Resilience of Power Enterprises and Optimization of Business Environment

Authors

  • Zhenpeng Gu

DOI:

https://doi.org/10.54691/nm5ds284

Keywords:

Power Grid Resilience; Business Environment; Extreme Climate; Power Reliability.

Abstract

In recent years, escalating global climate change and the frequent occurrence of extreme weather events have posed severe challenges to the stability of power systems. Power systems urgently need to transition from traditional "robustness" designs to more adaptive and restorative "resilience" designs. This study constructs a three-dimensional "technical-operational-organizational" analytical framework to systematically explore the impact of power grid enterprise resilience on the business environment. The research finds that vulnerabilities in grid infrastructure, inefficiencies in operational management, and inadequacies in the policy environment are the main constraints on resilience, while electricity service costs, supply reliability, and user satisfaction are key dimensions for optimizing the business environment. In the short term, resilience can be enhanced by strengthening critical nodes and optimizing emergency resources. In the medium to long term, sustainable development should be driven by digital twin technology, resilient grid standards, and cross-departmental collaboration mechanisms. The study provides theoretical foundations and practical pathways for power grid enterprises to address climate risks and improve the business environment.

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References

[1] Qiu, Y., Deng, N., Wang, B., Shen, X., Wang, Z., Hultman, N., et al., 2024. Power supply disruptions deter electric vehicle adoption in cities in china. Nat. Commun. 15 (1), 6041.

[2] Pinto Moreira, E., 2024. Morocco: growth, employment, and policies to avoid the middle-income trap, Avoiding the Middle-Income Trap in Africa: Economic Challenges and Policy Responses. Springer, pp. 259-318.

[3] Tran, T., Nong, D., Verikios, G., Marcos-Martinez, R., Lu, Y., Schandl, H., 2025. Newly updated nationally determined contributions: implications for the global energy transition. Econ. Anal. Policy 85, 1816-1829.

[4] Zhao, X., Li, X., Jiao, D., Mao, Y., Sun, J., Liu, G., 2024. Policy incentives and electric vehicle adoption in china: from a perspective of policy mixes. Transportation Research Part a: Policy and Practice 190, 104235.

[5] Guo, Z., Mao, X., Lu, J., Gao, Y., Chen, X., Zhang, S., et al., 2024. Can a new power system create more employment in china? Energy 295, 130977.

[6] Zhang, S., Liu, X., Wang, J., 2024. Research on the construction of a “full-chain” rapid response system for power emergencies. Heliyon 10 (4).

[7] Chen, K., Tie, Y., Li, M., 2024. Importance evaluation of power grid transmission lines based on multidimensional information feature mapping. Energies 17 (23), 6013.

[8] Shan, S., Li, Y., Su, J., Yang, Y., Wang, Y., Wang, Z., 2025. Why does the US dominate the digital economy? A strategic analysis based on the policy–coordination–talent framework and the policy implications for china. Systems-Basel 13 (5), 392.

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Published

2025-07-31

Issue

Section

Articles

How to Cite

Gu, Zhenpeng. 2025. “Resilience of Power Enterprises and Optimization of Business Environment”. Scientific Journal of Economics and Management Research 7 (7): 121-27. https://doi.org/10.54691/nm5ds284.