Zhongzhou Yang

761 total citations · 1 hit paper
20 papers, 619 citations indexed

About

Zhongzhou Yang is a scholar working on Aerospace Engineering, Electrical and Electronic Engineering and Control and Systems Engineering. According to data from OpenAlex, Zhongzhou Yang has authored 20 papers receiving a total of 619 indexed citations (citations by other indexed papers that have themselves been cited), including 13 papers in Aerospace Engineering, 10 papers in Electrical and Electronic Engineering and 5 papers in Control and Systems Engineering. Recurrent topics in Zhongzhou Yang's work include Wind Turbine Control Systems (10 papers), Wind Energy Research and Development (10 papers) and Energy Load and Power Forecasting (7 papers). Zhongzhou Yang is often cited by papers focused on Wind Turbine Control Systems (10 papers), Wind Energy Research and Development (10 papers) and Energy Load and Power Forecasting (7 papers). Zhongzhou Yang collaborates with scholars based in United States, China and Taiwan. Zhongzhou Yang's co-authors include Yaoyu Li, Xin Wu, Bin Lü, John E. Seem, Feng Li, Wei Teng, Changqin Quan, Xiang Yu, Zijiang Yang and Edward Tate and has published in prestigious journals such as Composites Science and Technology, SAE technical papers on CD-ROM/SAE technical paper series and International Journal of Mechanical Sciences.

In The Last Decade

Zhongzhou Yang

19 papers receiving 576 citations

Hit Papers

A review of recent advances in wind turbine condition mon... 2009 2026 2014 2020 2009 100 200 300 400

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Zhongzhou Yang United States 8 429 193 187 144 138 20 619
Tommy Andy Tameghe Canada 5 330 0.8× 177 0.9× 143 0.8× 97 0.7× 177 1.3× 8 539
Pierre Tchakoua Canada 4 330 0.8× 177 0.9× 140 0.7× 97 0.7× 177 1.3× 7 533
Gabriel Ekemb Canada 10 432 1.0× 219 1.1× 330 1.8× 99 0.7× 179 1.3× 18 821
Fouad Slaoui-Hasnaoui Canada 7 321 0.7× 186 1.0× 138 0.7× 80 0.6× 169 1.2× 20 569
Estefanía Artigao Spain 11 406 0.9× 166 0.9× 225 1.2× 80 0.6× 92 0.7× 21 594
Richard Court United Kingdom 9 397 0.9× 183 0.9× 147 0.8× 73 0.5× 170 1.2× 13 557
M. Wilkinson United Kingdom 7 430 1.0× 164 0.8× 168 0.9× 73 0.5× 135 1.0× 12 540
Xiange Tian United Kingdom 11 357 0.8× 205 1.1× 128 0.7× 81 0.6× 72 0.5× 32 546
Bachir Bensaker Algeria 8 370 0.9× 144 0.7× 186 1.0× 42 0.3× 119 0.9× 15 499

Countries citing papers authored by Zhongzhou Yang

Since Specialization
Citations

This map shows the geographic impact of Zhongzhou Yang's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Zhongzhou Yang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Zhongzhou Yang more than expected).

Fields of papers citing papers by Zhongzhou Yang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Zhongzhou Yang. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Zhongzhou Yang. The network helps show where Zhongzhou Yang may publish in the future.

Co-authorship network of co-authors of Zhongzhou Yang

This figure shows the co-authorship network connecting the top 25 collaborators of Zhongzhou Yang. A scholar is included among the top collaborators of Zhongzhou Yang based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Zhongzhou Yang. Zhongzhou Yang is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Yang, Zhongzhou, Yin Yao, & Shaohua Chen. (2025). A constitutive model for particle filled non-Gaussian rubber-like composites. International Journal of Mechanical Sciences. 308. 110982–110982.
2.
Yang, Zhongzhou, Yin Yao, & Shaohua Chen. (2025). A new constitutive model for particle reinforced rubber-like composites with arbitrary particle contents. Composites Science and Technology. 261. 111035–111035. 1 indexed citations
3.
Yang, Zhongzhou & Yaoyu Li. (2018). Active vertical vane control for stabilizing platform roll motion of floating offshore turbines. Wind Energy. 21(11). 997–1010. 7 indexed citations
4.
Yu, Xiang, et al.. (2017). Influence of parameters on Al/Ti-DLC/DLC selective absorber film. Surface Engineering. 33(11). 827–834. 4 indexed citations
5.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2015). Multi-model predictive control for wind turbine operation under meandering wake of upstream turbines. Control Engineering Practice. 45. 37–45. 26 indexed citations
6.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2015). Optimizing Energy Capture of Cascaded Wind Turbine Array With Nested-Loop Extremum Seeking Control. Journal of Dynamic Systems Measurement and Control. 137(12). 17 indexed citations
7.
Li, Yaoyu, Zhongzhou Yang, & John E. Seem. (2014). Active Horizontal Vane Control for Stabilizing Platform Pitch Motion of Floating Offshore Turbines. 4 indexed citations
8.
Tate, Edward, et al.. (2014). Drive Cycle Simulation of A Tiered Cooling Pack Using Non-Uniform Boundary Conditions. SAE technical papers on CD-ROM/SAE technical paper series. 1. 4 indexed citations
9.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2013). Maximizing Wind Farm Energy Capture via Nested-Loop Extremum Seeking Control. 13 indexed citations
10.
Yang, Zhongzhou. (2013). Wind Turbine Controls for Farm and Offshore Operation. UWM Digital Commons (University of Wisconsin–Milwaukee). 3 indexed citations
11.
Yang, Zhongzhou & Yaoyu Li. (2013). Active Vertical-Vane Control for Roll Motion of Floating Offshore Wind Turbine. 51st AIAA Aerospace Sciences Meeting including the New Horizons Forum and Aerospace Exposition. 5 indexed citations
12.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2012). Load Reduction of Wind Turbines under Wake Meandering with Model Predictive Control for Individual Pitching. 50th AIAA Aerospace Sciences Meeting including the New Horizons Forum and Aerospace Exposition. 4 indexed citations
13.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2012). Model predictive control for wind turbine load reduction under wake meandering of upstream wind turbines. 3008–3013. 4 indexed citations
14.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2011). Individual Pitch Control for Wind Turbine Load Reduction Including Wake Modeling. Wind Engineering. 35(6). 715–738. 9 indexed citations
15.
Wu, Xin, Yaoyu Li, Feng Li, Zhongzhou Yang, & Wei Teng. (2011). Adaptive Estimation-Based Leakage Detection for a Wind Turbine Hydraulic Pitching System. IEEE/ASME Transactions on Mechatronics. 17(5). 907–914. 40 indexed citations
16.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2011). Improved Individual Pitch Control for Wind Farm Turbine Load Reduction via Wake Modelling. 49th AIAA Aerospace Sciences Meeting including the New Horizons Forum and Aerospace Exposition. 5 indexed citations
17.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2011). Individual pitch control for wind turbine load reduction including wake interaction. 5207–5212. 3 indexed citations
18.
Quan, Changqin, et al.. (2010). Self-Optimizing Robust Control of Wind Power Generation With Doubly-Fed Induction Generator. 929–936. 8 indexed citations
19.
Yang, Zhongzhou, Yaoyu Li, & John E. Seem. (2010). Individual Pitch Control for Wind Turbine Load Reduction Including Wake Modeling. 201–208. 3 indexed citations
20.
Lü, Bin, Yaoyu Li, Xin Wu, & Zhongzhou Yang. (2009). A review of recent advances in wind turbine condition monitoring and fault diagnosis. 1–7. 459 indexed citations breakdown →

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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