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Compressed sensing based data processing and MAC protocol design for smartgrids

机译:基于压缩感知的智能电网数据处理和MAC协议设计

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In this paper, we consider the joint design of data compression and 802.15.4-based medium access control (MAC) protocol for smartgrids with renewable energy. We study the setting where a number of nodes, each of which comprises electricity load and/or renewable sources, report periodically their injected powers to a data concentrator. Our design exploits the correlation of the reported data in both time and space to perform efficient data compression using the compressed sensing (CS) technique and efficiently engineer the MAC protocol so that the reported data can be recovered reliably within minimum reporting time. Specifically, we perform the following design tasks: i) we employ the two-dimensional (2D) CS technique to compress the reported data in the distributed manner; ii) we propose to adapt the 802.15.4 MAC protocol frame structure to enable efficient data transmission and reliable data reconstruction; and iii) we develop an analytical model based on which we can obtain the optimal parameter configuration to minimize the reporting delay. Finally, numerical results are presented to demonstrate the effectiveness of our design.
机译:在本文中,我们考虑了具有可再生能源的智能电网的数据压缩和基于802.15.4的媒体访问控制(MAC)协议的联合设计。我们研究了以下设置,其中许多节点(每个节点均包含电力负荷和/或可再生资源)定期将其注入的功率报告给数据集中器。我们的设计利用时间和空间中报告数据的相关性,使用压缩感知(CS)技术执行有效的数据压缩,并有效地设计MAC协议,以便可以在最短报告时间内可靠地恢复报告数据。具体来说,我们执行以下设计任务:i)我们采用二维(2D)CS技术以分布式方式压缩报告的数据; ii)我们建议调整802.15.4 MAC协议帧结构,以实现高效的数据传输和可靠的数据重建; iii)我们开发了一个分析模型,基于该模型我们可以获得最佳的参数配置,以最大程度地减少报告延迟。最后,数值结果表明了我们设计的有效性。

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