2025/02/22 by Yanxue Li, Xiao Fu, Xiaoyi Zhang +4 · 1 voice
Engineering · #Infrastructure Resilience and Vulnerability Analysis #Smart Grid Security and Resilience
paper · pdf · doi:10.1038/s43247-025-02126-2
openalex publication_date 2025/02/22 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/23
As climate change intensifies, the adverse impacts of extreme weather events on energy supply systems will increase. Here, we collected energy grid utility datasets to illustrate causes and recovery processes of extended power outages induced by typhoon events in Japan. We also assessed the performance of demand-side solutions to enhance home energy resilience using household load profiles. We show that power outages present similar recovery curves, with full restoration times highly dependent on maximum wind velocities and affected regions. Ensuring a 24-hour self-energy supply is essential to mitigate outage impacts. Further, our results highlight the importance of off-grid energy storage or production in sustaining critical household energy loads under extended outage conditions. Building electrification scenarios challenges meeting increased demand under power outages. Building electrification and resiliency should be designed in tandem to improve energy security. Findings shed light on the effectiveness of demand-side solutions in enhancing Japan’s home energy resilience. In Japan, extreme typhoon events trigger extended power outages, and self-power generations help meet critical loads and improve home energy resiliency, according to an analysis that uses energy utility datasets and household load profiles.