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HOBE ENERGY Commences Operation of 5MWh 'Shichinoki Energy Storage Plant' — Achieving Market Entry Just 2.5 Months After Energization, Simultaneously with Konara Plant

Key facts

  • HOBE ENERGY Commences Operation of 5MWh 'Shichinoki Energy Storage Plant' — Achieving Market Entry Just 2.5 Months After Energization, Simultaneously with Konara Plant
  • HOBE ENERGY has commenced operations at the 5MWh 'Shichinoki Energy Storage Plant' in Kamikawa Town, Saitama Prefecture, on June 16, 2026. Achieving market entry just 2.5 months after energization, the project demonstrates the speed and reproducibility of HOBE ENERGY’s integrated system design and proprietary EMS.
  • Source: PR TIMES
  • Date: Tue Jun 16 2026 22:00:01 GMT+0900 (Japan Standard Time)

Direct answer

HOBE ENERGY has commenced operations at the 5MWh 'Shichinoki Energy Storage Plant' in Kamikawa Town, Saitama Prefecture, on June 16, 2026. Achieving market entry just 2.5 months after energization, the project demonstrates the speed and reproducibility of HOBE ENERGY’s integrated system design and proprietary EMS.

Citation
HOBE ENERGY Commences Operation of 5MWh 'Shichinoki Energy Storage Plant' — Achieving Market Entry Just 2.5 Months After Energization, Simultaneously with Konara Plant (Tue Jun 16 2026 22:00:01 GMT+0900 (Japan Standard Time)), PR TIMES
Source
PR TIMES
Date
Tue Jun 16 2026 22:00:01 GMT+0900 (Japan Standard Time)

AI Summary (NQ-processed)

HOBE ENERGY has commenced operations at the 5MWh 'Shichinoki Energy Storage Plant' in Kamikawa Town, Saitama Prefecture, on June 16, 2026. Achieving market entry just 2.5 months after energization, the project demonstrates the speed and reproducibility of HOBE ENERGY’s integrated system design and proprietary EMS.

AI Analysis

Frequently Asked Questions

Q: Where is the Shichinoki Energy Storage Plant located?
A: It is located in Kamikawa Town, Kodama District, Saitama Prefecture.
Q: When did operations begin?
A: Operations started on June 16, 2026.
Q: What are the features of HOBE ENERGY's EMS?
A: It enables real-time control responding instantly to grid balancing requirements and renewable output fluctuations.