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Automation and Operation Strategies in a Stand-Alone Power System that Uses Solar and Wind Energy in Conjunction with Hydrogen Long-Term Storage

机译:独立电力系统中的自动化和运营策略,使用太阳能和风能与氢长期存储相结合

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The description and analysis of a stand-alone power system that exploits solar and wind energy is presented in this study. More specifically, the integrated system consists of a 10kW_p photovoltaic (PV) array and three wind generators rated at 1kW_p each. A lead-acid accumulator with nominal capacity of 3,000Ah/48V is used to absorb the short energy fluctuations and to regulate the operation and integrity of the system. Furthermore, the long-term needs are fulfilled via a hydrogen based system. Hydrogen is produced by a 4.2kW_p PEM electrolyzer and stored in cylinders under pressure for subsequent use in a 4kW_p PEM fuel cell. A diesel engine can also be used to provide power in cases of subsystems failure. In the present study the infrastructure of the control system is presented along with the algorithm for the automatic operation which is used to implement the power management strategy. Moreover, experimental results from the operation of each subsystem will be given and a discussion on them will take place. Finally, two operation strategies will be applied through an one-year simulation study, in order to identify their possible implementation in the real system that currently operates under a system operator either remotely or on site.
机译:本研究介绍了利用太阳能和风能的独立电力系统的描述和分析。更具体地,集成系统由10kW_P光伏(PV)阵列组成,三个风力发电机额定在每个1kW_P处。具有标称容量为3000Ah / 48V的铅酸蓄电池用于吸收短能波动,并调节系统的操作和完整性。此外,通过基于氢的系统满足长期需求。氢气由4.2KW_P PEM电解槽生产,并在压力下储存在圆柱体中,以便在4KW_P PEM燃料电池中使用。柴油发动机还可用于在子系统故障情况下提供电力。在本研究中,控制系统的基础设施与用于实现电源管理策略的自动操作的算法一起呈现。此外,将给出每个子系统操作的实验结果,并将进行对它们的讨论。最后,通过一年的仿真研究将应用两种操作策略,以便确定其在当前在系统运营商处于远程或现场运行的真实系统中的可能实现。

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