当前位置: X-MOL首页全球导师 国内导师 › 邱一苇

个人简介

邱一苇 博士,副研究员/硕士生导师,四川大学双百人才计划 专业:电气工程,电力系统及其自动化 工作经历 2021.10至今 四川大学电气工程学院,副研究员 2018.9-2021.9 清华大学,博士后/助理研究员(合作导师:林今) 2020.7-2021.6 澳门大学,濠江学者计划博士后(合作导师:戴宁怡) 学习经历 2013.9-2018.7 浙江大学,电气工程,博士(导师:宋永华) 2017.10-2018.4 Southern Methodist University,Visiting Research Associate(合作导师:Jianhui Wang) 2009.8-2013.7 浙江大学,电气工程及其自动化,本科 主要科研项目 1. 国家自然科学基金,基于伊藤理论的高比例可再生能源电力系统分析与控制技术研究,2020-2022,项目负责人; 2. 国家重点研发计划,十万吨级可再生能源电解水制氢合成氨示范工程,2022-2025,子课题负责人; 3. 澳门大学“智慧城市物联网国家重点实验室”开放课题,含复杂随机动力学的电力能源系统分析与控制方法硏究,2022-2023,项目负责人(拟安排研究生赴澳门交流); 4. 国网总部科技项目,计及气候环境影响的“电力-绿氢”混合系统联合运行调控技术,2022-2024,课题负责人; 5. 中国博士后科学基金,基于伊藤理论的高比例可再生能源电力系统分析控制研究,2019-2021,项目负责人 6. 国家重点研发计划,分布式光伏与梯级小水电互补联合发电技术研究及应用示范,2018-2021,主研; 7. 国家自然科学基金,多项式逼近方法及其在电力系统稳定性问题中的应用研究,2018-2022,主研。

研究领域

电力系统随机分析与控制,电氢转换装置及系统、电氢耦合系统分析与控制

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. 电力系统方向: [1] Yiwei Qiu, et al. Continuous Random Process Modeling of AGC Signals Based on Stochastic Differential Equations. IEEE Transactions on Power Systems, 2021, 36(5): 4575-4587. [2] Yiwei Qiu, et al. Tertiary Regulation of Cascaded Run-of-the-River Hydropower in the Islanded Renewable Power System Considering Multi-Timescale Dynamics. IET Renewable Power Generation, 15:1778–1795, 2021. [3] Yiwei Qiu, et al. Nonintrusive Uncertainty Quantification of Dynamic Power Systems Subject to Stochastic Excitations. IEEE Transactions on Power Systems, 36(1): 402-414, 2021. [4] Kaixuan Chen, Jin Lin, Yiwei Qiu, et al. Deep Learning-Aided Model Predictive Control of Wind Farms for AGC Considering the Dynamic Wake Effect. Control Engineering Practice, 116: 104925, 2021. [5] Kaixuan Chen, Jin Lin, Yiwei Qiu, Joint Optimization of Wind Farm Layout Considering Optimal Control. Renewable Energy, 182: 787-796, 2022. [6] Kaixuan Chen, Yiwei Qiu, et al. Wake-Effect Aware Optimal Online Control of Wind Farms: An Explicit Solution. IET Renewable Power Generation, 15(4): 877-888, 2021. [7] Yiwei Qiu, et al. Stochastic Online Generation Control of Cascaded Run-of-the-River Hydropower for Mitigating Solar Power Volatility. IEEE Transactions on Power Systems, 35(6): 4709-4722, 2020. [8] Yiwei Qiu, et al. Explicit MPC Based on the Galerkin Method for AGC Considering Volatile Generations. IEEE Transactions on Power Systems, 35(1): 462-473, 2020. [9] Yiwei Qiu, et al. Fast Monte Carlo Simulation of Dynamic Power Systems under Continuous Random Disturbances [C]. 2020 IEEE Power & Energy Society General Meeting. [10] Hao Wu, Danfeng Shen, Bingqing Xia, Yiwei Qiu, et al. Parametric Problems in Power System Analysis: Recent Applications of Polynomial Approximation Based on Galerkin Method. Journal of Modern Power Systems and Clean Energy. 9(1): 1-12, 2020. [11] Bingqing Xia, Hao Wu, Yiwei Qiu, et al. A Galerkin Method-based Polynomial Approximation for Parametric Problems in Power System Transient Analysis. IEEE Transactions on Power Systems, 34(2): 1620-1629, 2019. [12] Yiwei Qiu, et al. An Explicit MPC Based on Galerkin Method for AGC Considering Volatile Generation. 2019 IEEE Power & Energy Society General Meeting. (会议最佳论文奖) [13] Yonghua Song, Xiaoshuang Chen, Jin Lin, Feng Liu, Yiwei Qiu. Stochastic processes in renewable power systems: From frequency domain to time domain. Science China Technological Sciences, 62(12):2093-103, 2019 [14] Yiwei Qiu, et al. Global Approximation of Static Voltage Stability Region Boundaries Considering Generator Reactive Power Limits. IEEE Transactions on Power Systems, 33(5): 5682-5691, 2018. [15] Yiwei Qiu, et al. Global Parametric Polynomial Approximation of Static Voltage Stability Region Boundaries. IEEE Transactions on Power Systems, 32(3): 2362-2371. 2017. [16] Yiwei Qiu, et al. Global Polynomial Approximation of Static Voltage Stability Region Boundaries Considering Inequality Constraints. 2017 IEEE Power & Energy Society General Meeting. [17] Linzhi Li, Lei Xiao, Yiwei Qiu, et al. Uncertainty Analysis of Power System Time-domain Simulation based on Generalized Polynomial Chaos Method, 2017 IEEE Power & Energy Society General Meeting. [18] 肖磊, 邱一苇, 等. 基于广义多项式混沌方法的电力系统时域仿真不确定性分析, 电力系统自动化, 41(6): 59-65, 2017. [19] 孙明, 吴浩, 邱一苇, 等. 基于广义多项式混沌法的含风电电力系统随机潮流, 电力系统自动化, 41(7): 54-60+100, 2017. 2. 电氢转换、电氢耦合系统方向: [20] Yingtian Chi, Yiwei Qiu, et al. Online Identification of a Link Function Degradation Model for Solid Oxide Fuel Cells under Varying-Load Operation, International Journal of Hydrogen Energy, 47(4): 2622-2646, 2022. [21] Yiwei Qiu, et al. Extended Load Flexibility of Industrial P2H Plants: A Process Constraint-Aware Scheduling Approach, 2022 IEEE 5th International Electrical and Energy Conference, Accepted. [22] Xiaoyan Qiu, Hang Zhang, Yiwei Qiu*, et al. Online dynamic parameter estimation of an alkaline electrolysis system based on Bayesian inference. 2022 IEEE 5th International Electrical and Energy Conference, Accepted. [23] Yingtian Chi, Yiwei Qiu, et al. Simplified Three-dimensional Models for Studying the Non-uniformity inside the Flat-chip Solid Oxide Cell Stacks. International Conference on Applied Energy 2021. [24] Ruomei Qi#, Yiwei Qiu#, et al. Two-Stage Stochastic Programming-Based Capacity Optimization for a High-Temperature Electrolysis System Considering Dynamic Operation Strategies. Journal of Energy Storage, 40: 112733, 2021. [25] Ruomei Qi, Xiaoping Gao, Jin Lin, Yonghua Song, Jiepeng Wang, Yiwei Qiu, et al. Pressure control strategy to extend the loading range of an alkaline electrolysis system, International Journal of Hydrogen Energy, 46(73): 35997-36011, 2021. [26] 李佳蓉, 林今, 邢学韬, 邱一苇, 等. 主动配电网中基于统一运行模型的电制氢 (P2H) 模块组合选型与优化规划. 中国电机工程学报, 41(12): 4021-4032, 2021. [27] Yingtian Chi#, Yiwei Qiu#, et al. A Robust Surrogate Model of a Solid Oxide Cell based on An Adaptive Polynomial Approximation Method. International Journal of Hydrogen Energy, 45(58): 32949-32971, 2020.

学术兼职

IEEE会员;CSEE Journal of Power and Energy Systems Special Issue特邀编辑;长期担任IEEE Transactions on Power Systems/Smart Grid/Circuits & Systems I, IEEE PES Letters、IET Generation, Transmission & Distribution/Renewable Power Generation、Control Engineering Practices等期刊审稿人

推荐链接
down
wechat
bug