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Junhua Zhao

Researcher at The Chinese University of Hong Kong

Publications -  210
Citations -  8635

Junhua Zhao is an academic researcher from The Chinese University of Hong Kong. The author has contributed to research in topics: Computer science & Electricity market. The author has an hindex of 41, co-authored 163 publications receiving 6103 citations. Previous affiliations of Junhua Zhao include Zhejiang University & University of Newcastle.

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Multi-agent modeling and analysis of EV users’ travel willingness based on an integrated causal/statistical/behavioral model

TL;DR: A new method combining a questionnaire statistics and the EE-based simulation enables the integration of causal/statistical/behavioral models into the multi-agent framework to reflect the EV users’ travel willingness statistically.
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Decomposition-based approach to risk-averse transmission expansion planning considering wind power integration

TL;DR: In this paper, the authors proposed a risk-averse transmission expansion planning (TEP) framework to ensure the economical, secure and reliable operations of power systems, instead of using the deterministic security criterion, an insecurity risk cost (RC) is proposed to provide network planners with the insight into the problem, options and future implications in decision making.

A Multi-Mode Data-Driven Volt/Var Control Strategy With Conservation Voltage Reduction in Active Distribution Networks

TL;DR: In this article , a two-stage multi-mode data-driven Volt/Var optimization-based conservation voltage reduction (VVO/CVR) strategy was proposed to reduce total energy consumption while mitigating fast voltage violations in distribution networks.
Proceedings ArticleDOI

Network reinforcement for grid resiliency under extreme events

TL;DR: A relatively new multi-objective evolutionary algorithm called the MOEA/D is introduced and employed to find Pareto optimal solutions, and tradeoffs between overall cost and unreliability risk are provided.
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Unique heterointerface engineering of Ni2P−MnP nanosheets coupled Co2P nanoflowers as hierarchical dual-functional electrocatalyst for highly proficient overall water-splitting

TL;DR: A noble metal-free electrocatalyst comprised of hybrid Ni2P−MnP nanosheet coupled with Co2P nanoflowers reinforced on nickel foam has been achieved with a unique heterostructure architecture for highly competent hydrogen evolution reaction and oxygen evolution reaction (OER) as mentioned in this paper .