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变压器变比的英文

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"变压器变比"怎么读用"变压器变比"造句

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  • ratio of transformer

例句与用法

  • The working principle , the method to calculate the ratio of transformation and algorithm of filtering capacity are also studied in this paper
    本文分析了其工作原理,变压器变比的确定方法,滤波能力计算方法。
  • The method of changing the transformer ' s ration and power regulating voltage are used in order to yield various levels of testing current accurately and quickly
    试验中,为了快速准确的产生不同等级的试验电流,采用改变变压器变比与电动调压相结合的方法。
  • By calculating the taps of transformer and the value of reactive power , we can realize rapid and accurate adjustment . this method is easy to spread the use of it
    摘要通过实时计算出应改变的变压器变比和应投切的电容器容量,使调节迅速准确。该方法计算量小,计算过程简单,容易推广使用。
  • It analyses the working principle of the novel reactive power compensator , the relationship of currents in stable states , algorithm of filtering capacity and transient process
    本文分析了这种反馈式无功补偿方案的工作原理,稳态下各电流之间的关系,变压器变比的确定方法,滤波能力和暂态过程。
  • One is constant impedance modeling , the other is complicated load modeling . based on the time domain simulation , the sensitivity of stability margin with respect to node active and reactive power for the system with complicated load modeling is derived
    结合时域仿真,本文提出了具有综合负荷模拟的暂态过程中发电机加速面积、减速面积、减速功率(稳定裕度)对网络节点有功、无功及变压器变比的灵敏度分析方法。
  • The rbf network has a better performance , and better forecasting accuracy . then mathematical model of substation voltage / var control is constructed , the squares minimization of voltage differences as target , also considering requirement of voltage and power balance , taking it into consideration that the magnitude constraint of transformer ratio and compensating capacitor , also that constraint of operation times of one day transformer tap and capacitor switch
    因此提高了学习性能,具有较好的预测精度。然后,建立变电站电压无功控制的数学模型,考虑电压的调压要求和无功功率平衡,计及变压器变比和并联补偿电容的上下限约束,变压器分接头和电容器允许的日调节次数的限制,以电压偏差的平方和最小为目标函数。
  • For the algorithm of reactive power optimization , presented in this paper , in order to found the linear programming model equations , the objective function is minimum total power losses , the controlled variables include the compensating capacity of reactive power , generator bus voltages and transformer tap positions , the state variables include reactive power of the generators , and the voltage amplitudes in the ends of transformers
    本文研究的电力系统无功优化算法是以整个网络的损耗最小为目标函数,以无功补偿设备出力、发电机端电压和可调变压器变比为控制变量,以发电机的无功出力和变压器端电压幅值为状态变量建立了线性规划模型方程。
用"变压器变比"造句  

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