Design and Empirical Study of Human Computer Interaction Logic for Virtual Virtual Collaborative Interaction System of High Voltage Equipment in Intelligent Power Operation and Maintenance

Main Article Content

L. Yu
B. Wang
C. R. Zhu
X. F. Lu
A. N. Sheng

Abstract

Under the dual drive of new power system construction and digital transformation, the intelligent operation and maintenance of high-voltage equipment has become an important support for ensuring power-grid safety, operational reliability and stable energy supply. However, the traditional operation and maintenance model faces practical challenges such as high risks in physical space operations, incomplete perception of equipment status, reliance on experience for operation and maintenance decisions, and low efficiency in cross disciplinary collaboration. As the core carrier connecting physical devices and digital twin models, the scientific nature of its human-machine interaction logic directly determines the operational efficiency and safety of high-voltage maintenance by optimizing the interface between physical devices, digital twins and virtual monitoring systems. The virtual-real interaction logic is designed for high-voltage operation scenarios where strong electromagnetic environments affect safety and perception.

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How to Cite
Yu, L., Wang, B., Zhu, C. R., Lu, X. F., & Sheng, A. N. (2026). Design and Empirical Study of Human Computer Interaction Logic for Virtual Virtual Collaborative Interaction System of High Voltage Equipment in Intelligent Power Operation and Maintenance. Advanced Electromagnetics, 15(3), 7504–7512. https://doi.org/10.7716/aem.v15i3.3850
Section
Research Articles

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