经网络(CNN),以根据Lyapunov方法设计基于实用程序的无线电资源调度程序,以解决约束优化问题。 CNN可以解决复杂的优化问题,并且已经证明可以迅速收敛到所需的平衡。基于实用程序的调度算法可以有效地利用系统的无线电资源,保证连接的QoS要求,并为连接提供加权的公平性。因此,基于CNNU的调度程序通过最大化整体系统实用性来确定所有连接的无线电资源分配矢量,可以实现高系统吞吐量,并保持所有连接的性能指标以满足其QoS要求。仿真结果表明,基于CNNU的调度程序在QoS保证区域中的平均系统吞吐量分别比EXP [9]和HOLPRO [5]调度方案高23%和33%。

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