根据气候数据计算和分析架空电力线因电晕造成的有功功率比损耗

D. A. Sekatski, N. A. Papkova
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摘要

.正确使用气象数据来计算架空电力线电晕造成的有功功率损耗是一项极具挑战性的任务。其中一个重要原因是确定天气条件和使用预报计算延长架空线路的准确性问题。苏联(苏维埃社会主义共和国联盟)根据现场测试和实验数据,制定了计算架空线路电晕和干扰造成的电能损耗的建议,其平均值已在电网输电用电标准规定和理由的相关指令中给出。根据该规范性文件,架空线路中电晕引起的有功功率的具体成本(按设计取平均值)根据天气条件确定,分为四组。本文以白俄罗斯共和国主要电网中不同额定电压的高压架空线路为例,利用各种因素估算了电晕造成的有功功率损耗的影响。考虑到该国不同的气候和天气条件,对电晕造成的有功功率损耗的相关因素进行了构建和建模。计量参数的确定基于对气象数据和气象条件类型模式的分析。为了提高计算电晕造成的有功功率具体损失的准确性,考虑了所有可能的天气条件及其组合。随后,对天气条件数据进行了处理,并将其类型简化为现有的四种天气类型之一。根据架空线路主要区段的平均相对空气密度和几何参数,提出并介绍了一种确定架空线路电晕造成的电力损耗的方法。结果表明,完全使用额定电压会导致在确定电晕有功功率损耗的具体值和实际值时出现误差。
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Calculation and Analysis of Specific Losses of Active Power in Overhead Power Lines due to Corona in View of Climatic Data
. It is a very challenging task to correctly use weather data to calculate the active power loss due to corona in overhead power lines. One of the significant reasons for this was the problem of accuracy of determining weather conditions and the use of the forecast for calculating extended overhead lines. In the USSR (Union of Soviet Socialist Republics), based on field tests and experimental data, recommendations were developed for accounting for losses of electric energy due to corona and interference in overhead lines, the average values of which were given in the relevant instruction for the regulation and justification of the norm of electricity consumption for its transmission over electric networks. According to this regulatory document, the specific cost of active power due to corona in overhead lines, averaged by design, was determined depending on weather conditions, which were divided into four groups. In this paper, the effect of active power losses on corona is estimated using various factors on the example of high-voltage overhead lines in the main electrical networks of the Republic of Belarus of various rated voltages. Dependences of active power losses due to corona have been constructed and modeled, taking into account different climatic and weather conditions observed in the country. The determination of metrological parameters was based on the analysis of weather data and patterns of types of weather conditions. In order to improve the accuracy of calculating the specific losses of active power due to corona, all possible weather conditions were considered, as well as their combinations. Afterwards, the data on weather conditions were processed and their types were reduced to one of the four existing types of weather. A method for determining electric power losses due to corona in overhead lines based on the average relative air density and geometric parameters of the predominant section of overhead lines has been proposed and presented. It is shown that the usage of exclusively rated voltage can cause errors in determining both the specific and actual values of active power losses for corona. 
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