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Performance of an autonomous diesel-wind turbine power system

机译:自主式柴油-风力发电机动力系统的性能

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The feasibility of installing a 2.5 MW wind farm within an isolated power system in Western Australia is examined. This network is at present being supplied by several diesel generators. The main design consideration is the dynamic interaction between these generators and the wind turbines. The paper begins with a discussion of the results of field tests carried out on the diesel units. The performance of these alternators under disturbance conditions is assessed and the test results are used to derive improved computer representations for the generators. The proposed wind farm employs induction generators. The behaviour of the hybrid diesel-wind turbine power system is then studied by assessing the effect of normal variations in the wind mechanical power on system frequency and voltages. It shows that the wind turbines would degrade the quality of the electrical supply by causing unacceptably large voltage and frequency excursions. Thus there is a need for fast automated control actions if the full potential of the wind farm is to be exploited. Consideration of other disturbance types also leads to this conclusion. The application of a static var compensator and upgrade of the diesel generator control systems are the two options examined. It is shown that these methods can alleviate the design problem satisfactorily.
机译:研究了在西澳大利亚州的隔离电力系统中安装2.5兆瓦风电场的可行性。该网络目前由几台柴油发电机提供。主要设计考虑因素是这些发电机与风力涡轮机之间的动态相互作用。本文首先讨论了对柴油机进行的现场测试的结果。评估了这些交流发电机在干扰条件下的性能,并将测试结果用于得出发电机的改进计算机表示形式。拟议的风电场采用感应发电机。然后,通过评估风力机械功率的正常变化对系统频率和电压的影响,研究混合动力柴油-风力涡轮机动力系统的性能。它表明,风力涡轮机会引起不可接受的较大的电压和频率偏移,从而降低电源质量。因此,如果要充分利用风电场的潜力,则需要快速的自动化控制措施。考虑其他干扰类型也会得出此结论。静态无功补偿器的应用和柴油发电机控制系统的升级是检查的两个选项。结果表明,这些方法可以较好地缓解设计问题。

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