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[1]建筑需求响应方向:
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[2] Niu, Jide, Zhe Tian, Yakai Lu, and Hongfang Zhao. "Flexible dispatch of a building energy system using building thermal storage and battery energy storage." Applied Energy 243 (2019): 274-287.
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[3] Niu, Jide, Zhe Tian, Jie Zhu, and Lu Yue. "Implementation of a price-driven demand response in a distributed energy system with multi-energy flexibility measures." Energy Conversion and Management 208 (2020): 112575.
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[4] Niu, Jide, Ruoyu Zhou, Zhe Tian, Jie Zhu, Yakai Lu, and Jianbo Ma. "Energy-saving potential analysis for a 24-hour operating chiller plant using the model-based global optimization method." Journal of Building Engineering 69 (2023): 106213.
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[5] Wang, Chengshan, Bingqi Jiao, Li Guo, Zhe Tian, Jide Niu, and Siwei Li. "Robust scheduling of building energy system under uncertainty." Applied energy 167 (2016): 366-376.
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[6] Tian, Zhe, Jide Niu, Yakai Lu, Shunming He, and Xue Tian. "The improvement of a simulation model for a distributed CCHP system and its influence on optimal operation cost and strategy." Applied Energy 165 (2016): 430-444.
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[7] Zhu, Jie, Jide Niu, Zhe Tian, Ruoyu Zhou, and Chuang Ye. "Rapid quantification of demand response potential of building HAVC system via data-driven model." Applied Energy 325 (2022): 119796.
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[8] Tian, Zhe, Fawei Fu, Jide Niu*, Rui Sun, and Juan Huang. "Optimization and extraction of an operation strategy for the distributed energy system of a research station in Antarctica." Journal of Cleaner Production 246 (2020): 119073.
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[9] Zhang, Qiang, Zhe Tian, Jide Niu*, Jie Zhu, and Yakai Lu. "A study on transfer learning in enhancing performance of building energy system fault diagnosis with extremely limited labeled data." Building and Environment 225 (2022): 109641.
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[10] Tian, Zhe, Ye, Chuang, Zhu, Jie, Niu, Jide*, Lu, Yakai. "Accelerating Optimal Control Strategy Generation for HVAC Systems Using a Scenario Reduction Method: A Case Study." Energies 16.7 (2023): 2988.
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[11] Zhen, Cheng, Jide Niu*, and Zhe Tian. "Research on Model Calibration Method of Chiller Plants Based on Error Reverse Correction with Limited Data." Energies 16.2 (2023): 918.
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[12] Zhang, Qiang, Zhe Tian, Yakai Lu, Jide Niu*, and Chuang Ye. "Experimental study on performance assessments of HVAC cross-domain fault diagnosis methods oriented to incomplete data problems." Building and Environment 236 (2023): 110264.
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[13] Yue, L., Niu, J., Tian, Z., Lin, Q., & Lu, Y. (2024). A three-dimensional evaluation method for building energy systems to guide power grid-friendly interactions during the planning and operational stages. Journal of Building Engineering, 108816.
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[14] Yue, L., Niu, J., Tian, Z., Lin, Q., & Lu, Y. (2024). A simplified assessment method based on Hooke's law to estimate the grid-friendly ability of buildings. Renewable Energy, 223, 119931.
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[15]低碳建筑能源系统稳健性优化方向:
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[16] Niu, Jide*., Li, X., Tian, Z., & Yang, H. (2024). Uncertainty analysis of the electric vehicle potential for a household to enhance robustness in decision on the EV/V2H technologies. Applied Energy, 365, 123294.
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[17] Tian, Z., Li, X., Niu, J.*, Zhou, R., & Li, F. (2024). Enhancing operation flexibility of distributed energy systems: A flexible multi-objective optimization planning method considering long-term and temporary objectives. Energy, 288, 129612.
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[18] Wu, Xia, Zhe Tian, Jide Niu*, and Xiaoyuan Li. "Hybrid uncertainty quantification method of internal disturbance parameters for reliability assessment of building air-conditioning design load." Energy and Buildings (2023): 113602.
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[19] Niu, Jide, Xiaoyuan Li, Zhe Tian*, and Hongxing Yang. "A framework for quantifying the value of information to mitigate risk in the optimal design of distributed energy systems under uncertainty." Applied Energy 350 (2023): 121717.
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[20] Hou, Xinyang, Zhe Tian, Jide Niu*, Xia Wu, and Yakai Lu. "Research on design day generation method for air-conditioning system design considering the coincidence of hourly variation coefficient." Energy and Buildings 270 (2022): 112300.
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[21] Lan, Bo, Zhe Tian, Jide Niu, Weizhang Wang, and Shichao Lu. "Applicability analysis of solar heating system in China based on a reliability-based optimization method for auxiliary heater capacity." Sustainable Cities and Society 53 (2020): 101930.
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[22] Wu, Xia, Jide Niu, Zhe Tian, Xinyang Hou, and Ruoyu Zhou. "Method of constructing stochastic near-extreme daily weather data for efficient calculation of probabilistic load in air-conditioning system design." Building and Environment 221 (2022): 109278.
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[23] Wu, Xia, Jide Niu, Zhe Tian, Ruoyu Zhou, and Xinyang Hou. "A stochastic interior disturbance parameter model considering double uncertainty for probabilistic load calculation." Energy and Buildings 285 (2023): 112883.
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[24] Lan, Bo, Zhe Tian, Jide Niu*, and Wei Sun. "Improving the design method of a solar heating system considering weather uncertainty and system reliability." Energy and Buildings 208 (2020): 109606.
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[25] Niu, Jide., Tian, Zhe., Lu, Yakai, Zhao, Hongfang, & Lan, Bo. (2019). A robust optimization model for designing the building cooling source under cooling load uncertainty. Applied energy, 241, 390-403.
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[26] Niu, Jide., Tian, Zhe., & Yue, Lu. (2020). Robust optimal design of building cooling sources considering the uncertainty and cross-correlation of demand and source. Applied Energy, 265, 114793.