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Open Access research that is tackling the climate emergency...

Addressing the energy challenge confronting society is a strategic research theme for Strathclyde. Researchers from across the institution, spanning multiple disciplines, are therefore working together to understand ways of reducing the environmental impacts of energy use, improving energy efficiency, coping with declining fossil fuel supplies, managing an ageing energy infrastructure, and devising policy or economic levers to achieve higher penetration of renewable energy systems and technologies. Strathprints makes this scholarly research content available Open Access thereby ensuring results are available to everyone in order meet the global climate challenge.

Explore some of this Open Access research from the departments of Mechanical & Aerospace Engineering, Electronic & Electrical Engineering, Civil & Environmental Engineering, Naval Architecture, Ocean & Marine Engineering, Economics, Entrepreneurship and the School of Government & Public Policy.

Or explore all of Strathclyde's Open Access research...

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Group by: Publication Date | Item type | No Grouping
Jump to: 2019 | 2018 | 2014
Number of items: 12.

2019

Cao, Shuai and Xiang, Wang and Lu, Xiaojun and Lin, Weixing and Zhang, Kai and Wen, Jinyu and Zhang, Xin (2019) Energy dissipation of MMC-HVDC based onshore wind power integration system with FB-DBS and DCCB. IET Renewable Power Generation. ISSN 1752-1416

Xiang, Wang and Yang, Saizhao and Wen, Jinyu (2019) ANN-based robust DC fault protection algorithm for MMC high-voltage direct current grids. IET Renewable Power Generation. ISSN 1752-1416

Yang, Saizhao and Xiang, Wang and Li, Rui and Lu, Xiaojun and Zuo, Wenping and Wen, Jinyu (2019) An improved DC fault protection algorithm for MMC HVDC grids based on modal domain analysis. IEEE Journal of Emerging and Selected Topics in Power Electronics. ISSN 2168-6777

Yang, Saizhao and Xiang, Wang and Lu, Xiaojun and Zuo, Wenping and Wen, Jinyu (2019) An adaptive reclosing strategy for MMC-HVDC systems with hybrid DC circuit breakers. IEEE Transactions on Power Delivery. ISSN 0885-8977

Zhou, Meng and Xiang, Wang and Zuo, Wenping and Lin, Weixing and Wen, Jinyu and Yang, Ruizhang and Ni, Binye and Lu, Xiaojun; (2019) Active current-limiting control to handle DC line fault of overhead DC grid. In: 2019 10th International Conference on Power Electronics and ECCE Asia. Institute of Electrical and Electronics Engineers Inc., KOR. ISBN 9788957083130

Zhou, Meng and Xiang, Wang and Zuo, Wenping and Lin, Weixing and Wen, Jinyu (2019) A novel HVDC circuit breaker for HVDC application. International Journal of Electrical Power and Energy Systems, 109. pp. 685-695. ISSN 0142-0615

2018

Xiang, Wang and Zhan, Junjie and Xu, Lie and Yang, Saizhao and Lin, Weixing and Wen, Jinyu (2018) A transient voltage based DC fault line protection scheme for MMC based DC grid embedding DC breakers. IEEE Transactions on Power Delivery. pp. 1-12. ISSN 0885-8977

Lu, Xiaojun and Xiang, Wang and Lin, Weixing and Wen, Jinyu (2018) State-space model and PQ operating zone analysis of hybrid MMC. Electric Power Systems Research, 162. pp. 99-108. ISSN 0378-7796

Lu, Xiaojun and Xiang, Wang and Lin, Weixing and Wen, Jinyu (2018) State-space model and PQ operating zone analysis of hybrid MMC. Electric Power Systems Research, 162. pp. 99-108. ISSN 0378-7796

Xiang, Wang and Ling, Weixing and Xu, Lie and Wen, Jingyu (2018) Enhanced independent pole control of hybrid MMC-HVDC system. IEEE Transactions on Power Delivery, 33 (2). pp. 861-872. ISSN 0885-8977

Zhou, Meng and Xiang, Wang and Zuo, Wenping and Lin, Weixing and Wen, Jinyu (2018) A unidirectional DC-DC autotransformer for DC grid application. Energies, 11 (3). 530. ISSN 1996-1073

2014

Xiang, Wang and Hua, Yu and Wen, Jinyu and Yao, Meiqi and Li, Naihu (2014) Research on fast solid state DC breaker based on a natural current zero-crossing point. Journal of Modern Power Systems and Clean Energy, 2 (1). pp. 30-38. ISSN 2196-5420

This list was generated on Mon May 25 03:48:17 2020 BST.