In order to improve the reliability of fault identification of the double-circuit transmission lines on the same tower, a new algorithm for fast protection of double-circuit transmission lines on the same tower based ...In order to improve the reliability of fault identification of the double-circuit transmission lines on the same tower, a new algorithm for fast protection of double-circuit transmission lines on the same tower based on the reactive powers of traveling wave is proposed. With the implementation of S-transform, the initial traveling wave reactive powers are calculated and the change characteristics of reactive power under different fault conditions are studied. The protection criterion is constructed by analyzing the ratio of the reactive powers of the same end on double-circuit transmission lines and the ratio of the reactive powers at both ends on the same line. According to the ratio of reactive power on the same side of the line and both ends of the same line, it is possible to identify whether the faults of the double-circuit line of the same tower occurred in or out of the protection zone. A large number of simulation results show that the protection performance is sensitive and reliable, and quick to respond. The criterion is simple and is basically not affected by fault initial angles, fault types, and transitional resistances.展开更多
针对带有未知但有界(Unknown But Bounded-UBB)噪声的非线性系统的建模及其故障检测问题,提出了一种集员辨识与T-S模糊模型相结合的非线性系统建模及其故障检测算法。在建立非线性系统模型时,利用系统正常状态下的运行数据,选用T-S模型...针对带有未知但有界(Unknown But Bounded-UBB)噪声的非线性系统的建模及其故障检测问题,提出了一种集员辨识与T-S模糊模型相结合的非线性系统建模及其故障检测算法。在建立非线性系统模型时,利用系统正常状态下的运行数据,选用T-S模型对其进行离线建模。首先采用模糊聚类的方法对输入空间进行模糊划分,然后利用T-S模型为参数线性模型的特点,使用参数线性集员辨识算法辨识T-S模型的结论参数。由于集员辨识算法所得到的是参数的集合估计,在系统运行过程中,可以很方便地利用所建模型预测实际系统的输出范围,如果测量所得实际系统的输出不在预测输出范围之内,则可判断系统发生了故障。通过与其他算法相比,验证了本方法的性能。展开更多
Jiyang depression, which is the main oil productive area of Shengli oil field, is located at the southeast part of the Bohai Bay Basin and is a terrestrial lacustrine rift subsidence basin formed in the late Mesozoic ...Jiyang depression, which is the main oil productive area of Shengli oil field, is located at the southeast part of the Bohai Bay Basin and is a terrestrial lacustrine rift subsidence basin formed in the late Mesozoic with fully developed fault system. The main hydrocarbon productive formations of this depression are the terrestrial clastic rocks of the Tertiary, which are of strong lateral variation. The complex fault reservoirs and subtle lithological reservoirs distributed extensively and are becoming the main exploration targets in recent years. The exploration and development practice in these years has formed the exploration technologies, mainly including detailed study and description of low grade faults, delineation of microstructures, facies constrained formation description and prediction and low resistivity oil bearing formation’s identification. These exploration technologies have resulted in remarkable effectiveness on the reserve and oil production increments.展开更多
文摘In order to improve the reliability of fault identification of the double-circuit transmission lines on the same tower, a new algorithm for fast protection of double-circuit transmission lines on the same tower based on the reactive powers of traveling wave is proposed. With the implementation of S-transform, the initial traveling wave reactive powers are calculated and the change characteristics of reactive power under different fault conditions are studied. The protection criterion is constructed by analyzing the ratio of the reactive powers of the same end on double-circuit transmission lines and the ratio of the reactive powers at both ends on the same line. According to the ratio of reactive power on the same side of the line and both ends of the same line, it is possible to identify whether the faults of the double-circuit line of the same tower occurred in or out of the protection zone. A large number of simulation results show that the protection performance is sensitive and reliable, and quick to respond. The criterion is simple and is basically not affected by fault initial angles, fault types, and transitional resistances.
文摘针对带有未知但有界(Unknown But Bounded-UBB)噪声的非线性系统的建模及其故障检测问题,提出了一种集员辨识与T-S模糊模型相结合的非线性系统建模及其故障检测算法。在建立非线性系统模型时,利用系统正常状态下的运行数据,选用T-S模型对其进行离线建模。首先采用模糊聚类的方法对输入空间进行模糊划分,然后利用T-S模型为参数线性模型的特点,使用参数线性集员辨识算法辨识T-S模型的结论参数。由于集员辨识算法所得到的是参数的集合估计,在系统运行过程中,可以很方便地利用所建模型预测实际系统的输出范围,如果测量所得实际系统的输出不在预测输出范围之内,则可判断系统发生了故障。通过与其他算法相比,验证了本方法的性能。
文摘Jiyang depression, which is the main oil productive area of Shengli oil field, is located at the southeast part of the Bohai Bay Basin and is a terrestrial lacustrine rift subsidence basin formed in the late Mesozoic with fully developed fault system. The main hydrocarbon productive formations of this depression are the terrestrial clastic rocks of the Tertiary, which are of strong lateral variation. The complex fault reservoirs and subtle lithological reservoirs distributed extensively and are becoming the main exploration targets in recent years. The exploration and development practice in these years has formed the exploration technologies, mainly including detailed study and description of low grade faults, delineation of microstructures, facies constrained formation description and prediction and low resistivity oil bearing formation’s identification. These exploration technologies have resulted in remarkable effectiveness on the reserve and oil production increments.