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Supervision of Energy Storage System of HRES grid connected

机译:HRES网格储能系统的监督

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The unpredictable intermittent Wind and Solar power combination nature leads to improve new strategies defeating weakness of grid connection and its frequency and voltage fluctuations added to insufficient stand-alone proper storage. Indeed, several strategies have been proposed in literature to harness the power sources efficiency or load repartition demand besides the intelligent management of storage energy system (HESS). Recently, the battery-super capacitor association as hybrid energy storage system (HESS) has been proposed to mitigate the impact of dynamic power exchanges on battery's limited lifetime. In this paper, a model of hybrid renewable energy system (HRES) Wind-Solar system using a battery and supercapacitor for DC grid connected was implemented using MATLAB/Simulink software package. A supervision strategy of storage energy was discussed in this issue aiming to optimize the supply of power exchange between the alternative turbine-solar panel pumped to the DC voltage bus. The dynamic behavior performance of the hybrid system was evaluated under random wind speeds, temperatures and different radiations levels.
机译:不可预测的间歇性风和太阳能组合性质导致改善击败网格连接弱点的新策略,并且其频率和电压波动增加以不足的独立储存。实际上,除了存储能量系统(HESS)的智能管理外,还提出了在文献中提出了几种策略来利用电源效率或负载重新分配需求。最近,已经提出了作为混合能量存储系统(HESS)的电池超级电容器关联,以减轻动态功率交换对电池有限寿命的影响。本文采用MATLAB / SIMULIND软件包实现了使用电池和超级电容器的混合可再生能源系统(HRES)风太阳能系统的模型。在本期讨论了储存能量的监督策略,旨在优化泵送到DC电压总线的替代涡轮太阳能电池板之间的电力交换供应。在随机风速,温度和不同辐射水平下评估混合系统的动态行为性能。

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