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2021

Book Chapter

A comprehensive stability analysis of multi-converter-based DC microgrids

Habibullah, Mohammad, Mithulananthan, N., Sharma, Rahul and Shah, Md. Rakibuzzaman (2021). A comprehensive stability analysis of multi-converter-based DC microgrids. Emerging power converters for renewable energy and electric vehicles: modeling, design, and control. (pp. 281-314) edited by Md. Rabiul Islam, Md. Rakibuzzaman Shah and Mohd. Hasan Ali. Boca Raton, FL United States: CRC Press. doi: 10.1201/9781003058472-8

A comprehensive stability analysis of multi-converter-based DC microgrids

2020

Book Chapter

Integration of renewable energy in smart grid

Morais, H., Vale, Zita A., Soares, João, Sousa, T., Nara, Koichi, Theologi, Aimilia-Myrsini, Rueda, Jose, Ndreko, Mario, Erlich, István, Mishra, Sukumar, Pullaguram, Deepak, Faria, Pedro, Mori, Hiroyuki, Takahashi, Masato, Raza, Muhammad Qamar, Nadarajah, Mithulananthan, Shi, Ruifeng, Lee, Kwang Y., Rivera, Sergio and Romero, Andrés (2020). Integration of renewable energy in smart grid. Applications of Modern Heuristic Optimization Methods in Power and Energy Systems. (pp. 613-773) Hoboken, NJ United States: John Wiley & Sons. doi: 10.1002/9781119602286.ch6

Integration of renewable energy in smart grid

2016

Book Chapter

Technical challenges, security and risk in grid integration of renewable energy

Hung, Duong Quoc, Shah, Md Rakibuzzaman and Mithulananthan, N. (2016). Technical challenges, security and risk in grid integration of renewable energy. Smart power systems and renewable energy system integration. (pp. 99-118) edited by Dilan Jayaweera. Cham, Switerland: Springer International Publishing. doi: 10.1007/978-3-319-30427-4

Technical challenges, security and risk in grid integration of renewable energy

2015

Book Chapter

PEV load and its impact on static voltage stability

Dharmakeerthi, C. H. and Mithulananthan, N. (2015). PEV load and its impact on static voltage stability. Plug-In Electric Vehicles in Smart Grids: Integration Techniques. (pp. 221-248) edited by Sumedha Rajakaruna, Farhad Shahnia and Arindam Ghosh. Dordrecht, Netherlands: Springer. doi: 10.1007/978-981-287-299-9_8

PEV load and its impact on static voltage stability

2014

Book Chapter

A review of interconnection rules for large-scale renewable power generation

Aziz, Tareq, Saha, Tapan K. and Mithulananthan, Nadarajah (2014). A review of interconnection rules for large-scale renewable power generation. Large scale renewable power generation: advances in technologies for generation, transmission and storage. (pp. 151-171) edited by Jahangir Hossain and Apel Mahmud. Signapore: Springer Science+Business Media. doi: 10.1007/978-981-4585-30-9_6

A review of interconnection rules for large-scale renewable power generation

2011

Book Chapter

Distributed Generation: A Power System Perspective

Mathur, Hitesh D., Hien, Nguyen Cong, Mithulananthan, Nadarajah, Joshi, Dheeraj and Bansal, Ramesh C. (2011). Distributed Generation: A Power System Perspective. Handbook of renewable energy technology. (pp. 563-585) edited by Ahmed F. Zobaa and Ramesh Bansal. Singapore: World Scientific. doi: 10.1142/9789814289078_0022

Distributed Generation: A Power System Perspective

2011

Book Chapter

DG Allocation in Primary Distribution Systems Considering Loss Reduction

Hung, Duong Quoc and Nadarajah, Mithulananthan (2011). DG Allocation in Primary Distribution Systems Considering Loss Reduction. Handbook of renewable energy technology. (pp. 587-635) edited by Ahmed F. Zobaa and Ramesh Bansal. Singapore: World Scientific. doi: 10.1142/9789814289078_0023

DG Allocation in Primary Distribution Systems Considering Loss Reduction

2007

Book Chapter

Voltage Stability Assessment and Enhancement of the Thailand Power System

Sode-Yome, Arthit, Mithulananthan, Nadarajah and Lee, Kwang Y. (2007). Voltage Stability Assessment and Enhancement of the Thailand Power System. Power Plants and Power Systems Control 2006. (pp. 119-121) Elsevier Ltd. doi: 10.1016/B978-008046620-0/50020-7

Voltage Stability Assessment and Enhancement of the Thailand Power System