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基于高维数据分组的陶瓷产品需求预测算法 被引量:4
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作者 詹棠森 刘伟洁 《陶瓷学报》 CAS 北大核心 2009年第2期239-242,共4页
提出了一种高维数据的最优层次分析组合预测算法,即通过相关系数得到影响因素的分组,并得到相应的权值,通过设定参数权值向量和最优非线性问题,得到比较好的预测值,比没有分组得到的结果更好,这样克服了主观定义成对比较矩阵及一致性检... 提出了一种高维数据的最优层次分析组合预测算法,即通过相关系数得到影响因素的分组,并得到相应的权值,通过设定参数权值向量和最优非线性问题,得到比较好的预测值,比没有分组得到的结果更好,这样克服了主观定义成对比较矩阵及一致性检验,从而具有更广泛的实用性。 展开更多
关键词 分组 参数权值向量 最优非线性问题
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A novel stabilization approach for small signal disturbance of power system with time-varying delay 被引量:4
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作者 杨波 孙元章 《Journal of Central South University》 SCIE EI CAS 2013年第12期3522-3527,共6页
Small signal instability may cause severe accidents for power system if it can not be dear correctly and timely. How to maintain power system stable under small signal disturbance is a big challenge for power system o... Small signal instability may cause severe accidents for power system if it can not be dear correctly and timely. How to maintain power system stable under small signal disturbance is a big challenge for power system operators and dispatchers. Time delay existing in signal transmission process makes the problem more complex. Conventional eigenvalue analysis method neglects time delay influence and can not precisely describe power system dynamic behaviors. In this work, a modified small signal stability model considering time varying delay influence was constructed and a new time delay controller was proposed to stabilize power system under disturbance. By Lyapunov-Krasovskii function, the control law in the form of nonlinear matrix inequality (NLMI) was derived. Considering synthesis method limitation for time delay controller at present, both parameter adjustment method by using linear matrix inequality (LMI) solver and iteration searching method by solving nonlinear minimization problem were suggested to design the controller. Simulation tests were carried out on synchronous-machine infinite-bus power system. Satisfactory test results verify the correctness of the proposed model and the feasibility of the stabilization approach. 展开更多
关键词 power system stability small signal disturbance time-varying delay power system stabilizer
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