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Optimal Channel Sharing assisted Multi-user Computation Offloading via NOMA

机译:最佳频道共享辅助多用户计算通过NOMA卸载

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Computation offloading via mobile edge computing (MEC) has been considered as one of the promising paradigms for enabling computation-intensive yet latency-sensitive services on resource-limited mobile terminals in future wireless systems. In this paper, we propose a channel sharing assisted multi-user computation offloading in MEC via non-orthogonal multiple access (NOMA), in which a group of edge-computing users (EUs) form a NOMA-group and further reuse the cellular user’s (CU’s) channel for computation-offloading transmission. Specifically, we formulate a joint optimization of the EUs’ offloaded workloads, NOMA-transmission duration, as well as the processing-rate allocations (for different EUs) at the edge computing server (ECS), with the objective of minimizing the overall latency for all EUs to complete their tasks. In spite of the non-convexity of the joint optimization, we identify the structural feature of the optimal offloading solution and propose a layered-algorithm for finding the solution efficiently. Numerical results are provided to validate the effectiveness of our proposed algorithm as well as the advantage of our multi-user offloading scheme via NOMA.
机译:通过移动边缘计算(MEC)的计算已被认为是有希望的范例之一,用于在未来的无线系统中启用资源限制的移动终端上的计算密集又延迟敏感服务之一。在本文中,我们提出了一种通过非正交多址(NOMA)在MEC中共享辅助多用户计算卸载,其中一组边缘计算用户(EUS)形成NOMA-GROUM并进一步重用蜂窝用户(CU)通道用于计算卸载传输。具体而言,我们在边缘计算服务器(ECS)上配制了EUS卸载工作负载,NOMA传输持续时间的联合优化,NOMA传输持续时间,以及处理速率分配(针对不同的EUS),其目的是最小化整体延迟所有eus完成他们的任务。尽管联合优化的非凸性,但我们确定了最佳卸载解决方案的结构特征,并提出了一种有效地找到解决方案的分层算法。提供了数值结果以验证我们所提出的算法的有效性以及通过NOMA的多用户卸载方案的优势。

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