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The influence of the EV charging station's large-scale access to the backbone network

机译:电动汽车充电站大规模接入骨干网的影响

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In order to study the load characteristics of the electric vehicle charging station and analyze the influence of the charging station's large-scale access to the regional power grid, the following measures have been taken: first, analysis of the modeling with power functions that is commonly used in the electric power system load modeling; second, analysis of the energy storage and charging systems' working principles and working modes; third, conversion of the two systems into a constant capacitive impedance load equivalent and a constant power load equivalent respectively and develop a power function model for each of them accordingly; fourth, use of the linear polynomial to express the charging station's mixed load model of bus voltage and frequency; fifth, test of the rationality of the mixed load model by comparing the daily load curves produced by the mixed load model and the MATLAB simulation model; finally, use of PSCAD simulation method to build a backbone n et work and connect the Shenzhen charging stations equivalent load to the backbone model bus. The result is that the large-scale access of charging stations equivalent load can cause a sudden drop in the bus voltage and frequency. Therefore, the developed mixed load model is of great significance to the study of load characteristics of charging stations and the impact of their great access to the backbone network on the network security and stability.
机译:为了研究电动汽车充电站的负荷特性并分析充电站大规模接入区域电网的影响,采取了以下措施:首先,分析通常具有功率函数的建模用于电力系统负荷建模;其次,分析储能和充电系统的工作原理和工作方式;第三,将两个系统分别转换为恒定电容性阻抗负载当量和恒定功率负载当量,并据此分别为它们建立功率函数模型。第四,利用线性多项式来表达充电站的母线电压和频率的混合负载模型;第五,通过比较混合负荷模型和MATLAB仿真模型产生的日负荷曲线,检验混合负荷模型的合理性。最后,利用PSCAD仿真方法建立了骨干网络,并将深圳充电站等效负荷连接到骨干模型总线上。结果是,充电站的等效负载的大规模接入会导致母线电压和频率突然下降。因此,建立混合负载模型对研究充电站的负载特性及其对骨干网的接入对网络安全性和稳定性的影响具有重要意义。

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