海上风力发电系统智能化建模方法研究任务书

 2021-10-27 09:10

1. 毕业设计(论文)的内容和要求

为了应对气候变化和环境压力,我国签署了巴黎协议,希望通过大规模发展可再生能源,以减少对化石燃料的依赖,提升经济与环境的可持续发展能力。

风能是可再生能源的发展重点。

随着优质的陆地风电资源逐渐得到开发利用,其主战场已逐渐转移到丰富的沿海资源。

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2. 参考文献

[1] Generic models and model validation for wind and solar PV generation: technical updates. EPRI.[2] Demands on modeling and validating simulation models of the electrical characteristics of power generation units and systems.[3] Pouyan Pourbeik. Proposed Changes to the WECC WT4 Generic Model for Type 4 Wind Turbine Generators.IEC,2013[4] E. Muljadi,C. P. Butterfield,A. Ellis, et al. Equivalencing the collector system of a large wind power plant. IEEE Power Engineering Society General Meeting,2006[5] Ali M , Ilie I S , Milanovic J V , et al. Wind Farm Model Aggregation Using Probabilistic Clustering. IEEE Transactions on Power Systems, 2013, 28(1):309-316.[6] 中华人民共和国能源局.NB/T 31053-2014风电机组低电压穿越建模及验证方法.中国电力科学研究院,2014[7] 王增平,杨国生,汤涌,等.基于特征影响因子和改进BP算法的直驱风机风电场建模方法.中国电机工程学报,2019,39(09):2604-2615.[8] Xueping Pan, Ping Ju, Feng Wu.Parameter estimation of drive system in a fixed-speed wind turbine by utilising turbulence excitations. Frontiers of Mechanical Engineering, 2017, Vol.12 (3), pp.367-376[9] Engineering - Power Systems; An Improved Single-Machine Equivalent Method of Wind Power Plants by Calibrating Power Recovery Behaviors. Energy Weekly News,2018.[10] 颜湘武,李君岩.直驱式永磁同步风电机组的风电场等值建模.华北电力大学学报,2019,46(05):1-7.

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