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Automation infrastructure and operation control strategy in a stand-alone power system based on renewable energy sources

机译:基于可再生能源的独立电力系统中的自动化基础架构和操作控制策略

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摘要

The design of the automation system and the implemented operation control strategy in a stand-alone power system in Greece are fully analyzed in the present study. A photovoltaic array and three wind generators serve as the system main power sources and meet a predefined load demand. A lead-acid accumulator is used to compensate the inherent power fluctuations (excess or shortage) and to regulate the overall system operation, based on a developed power management strategy. Hydrogen is produced by using system excess power in a proton exchange membrane (PEM) electrolyzer and is further stored in pressurized cylinders for subsequent use in a PEM fuel cell in cases of power shortage. A diesel generator complements the integrated system and is employed only in emergency cases, such as subsystems failure. The performance of the automatic control system is evaluated through the real-time operation of the power system where data from the various subsystems are recorded and analyzed using a supervised data acquisition unit. Various network protocols were used to integrate the system devices into one central control system managing in this way to compensate for the differences between chemical and electrical subunits. One of the main advantages is the ability of process monitoring from distance where users can perform changes to system principal variables. Furthermore, the performance of the implemented power management strategy is evaluated through simulated scenarios by including a case study analysis on system abilities to meet higher than expected electrical load demands.
机译:本研究对希腊独立电力系统中的自动化系统的设计和已实施的运行控制策略进行了全面分析。光伏阵列和三个风力发电机用作系统主要电源,并满足预定义的负载需求。铅酸蓄电池可根据已开发的电源管理策略来补偿固有的电源波动(过量或不足)并调节整个系统的运行。氢是通过在质子交换膜(PEM)电解器中使用系统多余的功率产生的,并进一步存储在加压的气缸中,以便在功率不足的情况下随后用于PEM燃料电池中。柴油发电机是对集成系统的补充,仅在紧急情况下使用,例如子系统故障。通过电力系统的实时操作来评估自动控制系统的性能,在电力系统中,使用监督数据采集单元记录和分析来自各个子系统的数据。使用各种网络协议将系统设备集成到一个以此方式进行管理的中央控制系统中,以补偿化学和电子子单元之间的差异。主要优点之一是能够从远处进行过程监视,用户可以在其中进行对系统主要变量的更改。此外,通过包括对系统能力的案例研究分析,可以通过模拟方案评估实施的电源管理策略的性能,以满足超出预期的电负载需求。

著录项

  • 来源
    《Journal of power sources》 |2011年第22期|p.9488-9499|共12页
  • 作者单位

    Chemical Process Engineering Research Institute (C.P.E.R.I.), Centre for Research and Technology Hellas (CE.R.T.H.), P.O. Box 60361.57001 Thermi-Thessaloniki. Greece;

    Chemical Process Engineering Research Institute (C.P.E.R.I.), Centre for Research and Technology Hellas (CE.R.T.H.), P.O. Box 60361.57001 Thermi-Thessaloniki. Greece;

    Systems Sunlight S.A, Neo Olvio. 67200 Xanthi, Greece;

    Chemical Process Engineering Research Institute (C.P.E.R.I.), Centre for Research and Technology Hellas (CE.R.T.H.), P.O. Box 60361.57001 Thermi-Thessaloniki. Greece,Department of Automation, Alexander Technological Educational Institute ofThessaloniki. P.O. Box 141, 54700, Sindos, Thessaloniki, Greece;

    Chemical Process Engineering Research Institute (C.P.E.R.I.), Centre for Research and Technology Hellas (CE.R.T.H.), P.O. Box 60361.57001 Thermi-Thessaloniki. Greece,Department of Automation, Alexander Technological Educational Institute ofThessaloniki. P.O. Box 141, 54700, Sindos, Thessaloniki, Greece;

    Chemical Process Engineering Research Institute (C.P.E.R.I.), Centre for Research and Technology Hellas (CE.R.T.H.), P.O. Box 60361.57001 Thermi-Thessaloniki. Greece,Department of Mechanical Engineering, Aristotle University ofThessaloniki, P.O. Box 484,54124 Thessaloniki, Greece;

    Chemical Process Engineering Research Institute (C.P.E.R.I.), Centre for Research and Technology Hellas (CE.R.T.H.), P.O. Box 60361.57001 Thermi-Thessaloniki. Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    stand-alone power system; renewable energy sources; hydrogen production; automatic control; power management strategy; fuel cell;

    机译:独立电源系统;可再生能源;制氢自动控制;电源管理策略;燃料电池;
  • 入库时间 2022-08-18 00:24:36

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