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An efficient demand-side load shedding algorithm in smart grid.

机译:智能电网中高效的需求侧减负荷算法。

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摘要

Rapid advances in the smart grid technology are making it possible to tackle a lot of problems in the aged power systems. High-speed data acquisition system, high-voltage power electronic equipment, advanced utility and customer interaction technologies, as well as distributed renewable generation are enabling the revolution in the electric power generation, delivery and distribution. Through the implementation of ubiquitous metering and communication networks, the customers would no longer be a passive receiver of the electrical energy, but instead, an active participant in the power system and electricity market. They can not only sell their own energy to the utility, but also take part in the emergency restoration in the power grid. Nonetheless, some technical barriers are encountered during this revolution, such as difficulties in integrating home automation, smart metering, customer interaction and power system operation into the whole system.;This thesis proposes a customer involved load shedding algorithm for both the power system frequency control and the micro-grid islanding. This new algorithm possesses the features of centralized load control and distributed load control, which fully utilizes the advantages of hierarchical communication networks along with the home automation. The proposed algorithm considers the reliability of the power grid as well as the comfort of the electricity users. In the power distribution system, the high-level control centre is responsible for coordinating the local load controllers, whilst the local controller takes charge of frequency monitoring and decision making. In the micro-grid, a centralized control strategy is adopted to better serve the system with the wide set of information available at the micro-grid control centre. The simulation results have demonstrated the correctness and feasibility of the proposed algorithm. Finally, the hardware implementation further tests the validity of the wireless sensor networks serving as the system's monitoring and communication technology.
机译:智能电网技术的飞速发展使得解决陈旧的电力系统中的许多问题成为可能。高速数据采集系统,高压电力电子设备,先进的公用事业和客户交互技术以及分布式可再生能源发电正在推动发电,输电和配电领域的革命。通过实施无处不在的计量和通信网络,客户将不再是电能的被动接收者,而是电力系统和电力市场的积极参与者。他们不仅可以向公用事业出售自己的能源,还可以参与电网的紧急恢复。尽管如此,在这场革命中仍然遇到了一些技术障碍,例如将家庭自动化,智能电表,客户交互以及电力系统操作集成到整个系统中的困难。和微电网孤岛。该算法具有集中负荷控制和分布式负荷控制的特点,充分利用了分层通信网络与家庭自动化的优势。所提出的算法考虑了电网的可靠性以及电力用户的舒适度。在配电系统中,高级控制中心负责协调本地负载控制器,而本地控制器负责频率监控和决策。在微电网中,采用了集中控制策略,以通过微电网控制中心提供的广泛信息更好地为系统服务。仿真结果证明了该算法的正确性和可行性。最后,硬件实现进一步测试了用作系统监视和通信技术的无线传感器网络的有效性。

著录项

  • 作者

    Li, Yang.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2013
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:13

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