Cite this article

Performance Evaluation of Grid-Connected Hybrid Solar Photovoltaic–Wind–Battery Energy Storage Systems Across Three Climatic Zones in India: A 36-Month Multi-Site Field Deployment Case Study
https://www.ijama.in/papers?paper=Performance+Evaluation+of+Grid-Connected+Hybrid+Solar+Photovoltaic%E2%80%93Wind%E2%80%93Battery+Energy+Storage+Systems+Across+Three+Climatic+Zones+in+India%3A+A+36-Month+Multi-Site+Field+Deployment+Case+Study

APA

Emmanuel O. Nwosu & Annika Berglund. (2026). Performance Evaluation of Grid-Connected Hybrid Solar Photovoltaic–Wind–Battery Energy Storage Systems Across Three Climatic Zones in India: A 36-Month Multi-Site Field Deployment Case Study. International Journal of Advanced Multidisciplinary Application (IJAMA), 88-94.

MLA

Emmanuel O. Nwosu, et al.. "Performance Evaluation of Grid-Connected Hybrid Solar Photovoltaic–Wind–Battery Energy Storage Systems Across Three Climatic Zones in India: A 36-Month Multi-Site Field Deployment Case Study." International Journal of Advanced Multidisciplinary Application (IJAMA), 2026, pp. 88-94.

BibTeX

@article{emmanuelonwosu2026,
  title   = {Performance Evaluation of Grid-Connected Hybrid Solar Photovoltaic–Wind–Battery Energy Storage Systems Across Three Climatic Zones in India: A 36-Month Multi-Site Field Deployment Case Study},
  author  = {Emmanuel O. Nwosu and Annika Berglund},
  journal = {International Journal of Advanced Multidisciplinary Application (IJAMA)},
  year    = {2026},
  pages   = {88-94},
  issn    = {3048-9350 (Online)},
}
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RIS (EndNote / Zotero / Mendeley)

TY  - JOUR
AU  - Emmanuel O. Nwosu
AU  - Annika Berglund
TI  - Performance Evaluation of Grid-Connected Hybrid Solar Photovoltaic–Wind–Battery Energy Storage Systems Across Three Climatic Zones in India: A 36-Month Multi-Site Field Deployment Case Study
JO  - International Journal of Advanced Multidisciplinary Application (IJAMA)
PY  - 2026
SP  - 88-94
SN  - 3048-9350 (Online)
UR  - https://www.ijama.in/papers?paper=Performance+Evaluation+of+Grid-Connected+Hybrid+Solar+Photovoltaic%E2%80%93Wind%E2%80%93Battery+Energy+Storage+Systems+Across+Three+Climatic+Zones+in+India%3A+A+36-Month+Multi-Site+Field+Deployment+Case+Study
ER  - 
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