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Modeling and optimization of energy storage system for microgrid.

机译:微电网储能系统的建模与优化。

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摘要

The vanadium redox flow battery (VRB) is well suited for the applications of microgrid and renewable energy. This thesis will have a practical analysis of the battery itself and its application in microgrid systems.;The first paper analyzes the VRB use in a microgrid system. The first part of the paper develops a reduced order circuit model of the VRB and analyzes its experimental performance efficiency during deployment. The statistical methods and neural network approximation are used to estimate the system parameters. The second part of the paper addresses the implementation issues of the VRB application in a photovoltaic-based microgrid system. A new dc-dc converter was proposed to provide improved charging performance. The paper was published on IEEE Transactions on Smart Grid, Vol. 5, No. 4, July 2014.;The second paper studies VRB use within a microgrid system from a practical perspective. A reduced order circuit model of the VRB is introduced that includes the losses from the balance of plant including system and environmental controls. The proposed model includes the circulation pumps and the HVAC system that regulates the environment of the VRB enclosure. In this paper, the VRB model is extended to include the ESS environmental controls to provide a model that provides a more realistic efficiency profile. The paper was submitted to IEEE Transactions on Sustainable Energy.;Third paper discussed the optimal control strategy when VRB works with other type of battery in a microgird system. The work in first paper is extended. A high level control strategy is developed to coordinate a lead acid battery and a VRB with reinforcement learning. The paper is to be submitted to IEEE Transactions on Smart Grid.
机译:钒氧化还原液流电池(VRB)非常适合微电网和可再生能源的应用。本文将对电池本身及其在微电网系统中的应用进行实际的分析。第一篇论文分析了VRB在微电网系统中的使用。本文的第一部分开发了VRB的降阶电路模型,并分析了其在部署期间的实验性能效率。统计方法和神经网络逼近用于估计系统参数。本文的第二部分讨论了VRB在基于光伏的微电网系统中的实现问题。提出了一种新的DC-DC转换器以提供改进的充电性能。该论文发表在《 IEEE Transactions on Smart Grid,第一卷》上。 5,2014年7月,第4期;;第二篇论文从实践的角度研究了VRB在微电网系统中的使用。引入了VRB的降阶电路模型,该模型包括来自工厂平衡的损失,包括系统和环境控制。提议的模型包括循环泵和调节VRB外壳环境的HVAC系统。在本文中,VRB模型被扩展为包括ESS环境控制,以提供一个提供更现实的效率概况的模型。该论文已提交给IEEE Transactions on Sustainable Energy。第三篇论文讨论了VRB在微电网系统中与其他类型的电池配合使用时的最佳控制策略。第一篇论文的工作有所扩展。开发了高级控制策略来协调铅酸电池和VRB的强化学习。该论文将提交给智能电网的IEEE Transactions。

著录项

  • 作者

    Qiu, Xin.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.;Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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