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Security-Critical Energy-Aware Task Scheduling for Heterogeneous Real-Time MPSoCs in IoT

机译:安全关键的能量感知任务调度IOT中异构实时MPSoC

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摘要

Internet of Things (IoT) devices, such as intelligent road side units and video-based detectors, are being deployed in emerging applications like sustainable and intelligent transportation systems. The primary obstacles against the development of these IoT devices are various security threats and huge energy consumption. In this article, we study the problem of scheduling tasks onto a heterogeneous multiprocessor system on a chip (MPSoC) deployed in IoT for optimizing quality of security under energy, real-time, and task precedence constraints. We first provide a mixed-integer linear programming (MILP) formulation for allocating and scheduling dependent tasks with energy and real-time constraints on a heterogeneous MPSoC system to maximize system quality of security. In order to efficiently solve the formulated MILP, we then propose an analysis-based two-stage scheme that determines the allocation, operating frequency, and security service of tasks to maximize system quality of security while satisfying the design constraints. We finally carry out extensive simulation experiments to validate our proposed two-stage scheme and MILP approach. Simulation results demonstrate that the proposed two-stage scheme outperforms a number of representative existing approaches in saving energy and improving system quality of security. The results also show that the proposed MILP approach can achieve the best performance and the proposed two-stage scheme has a close performance to the MILP approach.
机译:物联网(IOT)设备(如智能路侧单元和基于视频的探测器)正在展开可持续和智能运输系统等新兴应用中。对这些物联网设备的发展的主要障碍是各种安全威胁和巨大的能耗。在本文中,我们研究了在IOT部署的芯片(MPSOC)上的异构多处理器系统上调度任务的问题,以优化能量,实时和任务优先约束的安全质量。我们首先提供了一种混合整数线性编程(MILP)配方,用于在异构MPSoC系统上为能量和实时约束分配和调度相关任务,以最大化系统的安全质量。为了有效解决配制的MILP,我们提出了一种基于分析的两级方案,该方案决定了任务的分配,运行频率和安全服务,以最大限度地满足设计限制的同时最大化系统质量。我们终于履行了广泛的模拟实验,以验证我们提出的两级计划和MILP方法。仿真结果表明,所提出的两级方案优越,优于节省能源和提高系统质量的许多代表现有方法。结果还表明,拟议的MILP方法可以实现最佳性能,所提出的两级方案对MILP方法具有密切性能。

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