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Analysis of relay protection for generators in offshore facilities

机译:海上设施发电机继电保护分析

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摘要

This thesis study how to configure protective relays for protection of generators in offshoreoil and gas facilities. On the Norwegian continental shelf, most platforms have isolatedpower systems with local power generation by a few synchronous generators. Normally,these generators have very similar ratings, also from facility to facility. Due to the natural inherent safety hazards of operating an electrical system in offshore oil and gas facilities, special standards regulate the practice. This applies especially to relay protection of generators because of its essential role for the facility operation combined with its wide range of failure mechanisms. In addition, the electrical system design is also very similar between facilities. All this, makes it possible to find a standard setup for protective relays that are used in such facilities.The thesis identify present standards and regulations that applies to generator protectionin these facilities. The underlying reasons for these are also explained. Based on this,the thesis propose functions in the ABB REG670 relay that can be used as a standardsolution for all generators in such facilities, to achieve optimal generator protection andfull compliance with existing requirements.Relay setting tables for generators in five different facilities is studied to identify howrelay protection for generators in these facilities is performed today. Based on this work,the thesis guide how to configure the proposed relay functions. In addition, functionparameters that can be set equal for all generators are identified.A study of short-circuits in the power system external to the generator zone is performed.This identifies current contributions from a single generator for different faulttypes and system configurations. The study showed that a generator relay is not able todetect short circuits on other buses than where it is connected. On this bus, the currentcontribution from a single generator is unaffected by other equipment connected to thebus. This prove that it is not necessary to perform such a study when upgrading thegenerator relay.
机译:本文研究如何配置用于保护海上油气设施发电机的保护继电器。在挪威大陆架上,大多数平台都具有隔离的电力系统,并由一些同步发电机进行本地发电。通常,这些发电机的额定功率也非常相似,设施之间也是如此。由于在海上石油和天然气设施中运行电气系统的自然固有的固有安全隐患,因此,特殊标准对此进行了规范。这尤其适用于发电机的继电保护,因为它在设施运行中起着至关重要的作用,并具有广泛的故障机制。此外,设施之间的电气系统设计也非常相似。所有这些,使得找到用于此类设施的保护继电器的标准设置成为可能。本文确定了适用于这些设施中发电机保护的现行标准和法规。还解释了这些的根本原因。基于此,本文提出了ABB REG670继电器的功能,可以用作此类设施中所有发电机的标准解决方案,以实现最佳的发电机保护并完全符合现有要求。研究了五种不同设施中发电机的继电器设置表,确定这些设施中的发电机如何进行继电器保护。在此基础上,本文指导了继电器功能的配置。此外,还确定了可以为所有发电机设置的功能参数,并对发电机区域外部的电力系统中的短路进行了研究,从而确定了针对不同故障类型和系统配置的单个发电机的电流贡献。研究表明,发电机继电器无法检测到与其连接的其他总线上的短路。在此总线上,来自单个发电机的电流贡献不受连接到总线的其他设备的影响。这证明了在升级发电机继电器时不必进行此类研究。

著录项

  • 作者

    Sundal Eirik;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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