蓄能系统对直流断面有功点母线电压水平影响的评估

V. Nezevak
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引用次数: 0

摘要

研究蓄电系统牵引供电系统的再生制动对目标母线电压水平的影响过程。在调查中,采用了模拟建模和分析的方法,可以在考虑的变电站间区域范围内对不同条件下的电力牵引负荷形成进行计算。研究的新颖之处在于在再生制动和充电特性变化的情况下,蓄电系统的工作模式对牵引供电对象母线电压水平的影响。在调查过程中,获得了以下结果:对存储系统的功周期变化进行了估计;定义了电荷深度变化与额定功耗的关系;计算了图中电荷优势条件下的电荷特性;定义了牵引供电系统目标母线电压变化的特征;定义了根据再生制动使用条件调整充电特性的必要性。再生制动的使用对在额定间隔的充电度图中由充电优势条件形成的充电特性产生影响,并允许增加充电特性的第二阶段的电流,从而降低第一级相邻牵引变电站在充电时造成的电压损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSMENT OF ENERGY ACCUMULATION SYSTEM IMPACT UPON VOLTAGE LEVEL ON BUSES OF ACTIVE POINT OF DC SECTIONING
The work purpose is to estimate and investigate processes of the regenerative braking impact upon a voltage level on object buses of the system of traction power supply at electricity storage systems. In the investigation there are used methods of imitation modeling and analytical ones allowing the fulfillment of calculations for different conditions of the electric traction load formation within the limits of inter-substation areas under consideration. The work novelty consists in the approach to the estimation of the working mode impact of electricity storage systems upon the voltage level on buses of the objects of traction power supply under conditions of regenerative braking and charge characteristics changes. In the course of the investigation there are obtained the following results: the work cyclicity change estimation of a storage system is carried out; the dependence of a charge depth change upon rated power consumption is defined; charge characteristics for conditions of charge predominance in the diagram are calculated; the character of voltage changes on object buses of the system of traction power supply is defined; the necessity of charge characteristic adaptation depending on conditions of regenerative braking use is defined. The regenerative braking use makes an impact upon charge characteristics formed from the condition of charge predominance in the diagram of a charge degree at the rated interval and allows increasing currents of the second stage of the charge characteristics allowing the decrease voltage loss at charge realization caused by adjacent traction substations at the first stage.
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