计算机科学
控制重构
延迟(音频)
物联网
GSM演进的增强数据速率
计算机网络
边缘计算
边缘设备
分布式计算
服务(商务)
网络功能虚拟化
低延迟(资本市场)
云计算
嵌入式系统
电信
操作系统
经济
经济
作者
Xiaocui Li,Zhangbing Zhou,Chunsheng Zhu,Lei Shu,Jiehan Zhou
标识
DOI:10.1109/jiot.2021.3135287
摘要
With the proliferation of I nternet o f T hings (IoT) devices deployed in edge networks, the functionalities of IoT devices are typically encapsulated in terms of IoT services. Their collaboration is mostly achieved through the composition of functionally complementary and geographically contiguous IoT services, to achieve complex requests. Considering the capacity constraints of IoT devices, newly incoming requests may hardly be satisfied partially (or completely), since these devices are implementing subtasks of previous requests at this moment. Therefore, candidate IoT devices may have no enough remaining capacity to co-host subtasks of these new requests concurrently. To solve this problem, this article proposes a novel r esource a llocation and s ervice co-placement (RaSP) algorithm to address latency-aware online service reconfiguration problem. Specifically, IoT services are reconfigured upon IoT devices in an optimal manner, such that certain IoT services corresponding to subtasks in previous requests should be migrated online from their hosting IoT devices to neighboring ones, and constraints of these requests are still satisfiable. These released resources can be adopted to implement subtasks (or IoT services) of newly incoming requests. A prototype is implemented using an EdgeSim simulator. The experimental results show that our RaSP algorithm performs better than the state of the art's techniques in satisfying the latency of newly incoming and previous requests simultaneously, and reducing the energy consumption of edge networks.
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