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Power Information Verification Method Based on Grid Three-State Data

机译:基于电网三态数据的电力信息验证方法

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For a large number of transient, dynamic, steady and electric power data generated in the operation of power system, a power information verification method based on grid three-state data is proposed. The new accurate target function of dynamic total wave active power and time is fitted by collecting the active power information of steady state total wave active power and dynamic base wave. The amplitude of electric quantity is calculated and compared with the information collected at the same time period, so that the amplitude of electric quantity is verified. Transient voltage and current information is collected. Then the transient active power is calculated. The objective function of active power and time is fitted. The target function of electric quantity and time is converted by calculation and compared with the collection information of electric quantity, so that the time offset of electric quantity is verified. The data points with wrong power collection are removed. A calibration technique and method for data quality control and rapid elimination of incorrect power collection points is provided. A powerful analytical diagnostic method is provided to production schedulers. This paper is supported by an in-depth research project based on grid three-state data fusion and verification technology. Accuracy analysis of electric quantity is the key to the reliable development of power supply enterprises. The accurate analysis of electric quantity is of great significance to the project investment and production management of electric power enterprises.
机译:针对电力系统运行中产生的大量暂态,动态,稳定和电力数据,提出了一种基于电网三态数据的电力信息验证方法。通过收集稳态总波有功功率和动态基波的有功功率信息,拟合了动态总波有功功率和时间的新的精确目标函数。计算电量的振幅,并将其与在相同时间段收集的信息进行比较,从而验证电量的振幅。收集瞬态电压和电流信息。然后计算瞬态有功功率。拟合了有功功率和时间的目标函数。通过计算转换电量和时间的目标函数,并将其与电量的收集信息进行比较,从而验证电量的时间偏移。功率收集错误的数据点将被删除。提供了用于数据质量控制和快速消除不正确的功率收集点的校准技术和方法。为生产调度程序提供了一种功能强大的分析诊断方法。本文是基于网格三态数据融合和验证技术的深入研究项目的支持。电量准确度分析是供电企业可靠发展的关键。电量的准确分析对电力企业的项目投资和生产管理具有重要意义。

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