دانلود رایگان مقاله انگلیسی محاسبات لبه در محیط صنعتی اینترنت اشیا: تعامل ابر - لبه - IEEE 2018

عنوان فارسی
محاسبات لبه در محیط صنعتی اینترنت اشیا: شبکه نرم افزاری تعریف شده مبتنی بر تعامل ابر-لبه
عنوان انگلیسی
Edge Computing in the Industrial Internet of Things Environment: Software-DefinedNetworks-Based Edge-Cloud Interplay
صفحات مقاله فارسی
0
صفحات مقاله انگلیسی
8
سال انتشار
2018
نشریه
آی تریپل ای - IEEE
فرمت مقاله انگلیسی
PDF
کد محصول
E6220
رشته های مرتبط با این مقاله
کامپیوتر و فناوری اطلاعات
گرایش های مرتبط با این مقاله
شبکه های کامپیوتری، اینترنت و شبکه های گسترده، رایانش ابری
مجله
مجله ارتباطات - IEEE Communications Magazine
دانشگاه
Thapar University
چکیده

Abstract


The emergence of the Industrial Internet of Things (IIoT) has paved the way to real-time big data storage, access, and processing in the cloud environment. In IIoT, the big data generated by various devices such as-smartphones, wireless body sensors, and smart meters will be on the order of zettabytes in the near future. Hence, relaying this huge amount of data to the remote cloud platform for further processing can lead to severe network congestion. This in turn will result in latency issues which affect the overall QoS for various applications in IIoT. To cope with these challenges, a recent paradigm shift in computing, popularly known as edge computing, has emerged. Edge computing can be viewed as a complement to cloud computing rather than as a competition. The cooperation and interplay among cloud and edge devices can help to reduce energy consumption in addition to maintaining the QoS for various applications in the IIoT environment. However, a large number of migrations among edge devices and cloud servers leads to congestion in the underlying networks. Hence, to handle this problem, SDN, a recent programmable and scalable network paradigm, has emerged as a viable solution. Keeping focus on all the aforementioned issues, in this article, an SDN-based edge-cloud interplay is presented to handle streaming big data in IIoT environment, wherein SDN provides an efficient middleware support. In the proposed solution, a multi-objective evolutionary algorithm using Tchebycheff decomposition for flow scheduling and routing in SDN is presented. The proposed scheme is evaluated with respect to two optimization objectives, that is, the trade-off between energy efficiency and latency, and the trade-off between energy efficiency and bandwidth. The results obtained prove the effectiveness of the proposed flow scheduling scheme in the IIoT environment.

نتیجه گیری

Conclusion


In this article, an SDN-based edge-cloud interplay is presented to deal with flow scheduling among edge and cloud devices. In this regard, a multi-objective evolutionary algorithm using Tchebycheff decomposition is designed for flow scheduling in SDN. The proposed scheme is evaluated with respect to two optimization problems: 1. Trade-off between energy efficiency and latency 2. Trade-off between energy efficiency and bandwidth In order to validate the efficacy of the proposed scheme, it is compared to existing schemes using different evaluation parameters. The results obtained prove the effectiveness of the proposed flow scheduling scheme in the IIoT environment.


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