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Task Offloading Strategy of 6G Heterogeneous Edge-Cloud Computing Model considering Mass Customization Mode Collaborative Manufacturing Environment

机译:考虑大众定制模式协同制造环境的6G异构边缘云计算模型任务卸载策略

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With the continuous integration of cloud computing, edge computing, and Internet of things (IoT), various mobile applications will emerge in future 6G network. Driven by real-time response and low energy consumption requirements, mobile edge-cloud computing (MECC) will play an important role to improve user experience and reduce costs. However, due to the complexity of applications, the computing capacity of devices cannot meet the low-latency and low energy consumption requirement. Meanwhile, subject to the limited supplement of power and energy system, the heterogeneous multilayer mobile edge-cloud computing (HetMECC) is proposed to join cloud server, edge server, and terminal devices for data calculation and transmission. By dividing computing tasks, terminal applications can receive reliable and efficient computing services. The simulation results show that the proposed model can achieve the low-latency requirement of data calculation and transmission and improve the robustness of architecture.
机译:随着云计算,边缘计算和物联网(物联网)的不断集成,将在未来的6G网络中出现各种移动应用程序。通过实时响应和低能耗要求驱动,移动边缘云计算(MECC)将发挥重要作用,以改善用户体验并降低成本。然而,由于应用的复杂性,设备的计算能力不能满足低延迟和低能耗要求。同时,由于电力和能量系统的补充有限,建议使用异构多层移动边缘云计算(HetMECC)以加入用于数据计算和传输的云服务器,边缘服务器和终端设备。通过划分计算任务,终端应用程序可以接收可靠且有效的计算服务。仿真结果表明,该建议的模型可以实现数据计算和传输的低延迟要求,提高架构的鲁棒性。

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