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Smart DC Grid for Autonomous Zero Net Electric Energy of Cluster of Buildings

机译:用于自主零净电能的智能直流网格的建筑物集群

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The main objective of this paper is to create a smart dc micro-grid capable of 100% autonomous zero net electric energy in the cluster of buildings to facilitate a low-carbon sustainable electricity supply system under considerations of urban and rural scenarios. The propose model comprises of house clusters with an autonomous communication developed for the residential area, taking the consideration of stochastic behavior of wind and solar irradiation. Voltage droop and Slope compensation peak current mode control technique for the synchronous bidirectional boost converters is employed for the energy storage systems (ESSs). The bidirectional converter stage for house clusters plays a pivotal role in standalone operation. In case a battery pack is laid off from any house cluster, the dc bus voltage still be stabilized due to the proximity bidirectional converter stages of other house clusters or community bank. The houses in the cluster comprise of permanent magnet synchronous generator (PMSG), solar photo voltaic (PV), battery bank and variable load. The proposed model is simulated on MATLAB/Simulink environment and suffices the real time environment.
机译:本文的主要目的是在建筑物群中创建一种能够100%自主零净电能的智能直流微电网,以便在城乡情景的考虑下促进低碳可持续电力供应系统。该提议模型包括具有为住宅区开发的自主通信的房屋集群,考虑到风和太阳照射的随机行为。用于能量存储系统(ESS)的电压下垂和斜率补偿峰值电流模式控制技术用于同步双向升压转换器的控制技术。房屋集群的双向转换阶段在独立操作中起着枢轴作用。如果从任何房屋集群中布置电池组,则由于其他房屋集群或社区银行的接近双向转换器阶段,DC总线电压仍然稳定。群集中的房屋包括永磁同步发电机(PMSG),太阳能光伏(PV),电池组和可变负载。所提出的模型是在Matlab / Simulink环境上模拟的,并具有足够的实时环境。

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