Analysis of the Path to Build a New Power System for the Guangzhou Power Grid
DOI:
https://doi.org/10.61173/v2yhjg30Keywords:
Carbon Peak, Carbon Neutral, Low-carbon Technologies, New Power Systems, Power System PlanningAbstract
Since the beginning of the modern era, countries have begun to study how to develop without further damaging the environment. For the power industry, a new type of power system must be built to reach carbon peak and carbon neutral. The paper focuses on Guangzhou city as an example, and starts from the current situation of the power system in Guangzhou, analyses the various indicators of the power system such as the number and location of the converting stations in Guangzhou. Besides, the paper analyses the existing problems includes pressure on optimization and transformation of energy structure, low level of intelligence in smart grids and so on. The article also summarizes a variety of key technologies for building a new type of power system. In addition, the paper puts forward a brief method of building a new type of power system in Guangzhou, which provides a reference for the further development of Guangzhou City.References
[1] Zheng, X. Electricity consumption soars in 2024 with tech and EV growth. https://gxj.gz.gov.cn/zt/dlys/tpxw/content/ mpost_8642745.html
[2] Zhang Zhigang, Kang Chongqing. Challenges and Prospects of Building New Power Systems under Carbon Neutrality. Proceedings of the CSEE,2022,42(08):2806-2819.
[3] Liu Weiming, Chen Jian, LIU Dongsheng. Comparative study on key indicators of Power grid between Guangzhou and international advanced cities. East China Electric Power,2014,42(07):1341-1345.
[4] Huang Yuhan, Ding Tao, Li Yuting, et al. Overview of lowcarbon energy technologies in the context of carbon neutrality and its implications for the development of new power systems. Proceedings of the CSEE,2021,41(S1):28-51.
[5] Xu Hui. Research on Improving Power Supply Reliability of Important Users based on Microgrid. Power Equipment Management,2020,(11):106-107.
[6] Han Xiaoqing, LI Tingjun, Zhang Dongxia, et al. New problems and key technologies of new power system planning under dual-carbon target. High voltage technolo gy,2021,47(09):3036-3046.
[7] Kroposki B, Johnson B, Zhang Y, et al. Achieving a 100% renewable grid: Operating electric power systems with extremely high levels of variable renewable energy. IEEE Power and energy magazine, 2017, 15(2): 61-73.
[8] Dileep, G. J. R. E. A survey on smart grid technologies and applications. Renewable energy, 2020,146: 2589-2625.
[9] Nehrir, M. H., et al. A review of hybrid renewable/alternative energy systems for electric power generation: Configurations, control, and applications. IEEE transactions on sustainable energy,2011,2(4): 392-403.
[10] Boroyevich, Dushan, et al. Future electronic power distribution systems a contemplative view. 2010 12th International Conference on Optimization of Electrical and Electronic Equipment. IEEE, 2010.
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