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Control and Protection of Multi-DER Microgrids.

机译:Multi-DER微电网的控制和保护。

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摘要

This dissertation proposes a power management and control strategy for islanded microgrids, which consist of multiple electronically-interfaced distributed energy resource (DER) units, to achieve a prescribed load sharing scheme. This strategy provides i) a power management system to specify voltage set points based on a classical power flow analysis; 2) DER local controllers, designed based on a robust, decentralized, servomechanism approach, to track the set points; and 3) a frequency control and synchronization scheme. This strategy is then generalized to incorporate both power-controlled and voltage-controlled DER units.;Since the voltage-controlled DER units do not use inner current control loops, they are vulnerable to overcurrent/overload transients subsequent to system severe disturbances, e.g., faults and overloading conditions. To prevent DER unit trip-out or damage under these conditions, an overcurrent/overload protection scheme is proposed that detects microgrid abnormal conditions, modifies the terminal voltage of the corresponding VSC to limit DER unit output current/power within the permissible range, and restores voltage controllers subsequently.;Under certain circumstances, e.g., microgrid islanding and communication failure, there is a need to switch from an active to a latent microgrid controller. To minimize the resultant transients, control transition should be performed smoothly. For the aforementioned two circumstances, two smooth control transition techniques, based on 1) an observer and 2) an auxiliary tracking controller, are proposed to achieve a smooth control transition.;A typical microgrid system that adopts the proposed strategy is investigated. The microgrid dynamics are investigated based on eigenvalue sensitivity and robust analysis studies to evaluate the performance of the closed-loop linearized microgrid. Extensive case studies, based on time-domain simulations in the PSCAD/EMTDC platform, are performed to evaluate performance of the proposed controllers when the microgrid is subject to various disturbances, e.g., load change, DER abrupt outage, configuration change, faults, and overloading conditions. Real-time hardware-in-the-loop case studies, using an RTDS system and NI-cRIO industrial controllers, are also conducted to demonstrate ease of hardware implementation, validate controller performance, and demonstrate its insensitivity to hardware implementation issues, e.g., noise, PWM nonidealities, A/D and D/A conversion errors and delays.
机译:本文提出了一种由多个电子接口分布式能源单元组成的孤岛微电网的功率管理和控制策略,以实现规定的负荷分担方案。该策略提供:i)基于经典潮流分析的电源管理系统,以指定电压设置点; 2)DER本地控制器,基于强大的分散式伺服机制方法设计,可跟踪设定点; 3)频率控制和同步方案。然后将这种策略推广到同时包含功率控制和电压控制的DER单元。;由于电压控制的DER单元不使用内部电流控制回路,因此它们很容易受到系统严重干扰后的过电流/过载瞬变的影响,例如故障和过载情况。为了防止在这种情况下DER单元跳闸或损坏,提出了一种过流/过载保护方案,该方案可检测微电网异常情况,修改相应VSC的端电压以将DER单元输出电流/功率限制在允许的范围内,并恢复在某些情况下,例如微电网孤岛和通信故障,需要从活动的微电网控制器切换到潜在的微电网控制器。为了最大程度地减少瞬变,应平稳执行控制转换。针对上述两种情况,基于1)观察者和2)辅助跟踪控制器,提出了两种平滑控制过渡技术,以实现平滑控制过渡。研究了采用该策略的典型微电网系统。基于特征值敏感性和鲁棒分析研究,对微电网动力学进行了研究,以评估闭环线性化微电网的性能。当微电网受到各种干扰(例如负载变化,DER突然中断,配置变化,故障和故障)时,基于PSCAD / EMTDC平台中的时域仿真,进行了广泛的案例研究,以评估所提出的控制器的性能。超载条件。还使用RTDS系统和NI-cRIO工业控制器进行了实时硬件在环案例研究,以展示硬件实现的简便性,验证控制器性能以及展示其对诸如噪声之类的硬件实现问题的敏感性。 ,PWM非理想性,A / D和D / A转换错误以及延迟。

著录项

  • 作者

    Etemadi, Amir Hossein.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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