基于任务执行延迟最小化的MEC-Enabled HetNets联合计算卸载和单元选择

Waleed Almughalles, Rong Chai, Junliang Lin, Ahmad Zubair
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引用次数: 6

摘要

多接入边缘计算(MEC)是蜂窝异构网络(HetNets)的一个很有前途的平台。它将核心云的计算服务带到最近的移动设备(MDs)点。本文在假设MD可以选择完全本地计算模式、完全MEC计算模式或部分计算模式三种方式中的一种来执行任务的情况下,共同研究了支持MEC的HetNets的计算卸载和单元选择策略问题。将联合计算卸载和单元选择问题表述为任务执行延迟最小化问题。这种公式化的优化情况是NP-Hard,不方便求解。为此,我们将该问题分解为计算卸载子问题和单元选择子问题两个子问题,并分别提出了扩展搜索法和Khun-Munkres算法来求得最优解。数值结果表明了该算法的有效性。
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Task Execution Latency Minimization-based Joint Computation Offloading and Cell Selection for MEC-Enabled HetNets
Multi-access edge computing (MEC) is a promising platform for cellular heterogeneous networks (HetNets). It brings the computation services of the core cloud into the nearest point of mobile devices (MDs). This paper jointly studies the problem of computation offloading and cell selection strategies in MEC-enabled HetNets under the assumption that MD can select one of the three ways to execute its task, i.e., complete local computing mode, complete MEC computing mode or partial computing mode. The problem of joint computation offloading and cell selection is formulated as a task execution latency minimization problem. This formulated optimization situation is NP-Hard, which is inconvenient to solve. Hence, we deduce the problem into two subproblems which is computation offloading subproblem and cell selection subproblem and propose extensive search method and Khun-Munkres algorithm respectively to obtain the optimal solution. Numerical results show the efficacy of our proposed algorithm.
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