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A utility-based algorithm for joint uplink/downlink scheduling in wireless cellular networks

机译:基于实用程序的无线蜂窝网络中联合上行/下行调度算法

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The major driver for deploying next generation wireless cellular systems is their ability to efficiently deliver resource-demanding services, many of which require symmetric communication between an uplink mobile user and a downlink mobile user that belong to the same network. In this work, we propose a utility-based joint uplink/downlink scheduling algorithm suitable for wireless services involving pairwise communication among mobile users. While most existing literature focuses on downlink-only or uplink-only scheduling algorithms, the proposed algorithm aims at ensuring a utility function that jointly captures the quality of service in terms of delay and channel quality on both links. By jointly considering the time varying channel conditions in both the uplink and the downlink directions, the proposed algorithm avoids wasting of resources and achieves notable performance gains in terms of increased number of active connections, lower packet drop rate, and increased network throughput. These gains are achieved with a tradeoff cost in terms of complexity and signaling overhead. For overhead reduction in practical scenarios, we propose an implementation over clusters within the network.
机译:部署下一代无线蜂窝系统的主要推动力是其有效交付资源需求服务的能力,其中许多服务需要在属于同一网络的上行链路移动用户和下行链路移动用户之间进行对称通信。在这项工作中,我们提出了一种基于实用程序的联合上行/下行调度算法,适用于涉及移动用户之间成对通信的无线服务。尽管大多数现有文献集中于仅下行链路或仅上行链路调度算法,但是所提出的算法旨在确保效用函数能够共同捕获两条链路上的时延和信道质量方面的服务质量。通过共同考虑上行链路和下行链路方向上的时变信道条件,该算法避免了资源浪费,并且在增加活动连接数,降低数据包丢失率和增加网络吞吐量方面实现了显着的性能提升。这些增益是在复杂性和信令开销方面以折衷成本实现的。为了减少实际场景中的开销,我们建议在网络内的群集上实施。

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