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USE OF STATISTICAL ANALYSIS IN POWER PLANT PERFORMANCE MONITORING

机译:统计分析在电厂性能监测中的应用

摘要

pA technique of implementing performance monitoring in a power plant is appropriate to control operating parameters and factors connected with the efficiency of the energy production process in an energy marketplace that is more complex than in the past, and that takes into account more than just the cost of fuel. In particular, this method works well when the real costs of production are dependent on other variable costs besides the cost of fuel, such as environmental credits, equipment degradation and repair costs, as well as electrical energy trade market factors like ramp rate, LMP factors, and the ability to deliver contracted power levels and spot transactions. The power plant performance monitoring technique applies a statistical analysis to collected power plant data to determine the factors that are best controlled or changed to affect (increase) the efficiency or other primary performance indication of the plant, in whatever state or operating level the plant is run. Because heat rate calculation applications are typically performed on-line, it is possible to analyze collected plant data in detail and to apply for example, principal component analysis (PCA) and linear and nonlinear regression analysis to the data, which enables the performance method to obtain a more accurate detection of the influence of the principal process parameters that affect heat rate deviation (efficiency), as well as to establish baseline or best-possible operational constraints to be used to control the plant in the future. This performance based control methodology will allow for near optimum performance of power plants by constantly allowing for refinement and best practices and control to be realized./p [WO2008112823A1]
机译:>在电厂中执行性能监视的技术适合于控制与过去相比更为复杂的能源市场中与能源生产过程的效率相关的运行参数和因素,并且该因素考虑了只是燃料成本。特别是,当生产的实际成本还取决于除燃料成本之外的其他可变成本(例如环境信用,设备降级和维修成本以及电能贸易市场因素,如斜坡率,LMP因素)时,此方法非常有效,以及提供合同规定的功率水平和现货交易的能力。发电厂性能监视技术对收集的发电厂数据进行统计分析,以确定在工厂处于何种状态或运行级别时,受到最佳控制或更改以影响(提高)电厂效率或其他主要性能指标的因素跑。由于热费率计算应用程序通常是在线执行的,因此可以详细分析收集的工厂数据,并且可以对数据应用例如主成分分析(PCA)以及线性和非线性回归分析,这使得性能方法能够获得对影响热效率偏差(效率)的主要工艺参数的影响的更准确检测,并建立基线或最佳可能的操作约束,以用于将来控制工厂。这种基于性能的控制方法,将通过不断实现改进,最佳实践和控制来实现发电厂的最佳性能。 [WO2008112823A1]

著录项

  • 公开/公告号IN294312B

    专利类型

  • 公开/公告日2018-03-16

    原文格式PDF

  • 申请/专利权人

    申请/专利号IN5940/CHENP/2009

  • 发明设计人

    申请日2008-03-12

  • 分类号

  • 国家 IN

  • 入库时间 2022-08-21 12:51:33

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