Analiza kvaliteta električne energije na satnom nivou kod priključenja elektrana na obnovljive izvore energije

Miroslav Žerajić, Milan Stojanović
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Abstract

Analyses necessary for the new power plant connection contain the following power quality analyses carriedout using the simulation model: Estimation of the emission level of the voltage waveform asymmetry at the point of connection, estimation of the high harmonic components at the connection point and estimation of the emission level of long-term and shortterm flicker. Limits for the previously mentioned parameters have been defined in the National Grid Code (at the national level) or in the international standards. According to the international standards, the limit is considered violated if the duration of the parameter value violation exceeds 5% of the monitored period. Conventional approach of power quality analysis through software tool assumes only analysis for the most critical regime: when the short-circuit power at the point of connection is the lowest and the new power plant produces maximum active power. Based on this approach mitigation measures for improving power quality supply are sometimes suggested to the plant investor. In should be noted that Renewable Energy Sources (RES) do not have maximum output power during the whole year, and consequently, power quality deterioration is much less than in the critical regime observed in the simulations. For power quality simulation purposes, technical sheets of the equipment contain high harmonic levels for the full operation range are used from which usually the worst (highest) harmonic injections are considered for modelling RES as a harmonic source. In this paper, the results of power quality analyses for the RES connection using hourly resolution data for the one-year period based on DPL (DIgSILENT Programming Language) in DIgSILENT PowerFactory software package will be presented. This approach gives the duration of the limit violation, and consequently, more reliable results in comparison with the results of the conventional approach.
新电厂并网所需的分析包括以下使用仿真模型进行的电能质量分析:并网点电压波形不对称的发射水平估计、并网点高谐波分量的估计以及长期和短期闪变的发射水平估计。上述参数的限制已在国家电网规范(在国家一级)或国际标准中定义。根据国际标准,如果参数值违反的时间超过监测时间的5%,则视为违反了该限值。通过软件工具进行电能质量分析的传统方法只假设对最关键的状态进行分析,即接入点的短路功率最低,新电厂产生的有功功率最大。基于这种方法,有时会向电厂投资者提出改善供电质量的缓解措施。值得注意的是,可再生能源(RES)在全年中没有最大输出功率,因此,电能质量的恶化远小于模拟中观察到的临界状态。出于电能质量模拟的目的,设备的技术表包含全工作范围的高谐波电平,通常从最坏(最高)谐波注入被认为是模拟RES作为谐波源。本文将介绍基于DIgSILENT PowerFactory软件包中的DPL (DIgSILENT编程语言),利用每小时分辨率数据对RES连接进行为期一年的电能质量分析的结果。该方法给出了违反极限的持续时间,因此,与传统方法的结果相比,结果更可靠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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