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      Scheduling Independent Partitions in Integrated Modular Avionics Systems

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      PLoS ONE
      Public Library of Science

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          Abstract

          Recently the integrated modular avionics (IMA) architecture has been widely adopted by the avionics industry due to its strong partition mechanism. Although the IMA architecture can achieve effective cost reduction and reliability enhancement in the development of avionics systems, it results in a complex allocation and scheduling problem. All partitions in an IMA system should be integrated together according to a proper schedule such that their deadlines will be met even under the worst case situations. In order to help provide a proper scheduling table for all partitions in IMA systems, we study the schedulability of independent partitions on a multiprocessor platform in this paper. We firstly present an exact formulation to calculate the maximum scaling factor and determine whether all partitions are schedulable on a limited number of processors. Then with a Game Theory analogy, we design an approximation algorithm to solve the scheduling problem of partitions, by allowing each partition to optimize its own schedule according to the allocations of the others. Finally, simulation experiments are conducted to show the efficiency and reliability of the approach proposed in terms of time consumption and acceptance ratio.

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          A Novel Scheme for an Energy Efficient Internet of Things Based on Wireless Sensor Networks

          One of the emerging networking standards that gap between the physical world and the cyber one is the Internet of Things. In the Internet of Things, smart objects communicate with each other, data are gathered and certain requests of users are satisfied by different queried data. The development of energy efficient schemes for the IoT is a challenging issue as the IoT becomes more complex due to its large scale the current techniques of wireless sensor networks cannot be applied directly to the IoT. To achieve the green networked IoT, this paper addresses energy efficiency issues by proposing a novel deployment scheme. This scheme, introduces: (1) a hierarchical network design; (2) a model for the energy efficient IoT; (3) a minimum energy consumption transmission algorithm to implement the optimal model. The simulation results show that the new scheme is more energy efficient and flexible than traditional WSN schemes and consequently it can be implemented for efficient communication in the IoT.
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            Author and article information

            Contributors
            Role: Editor
            Journal
            PLoS One
            PLoS ONE
            plos
            plosone
            PLoS ONE
            Public Library of Science (San Francisco, CA USA )
            1932-6203
            2016
            12 December 2016
            : 11
            : 12
            : e0168064
            Affiliations
            [001]Department of Computer Science, Northwestern Polytechnical University, Xi’an, China, 710072
            West Virginia University, UNITED STATES
            Author notes

            Competing Interests: The authors have declared that no competing interests exist.

            • Conceptualization: JC.

            • Data curation: JC CD PH.

            • Formal analysis: JC CD.

            • Investigation: JC CD.

            • Methodology: JC CD.

            • Project administration: JC CD.

            • Software: JC CD PH.

            • Supervision: CD.

            • Validation: PH.

            • Writing – original draft: JC.

            • Writing – review & editing: CD PH.

            Author information
            http://orcid.org/0000-0001-6234-1001
            Article
            PONE-D-16-36468
            10.1371/journal.pone.0168064
            5152929
            27942013
            c1d4e20a-43ed-426b-86d2-b5e02b95ee99
            © 2016 Chen et al

            This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

            History
            : 11 September 2016
            : 23 November 2016
            Page count
            Figures: 7, Tables: 1, Pages: 18
            Funding
            The authors received no specific funding for this work.
            Categories
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