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机构地区:[1]重庆大学机械传动国家重点实验室,重庆400030
出 处:《现代科学仪器》2011年第3期12-16,共5页Modern Scientific Instruments
基 金:国家自然科学基金(51005255);重庆市科技攻关计划项目(CSCT2007AB3052;CST2007AA3027)
摘 要:针对变速变桨风力机如何在额定风速以下时追踪最大风能利用系数,对在额定风速以上时抑制输出功率的波动进行了研究。在风速测控系统中,提出了低风速时运用自适应转矩控制策略;高风速时为了稳定输出功率,根据估计的有效风速给出合适的前馈桨距角,实现动态前馈补偿与传统PID反馈结合的变桨距控制策略。基于Bladed和MATLAB软件平台,应用此方法对某2MW变速变桨风电机组进行仿真比较。结果表明:此系统在低风速时能够更好追踪最大功率点,在高风速时能有效稳定输出功率。Aiming at variable-speed variable-pitch(VSVP) regulated wind turbine,this paper investigates the technique of tracking the maximum power coefficient under the rated speed,and constraining the output power fluctuation above it.In the wind speed measurement and control system,the control strategy named self-adapting torque control at low wind speed was presented.While above the rated speed,the suitable feed-forward pitch angle was provided according to estimated effective wind speed.Also a variable-pitch control strategy was suggested with combined dynamic feed forward and traditional PID feedback in the system.Based on the Bladed and MATLAB software platform,we conducted the comparison of the proposed control scheme and the tradition one on certain 2MW VSVP wind turbine.The yielded results showed that the system has more maximum power tracking ability of the suggested control strategy under the rated speed,and the wind turbine can effectively maintain stable output power beyond it.
关 键 词:自适应转矩控制 卡尔曼滤波 牛顿-拉夫逊算法 风速估计 前馈控制
分 类 号:TK83[动力工程及工程热物理—流体机械及工程]
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