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Utilization of a Time Domain Simulator in the Technical and Economic Analysis of a Wind Turbine Electric Drive Train

机译:时域模拟器在风力发电机组电力传动技术经济分析中的应用

摘要

The amount of installed wind power has been growing exponentially during the past ten years. As wind turbines have become a significant source of electrical energy, the interactions between the turbines and the electric power network need to be studied more thoroughly than before. Especially, the behavior of the turbines in fault situations is of prime importance; simply disconnecting all wind turbines from the network during a voltage drop is no longer acceptable, since this would contribute to a total network collapse. These requirements have been a contributor to the increased role of simulations in the study and design of the electric drive train of a wind turbine. When planning a wind power investment, the selection of the site and the turbine are crucial for the economic feasibility of the installation. Economic feasibility, on the other hand, is the factor that determines whether or not investment in wind power will continue, contributing to green electricity production and reduction of emissions. In the selection of the installation site and the turbine (siting and site matching), the properties of the electric drive train of the planned turbine have so far been generally not been taken into account. Additionally, although the loss minimization of some of the individual components of the drive train has been studied, the drive train as a whole has received less attention. Furthermore, as a wind turbine will typically operate at a power level lower than the nominal most of the time, efficiency analysis in the nominal operating point is not sufficient. This doctoral dissertation attempts to combine the two aforementioned areas of interest by studying the applicability of time domain simulations in the analysis of the economicfeasibility of a wind turbine. The utilization of a general-purpose time domain simulator, otherwise applied to the study of network interactions and control systems, in the economic analysis of the wind energy conversion system is studied. The main benefits of the simulation-based method over traditional methods based on analytic calculation of losses include the ability to reuse and recombine existing models, the ability to analyze interactions between the components and subsystems in the electric drive train (something which is impossible when considering different subsystems as independent blocks, as is commonly done in theanalytical calculation of efficiencies), the ability to analyze in a rather straightforward manner the effect of selections other than physical components, for example control algorithms, and the ability to verify assumptions of the effects of a particular design change on the efficiency of the whole system. Based on the work, it can be concluded that differences between two configurations can be seen in the economic performance with only minor modifications to the simulation models used in the network interaction and control method study. This eliminates the need ofdeveloping analytic expressions for losses and enables the study of the system as a whole instead of modeling it as series connection of independent blocks with no lossinterdependencies. Three example cases (site matching, component selection, control principle selection) are provided to illustrate the usage of the approach and analyze its performance.
机译:在过去的十年中,风力发电的装机量呈指数增长。由于风力涡轮机已成为重要的电能来源,因此与以前相比,需要更彻底地研究涡轮机与电力网络之间的相互作用。尤其是在故障情况下涡轮机的行为至关重要。在压降期间仅将所有风力涡轮机从网络上断开不再是可接受的,因为这将导致整个网络崩溃。这些要求促使仿真在风力涡轮机的电力传动系统的研究和设计中发挥了越来越重要的作用。在规划风力发电投资时,选择场地和涡轮机对于安装的经济可行性至关重要。另一方面,经济可行性是决定是否继续进行风能投资,促进绿色电力生产和减少排放的因素。在选择安装地点和涡轮机时(选址和位置匹配),到目前为止,通常并未考虑计划中的涡轮机的电力传动系统的特性。另外,尽管已经研究了传动系的一些单个部件的损耗最小化,但是传动系整体上受到的关注较少。此外,由于风力涡轮机通常大部分时间将以低于标称功率的功率水平运行,因此标称工作点的效率分析是不够的。该博士论文试图通过研究时域模拟在风力涡轮机经济可行性分析中的适用性来结合上述两个感兴趣的领域。在风能转换系统的经济分析中,研究了通用时域仿真器的应用,否则将其用于网络交互和控制系统的研究。与传统的基于损耗分析计算的方法相比,基于仿真的方法的主要优点包括重用和重组现有模型的能力,分析电力传动系统中组件和子系统之间的相互作用的能力(考虑到这一点是不可能的)不同的子系统作为独立的模块,如在效率的分析计算中通常所做的),以相当直接的方式分析除物理组件以外的选择的影响的能力,例如控制算法,以及验证对影响的假设的能力对整个系统的效率进行特定的设计更改。根据这项工作,可以得出结论,只有对网络交互和控制方法研究中使用的仿真模型进行较小的修改,才能在经济性能中看到两种配置之间的差异。这消除了开发损失分析表达式的需要,并使整个系统的研究成为可能,而不是将其建模为没有损失相互依赖性的独立模块的串联连接。提供了三个示例案例(站点匹配,组件选择,控制原理选择)来说明该方法的用法并分析其性能。

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    Tiainen Risto;

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  • 年度 2010
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