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Fast Operation Mode Selection for Highly Efficient IoT Edge Devices

机译:高效IOT边缘设备的快速操作模式选择

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In the emerging paradigm of edge computing (EC) for Internet of Things (IoT), data processing is pushed to the edge of the IoT network (e.g., gateways and embedded IoT devices). IoT devices must support multiple operation modes in order to adapt to varying runtime situations, like preserving energy at low battery, while still maintaining some crucial functionality, etc. Adapting the optimal operation mode is a challenge for edge devices given the limited resources at the edge of the network (both bandwidth and processing power of the shared gateway), various constraints (e.g., battery lifetime), etc. This paper proposes a fast and low-overhead scheme to determine and adapt the operation mode of edge devices at runtime and orchestrate devices in a way that the efficiency of IoT devices is optimized with respect to the gateway's resource constraints. The proposed scheme breaks the optimization problem into several smaller ones (i.e., subproblems) whose solutions are aggregated to find the final solution. We present a novel memoization technique that determines the solution to a range of subproblems based on subproblems that are already solved. In addition, we present a novel pruning technique that reduces the search space and consequently reduces both memory and execution time overhead. The experimental results show up to 50% reduction in memory overhead and $14 imes $ reduction in execution time overhead compared to the state-of-the-art solution which is a major step toward efficient EC for IoT.
机译:在用于物联网(IOT)的边缘计算(EC)的新兴范式(EC)中,数据处理被推到物联网网络的边缘(例如,网关和嵌入物联网设备)。 IOT设备必须支持多种操作模式,以便适应变化的运行时情况,例如在低电池处保持能量,同时仍保持一些重要的功能等,适应最佳操作模式是指优于边缘的有限资源的边缘设备的挑战网络(共享网关的带宽和处理能力),各种约束(例如,电池寿命)等。本文提出了一种快速和低开销方案,用于在运行时确定和调整边缘设备的操作模式和协调设备以一种关于网关的资源约束优化了IOT设备的效率的方式。该方案将优化问题分为几个较小的问题(即子问题),其解决方案被聚合以找到最终解决方案。我们提出了一种新的核对方法,该技术基于已经解决的子问题确定了一系列子问题的解决方案。此外,我们提出了一种新颖的修剪技术,减少了搜索空间,从而减少了存储器和执行时间开销。实验结果表明,与最先进的解决方案相比,记忆开销减少了50%的记忆开销和执行时间开销的14倍,这是对IOT的高效EC的重要步骤。

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