Edge Computing and IoT: Systems, Management and Security. First EAI International Conference, ICECI 2020, Virtual Event, November 6, 2020, Proceedings

Research Article

Energy Efficient Service Composition with Delay Guarantee in a Cloud-Edge System

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  • @INPROCEEDINGS{10.1007/978-3-030-73429-9_1,
        author={Quan Fang and Menghan Xu and Hao Li and Jun Yu and Xin Li and Zhuzhong Qian},
        title={Energy Efficient Service Composition with Delay Guarantee in a Cloud-Edge System},
        proceedings={Edge Computing and IoT: Systems, Management and Security. First EAI International Conference, ICECI 2020, Virtual Event, November 6, 2020, Proceedings},
        proceedings_a={ICECI},
        year={2021},
        month={7},
        keywords={Cloud-edge system Edge computing Energy efficient Service composition QoS},
        doi={10.1007/978-3-030-73429-9_1}
    }
    
  • Quan Fang
    Menghan Xu
    Hao Li
    Jun Yu
    Xin Li
    Zhuzhong Qian
    Year: 2021
    Energy Efficient Service Composition with Delay Guarantee in a Cloud-Edge System
    ICECI
    Springer
    DOI: 10.1007/978-3-030-73429-9_1
Quan Fang1, Menghan Xu1, Hao Li2, Jun Yu3, Xin Li2, Zhuzhong Qian4
  • 1: State Grid Jiangsu Electric Power Co., Ltd.
  • 2: Nanjing University of Aeronautics and Astronautics
  • 3: Nari Group Corporation
  • 4: Nanjing University

Abstract

In a cloud-edge system, mobile users submit comprehensive service requests, on-the-fly service composition to orchestrate service components from different edge nodes is a promising way to achieve a quick response to these requests. Since several mobile applications consume large amount of energy during waiting for the responses, it is critical to achieve less service delay for energy saving as well as improve QoE (Quality of Experience). However, the service completion time in an edge is quite unstable, which increases the overall response time of the composite service. This paper argues that we may accelerate services through service clone via different edges, so that we can guarantee the overall response time of the composite service. And since the data fetch is also time consuming, we propose an effective data-aware service composition algorithm via service cloning to minimize the overall response time. We implement the algorithm and evaluate the performance with extensive simulations. The simulation results show that the proposed algorithm has a good performance improvement on service delay and energy consumption reduction, compared to the traditional algorithms.