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Haiwang Zhong
Haiwang Zhong
Associate Professor, Tsinghua University
Verified email at tsinghua.edu.cn
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Cited by
Year
Near-real-time monitoring of global CO2 emissions reveals the effects of the COVID-19 pandemic
Z Liu, P Ciais, Z Deng, R Lei, SJ Davis, S Feng, B Zheng, D Cui, X Dou, ...
Nature communications 11 (1), 5172, 2020
6672020
Review and prospect of integrated demand response in the multi-energy system
J Wang, H Zhong, Z Ma, Q Xia, C Kang
Applied Energy 202, 772-782, 2017
3622017
Coupon incentive-based demand response: Theory and case study
H Zhong, L Xie, Q Xia
IEEE Transactions on Power Systems 28 (2), 1266-1276, 2012
3452012
A linearized OPF model with reactive power and voltage magnitude: A pathway to improve the MW-only DC OPF
Z Yang, H Zhong, A Bose, T Zheng, Q Xia, C Kang
IEEE Transactions on Power Systems 33 (2), 1734-1745, 2017
2242017
Implications of COVID-19 for the electricity industry: A comprehensive review
H Zhong, Z Tan, Y He, L Xie, C Kang
CSEE Journal of Power and Energy Systems 6 (3), 489-495, 2020
1552020
Optimal bidding strategy for microgrids in joint energy and ancillary service markets considering flexible ramping products
J Wang, H Zhong, W Tang, R Rajagopal, Q Xia, C Kang, Y Wang
Applied Energy 205, 294-303, 2017
1402017
A cross-domain approach to analyzing the short-run impact of COVID-19 on the US electricity sector
G Ruan, D Wu, X Zheng, H Zhong, C Kang, MA Dahleh, S Sivaranjani, ...
Joule 4 (11), 2322-2337, 2020
1352020
Incentivizing distributed energy resource aggregation in energy and capacity markets: An energy sharing scheme and mechanism design
J Wang, H Zhong, C Wu, E Du, Q Xia, C Kang
Applied Energy 252, 113471, 2019
1272019
Exploring key weather factors from analytical modeling toward improved solar power forecasting
J Wang, H Zhong, X Lai, Q Xia, Y Wang, C Kang
IEEE Transactions on Smart Grid 10 (2), 1417-1427, 2017
1132017
A general formulation of linear power flow models: Basic theory and error analysis
Z Yang, K Xie, J Yu, H Zhong, N Zhang, Q Xia
IEEE Transactions on Power Systems 34 (2), 1315-1324, 2018
1072018
Decentralized multi-area economic dispatch via dynamic multiplier-based Lagrangian relaxation
X Lai, L Xie, Q Xia, H Zhong, C Kang
IEEE transactions on power systems 30 (6), 3225-3233, 2014
992014
Optimal joint‐dispatch of energy and reserve for CCHP‐based microgrids
J Wang, H Zhong, Q Xia, C Kang, E Du
IET Generation, Transmission & Distribution 11 (3), 785-794, 2017
952017
Optimal power flow based on successive linear approximation of power flow equations
Z Yang, H Zhong, Q Xia, A Bose, C Kang
IET Generation, Transmission & Distribution 10 (14), 3654-3662, 2016
952016
Carbon Monitor, a near-real-time daily dataset of global CO2 emission from fossil fuel and cement production
Z Liu, P Ciais, Z Deng, SJ Davis, B Zheng, Y Wang, D Cui, B Zhu, X Dou, ...
Scientific data 7 (1), 392, 2020
862020
Dynamic economic dispatch considering transmission losses using quadratically constrained quadratic program method
H Zhong, Q Xia, Y Wang, C Kang
IEEE Transactions on Power Systems 28 (3), 2232-2241, 2013
862013
Optimal reactive power dispatch with accurately modeled discrete control devices: A successive linear approximation approach
Z Yang, A Bose, H Zhong, N Zhang, Q Xia, C Kang
IEEE Transactions on Power Systems 32 (3), 2435-2444, 2016
812016
Optimal power flow in AC–DC grids with discrete control devices
Z Yang, H Zhong, A Bose, Q Xia, C Kang
IEEE Transactions on Power Systems 33 (2), 1461-1472, 2017
792017
COVID-19 causes record decline in global CO2 emissions
Z Liu, P Ciais, Z Deng, R Lei, SJ Davis, S Feng, B Zheng, D Cui, X Dou, ...
arXiv preprint arXiv:2004.13614, 2020
752020
Exploring the trade-offs between electric heating policy and carbon mitigation in China
J Wang, H Zhong, Z Yang, M Wang, DM Kammen, Z Liu, Z Ma, Q Xia, ...
Nature communications 11 (1), 6054, 2020
682020
Incentive mechanism for clearing energy and reserve markets in multi-area power systems
J Wang, H Zhong, Z Yang, X Lai, Q Xia, C Kang
IEEE Transactions on Sustainable Energy 11 (4), 2470-2482, 2019
602019
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