Nowadays, Internet of Video Things (IoVT) grows rapidly in terms of quantity and computation demands. In spite of the higher local computation capability on visual processing compared with conventional Internet of Things devices, IoVT devices need to offload partial visual processing tasks to the mobile edge computing (MEC) server wirelessly due to its larger computation demands. However, visual processing task offloading is limited by uplink throughput and computation capability of the MEC server. To break through these limitations, a novel non-orthogonal multiple access (NOMA) assisted IoVT framework with multiple MEC servers is proposed, where NOMA is exploited to improve uplink throughput and MEC servers are co-located with base stations to provide enough computation capability for offloading. In the proposed framework, the association strategy, uplink visual data transmission assisted by NOMA and division of the visual processing tasks as well as computation resource allocation at the MEC servers are jointly optimized to minimize the total delay of all visual processing tasks, while meeting the delay requirements of all IoVT devices. Simulation results demonstrate that significant performance gains can be achieved by proposed joint optimization with NOMA transmission and multi-MEC offloading in the heterogeneous IoVT network.
翻译:目前,视频事物互联网(IoVT)在数量和计算需求方面迅速增长,尽管与常规的Tings设备互联网相比,当地在视觉处理方面的计算能力有所提高,但IoVT设备需要无线地将部分视觉处理任务卸载到移动边缘计算服务器(MEC),因为其计算需求较大,然而,视觉处理任务卸载受到MEC服务器的上链路传输和计算能力的限制。为了打破这些限制,提议了一个具有多种MEC服务器的新型非横向多重访问(NOMA)辅助IOVT框架,其中利用NOMA改进了上链路传输,而MEC服务器与基地台合用,为卸载提供了足够的计算能力。在拟议的框架中,联系战略是将NOMA和视觉处理任务分工所协助的视觉数据传输与计算资源分配连接起来,并联合优化MEC服务器的资源配置,以尽量减少所有视觉处理任务的全部延误,同时满足所有IoMET设备的延迟要求。模拟结果显示,通过配置MOMA和多功能网络的联合优化,可以取得显著的业绩收益。