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窦胜, 刘国鹏. 电动汽车充换电安全风险多层级智能防控及系统应用技术研究[J]. 农村电气化, 2023, (6): 60-64. DOI: 10.13882/j.cnki.ncdqh.2023.06.015
引用本文: 窦胜, 刘国鹏. 电动汽车充换电安全风险多层级智能防控及系统应用技术研究[J]. 农村电气化, 2023, (6): 60-64. DOI: 10.13882/j.cnki.ncdqh.2023.06.015
DOU Sheng, LIU Guopeng. Research on Multi-layer Intelligent Prevention and Control of Safety Risks in Electric Vehicle Charging and Switching and System Application Technology[J]. RURAL ELECTRIFICATION, 2023, (6): 60-64. DOI: 10.13882/j.cnki.ncdqh.2023.06.015
Citation: DOU Sheng, LIU Guopeng. Research on Multi-layer Intelligent Prevention and Control of Safety Risks in Electric Vehicle Charging and Switching and System Application Technology[J]. RURAL ELECTRIFICATION, 2023, (6): 60-64. DOI: 10.13882/j.cnki.ncdqh.2023.06.015

电动汽车充换电安全风险多层级智能防控及系统应用技术研究

Research on Multi-layer Intelligent Prevention and Control of Safety Risks in Electric Vehicle Charging and Switching and System Application Technology

  • 摘要: 随着政策的支持和规模化电动汽车接入电网,用电安全越来越受到关注,包括车、桩、网和人的安全。在这个环节中,充电桩作为电力传输的介质,安全风险犹为须要重视。针对充换电设备本地和其平台的研究,通过冗余保护、功率调配单元和智慧运营平台的联动机制,实现电动汽车充换电安全风险多层级智能防控。首先,充换电设备结合现有国标,优化设备选型和功能设计,降低安全风险;其次,鉴于变压器扩容不便、但同时满足多车辆同时充电的现状,采用增设功率调配单元监控充电需求与剩余电力容量,达到需求与能力有效平衡;最后,为共享分支箱和延用原有塑壳断路器及其电力线缆,保证设备的最大化使用的同时,采用智慧运营平台进行精准防范和控制。

     

    Abstract: With the support of policies and the integration of large-scale electric vehicles into the power grid, electricity safety is receiving increasing attention, including the safety of vehicles, piles, networks, and people. In this process, as the medium for power transmission, the safety risks of the charging station still do not need to be taken seriously. Research on local and platform charging and swapping equipment, through the linkage mechanism of redundant protection, power allocation units, and smart operation platforms, to achieve multi-level intelligent prevention and control of safety risks in electric vehicle charging and swapping. Firstly, the charging and swapping equipment should be combined with existing national standards to optimize equipment selection and functional design, and reduce safety risks; Then, considering the inconvenient expansion of transformers but the current situation of meeting the simultaneous charging of multiple vehicles, an additional power allocation unit is added to monitor the charging demand and remaining power capacity, achieving an effective balance between demand and capacity. Finally, in order to share branch boxes and extend the use of existing molded case circuit breakers and their power lines, while ensuring the maximum use of equipment, intelligent operation platforms are used for precise prevention and control.

     

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