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Distributed Generation of Electric Energy in Traction Power-Supply Systems of Railways Based on Wind-Power Plants

机译:基于风力发电厂的铁路牵引供电系统中的分布式发电

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AbstractThe assessment of the possibility to use the potential of wind energy for power supply of the traction railway network in the context of the area of Karatau in the southern region of the Republic of Kazakhstan, the main wind-energy characteristics of the region are determined. An comparison of the program is presented with the results of statistical processing of the data sets on the long-term monitoring of the wind indicators of the investigated region with wind-speed determination during a month, mathematical expectations, law of the probability density of wind-speed distribution for a month, diagrams of wind distribution according to days within a month, instantaneous values (gusts) of wind speed for 24 h, and average wind speed by time of day for a month. A diagram of a traction power-supply system with distributed energy generation is given based on wind-power plants, their equivalent circuit and design including the wind generators, rectifying and inverting converter units, as well as the electric-energy accumulator with the direct current converter. Theoretical dependences are obtained to determined additional electric-energy losses in the traction network during redistribution of energy in the traction power-supply system from the main traction substations to energy-storage units at the “wind” traction substations during periods of an unfavorable wind situation in the region. The operation regimes of the electric-power facilities incorporated into the traction powersupply system and “wind” traction substations are described taking into account the pure traction mode from the wind electricity generator, power supply of trains from energy-storage units under conditions of the insufficient wind force, and energy-recovery regimes during braking of the trains, as well as with qualitative determination of their operating parameters. The main electrical characteristics of the equipment of the “wind” traction substations are determined.
机译:摘要 在哈萨克斯坦共和国南部地区卡拉陶地区,利用风能潜力为牵引铁路网供电的可能性评估确定该地区的主要风能特征。对该程序进行了比较,并对数据集的统计处理结果进行了长期监测,该数据集用于长期监测被调查区域的风向指标,并确定一个月的风速,数学期望,风的概率密度定律-一个月的风速分布,一个月内根据天数的风向分布图,24小时的风速瞬时值(阵风)以及一个月中一天中不同时段的平均风速。基于风力发电厂,给出了具有分布式能量产生的牵引供电系统图,其等效电路和设计包括风力发电机,整流和逆变转换器单元以及直流电蓄能器转换器。理论上的依赖关系可以确定在不利的风况期间,在将牵引电源系统中的能量从主牵引子站重新分配到“风能”牵引子站的储能单元期间,确定牵引网中的其他电能损失在该区域。描述了结合到牵引供电系统和“风力”牵引变电站的电力设施的运行方式,其中考虑了来自风力发电机的纯牵引方式,在能量不足的情况下来自储能单元的列车供电列车制动过程中的风力,能量回收方式,以及定性确定其运行参数。确定了“风能”牵引变电站设备的主要电气特性。

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