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Linear precoder design for base station energy cooperation in DC microgrids
journal contribution
posted on 2019-05-20, 00:00 authored by Shama IslamShama Islam, Apel MahmudApel Mahmud, Sajeeb Saha, Enamul HaqueEnamul HaqueIn this study, the energy data transfer problem in a DC microgrid with multiple renewable powered base stations (BSs) is considered. These BSs can share the renewable generation among each other. The energy cooperation is optimised by the control unit. For effective energy cooperation, energy data needs to be transferred from BSs to the control unit with low latency and high reliability. For cellular enabled microgrid communication, the energy data exchange and cellular communication both use the same communication resources. Thus, there will be interference at the control unit and cellular user (CU), which degrades the reliability of energy data transfer. To solve this problem, a linear precoding technique is designed to minimise the mean square error of the desired messages at the control unit, BSs, and CU while the interferences are kept at a predefined level. For the designed precoders, the expressions of signal-to-interference-plus-noise ratio are formulated and the error performance is analysed. Numerical simulation has been performed to compare the considered precoding technique with other precoding techniques. The simulation results demonstrate that optimum precoding can improve the error performance at the control unit, BSs, and CU by 1, 5, and 3 dB, respectively.
History
Journal
IET renewable power generationVolume
13Issue
7Pagination
1076 - 1086Publisher
Institution of Engineering and TechnologyLocation
Stevenage, Eng.Publisher DOI
ISSN
1752-1416eISSN
1752-1424Language
engPublication classification
C1 Refereed article in a scholarly journalCopyright notice
2019, The Institution of Engineering and TechnologyUsage metrics
Categories
No categories selectedKeywords
PrecodingCellular radioOptimisationRenewable energy sourcesWireless channelsEnergy management systemsDistributed power generationEnergy storageMIMO communicationScience & TechnologyTechnologyGreen & Sustainable Science & TechnologyEnergy & FuelsEngineering, Electrical & ElectronicScience & Technology - Other TopicsEngineeringlinear precoder designbase station energy cooperationDC microgridenergy data transfer problemmultiple renewable powered base stationssupplyenergy surplusdeficitintermittent renewable energysharerenewable generationdifferent BSscontrol uniteffective energy cooperationenergy generationconsumption datacellular enabled microgrid communicationenergy data exchangecellular communicationlinear precoding techniquedesigned precodersconsidered precoding techniquenoise figure 50 dBnoise figure 3noise figure 1CELLULAR NETWORKSDEMAND RESPONSECOMMUNICATIONCONFIGURATIONSYSTEM