Time frequency-domain comprehensive synthesizing method of low-frequency oscillation property of power system
A power system and comprehensive analysis technology, applied in the direction of reducing/preventing power oscillations, can solve problems such as inability to guarantee electromechanical oscillation modes and omissions, and achieve the effects of eliminating omissions, overcoming system dimension limitations, and strong reliability
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Embodiment 1
[0026] Taking a two-area power system composed of four generator sets as an example, such as figure 1 As shown, a time-frequency domain comprehensive analysis method for low-frequency oscillation characteristics of power systems includes the following steps:
[0027] (1) System modeling.
[0028] For the power system, the detailed data information of each component used for electromechanical simulation and reflecting the actual situation of the system is obtained, and the system detailed model is established to represent the four generating sets in the system (including generator, excitation, prime mover and governor Wait).
[0029] (2) System simplification.
[0030] On the premise of keeping the basic characteristics of the low-frequency oscillation of the power system unchanged as much as possible, the detailed model of the system is simplified by the model simplification method, and the simplified model of the system is obtained.
[0031] The model simplification method...
Embodiment 2
[0046] Taking the China Southern Power Grid system as an example under certain operating conditions, such as figure 1 As shown, a time-frequency domain comprehensive analysis method for low-frequency oscillation characteristics of power systems includes the following steps:
[0047] (1) System modeling.
[0048] The system can be divided into five regional grids, namely Guangdong (including Hong Kong), Guangxi, Yunnan, Guizhou and Hainan. The regional power grids are interconnected through several 500kV tie lines. For the power grid system, obtain the detailed data information of each component used for electromechanical simulation and reflect the actual state of the system, and establish a detailed model of the system to represent all generating units in the system (including generators, excitation, prime movers and governors, etc.) . The system detailed model contains a total of 528 generating units, and the total number of state variables is as high as 7086, which obviou...
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