首页> 外文会议>IEEE Power and Energy Society General Meeting >Managing system frequency dynamics in small power system by hydro generating unit operated in Tail Water Depress (TWD) mode with use of Feed Forward Controls
【24h】

Managing system frequency dynamics in small power system by hydro generating unit operated in Tail Water Depress (TWD) mode with use of Feed Forward Controls

机译:通过使用前馈控制功能以尾压降低(TWD)模式运行的水力发电机组管理小型电力系统中的系统频率动态

获取原文

摘要

This paper details the investigation of a large frequency excursion of 2.28 Hz, experienced in the New Zealand power system on 1st August 2009 when the HVDC interconnector tripped, resulting in a power deficiency in South Island power system. A major portion of the spinning reserve to cover for this contingent event was provided by generating units operated in Tail Water Depressed (TWD) mode which were found to perform unsatisfactory. A system wide investigation into this frequency excursion event was initiated with a number of modelling and operation issues being identified. The errors in modelling information and delay in the TWD operation are the main factors that caused system frequency to fall more than what was predicted by the software tools. A brief explanation of TWD Feed Forward Control system and the models used in the Reserve Management Tool (RMT) are provided. There is also reconsideration of the modelling of inertia in a DC model using a simple first order equation. The limitations of such a model are demonstrated, as are the importance of modelling the correct number of synchronized generators, with calculated (not tested) inertia constants. A number of solutions to the problems discovered are discussed.
机译:本文详细研究了2009年8月1日在新西兰电力系统中发生的2.28 Hz大频率偏移,该故障发生在HVDC互连器跳闸,从而导致南岛电力系统出现电力不足时。为应付这一偶然事件,纺丝储备的主要部分是由尾压降低(TWD)模式运行的发电机组提供的,发现这些发电机组的运行情况不尽人意。对该频率偏移事件进行了系统范围的调查,发现了许多建模和操作问题。建模信息中的错误以及TWD运行中的延迟是导致系统频率下降的幅度超过软件工具所预期的主要原因。提供了TWD前馈控制系统的简要说明以及储备管理工具(RMT)中使用的模型。还需要重新考虑使用简单的一阶方程的DC模型中的惯性建模。证明了这种模型的局限性,以及用计算的(未经测试的)惯性常数对正确数量的同步发电机建模的重要性。讨论了许多解决所发现问题的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号