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Adaptive Configuration Method of Low-Frequency Electromechanical Sampling Information in Building Electrical System

机译:建筑电气系统中低频机电采样信息自适应配置方法

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摘要

In order to enhance the reliability of the electrical systems in low frequency, an adaptive configuration method of low-frequency electromechanical sampling information based on thyristor controlled series compensation (TCSC) is designed. The electrical system is simplified to a linear invariant system, and a stochastic subspace identification (SSI) method is established by using the singular value decomposition principle to collect low-frequency electromechanical sampling information. The reference channel technology is introduced to design the reference channel covariance matrix to judge whether low-frequency information is generated and improve the efficiency of sampling information acquisition. The architecture and working principle of the controllable series compensation device are analyzed, and the test signal method is used to evaluate the low-frequency modes and the information required by the device among the electrical system regions of buildings. The alternative input signals are selected by comparing different input signal residue ratios. The TCSC device parameters are adjusted by the compensation residue phase method, so as to realize the adaptive configuration of different low-frequency electromechanical sampling information and ensure the stable operation of the electrical system. The experimental results show that the proposed configuration scheme can effectively improve the damping ratio of the system and has an excellent effect on suppressing the continuous oscillation under a low-frequency fault.
机译:为了提高电气系统在低频下的可靠性,设计了一种基于晶闸管控制串联补偿(TCSC)的低频机电采样信息自适应配置方法。将电系统简化为线性不变系统,利用奇异值分解原理建立随机子空间辨识(SSI)方法,采集低频机电采样信息。引入参考信道技术,设计参考信道协方差矩阵,判断是否产生低频信息,提高采样信息采集效率。分析了可控串联补偿装置的结构和工作原理,并采用测试信号法对建筑物电气系统区域之间的低频模态和装置所需的信息进行评价。通过比较不同的输入信号残差比来选择替代输入信号。TCSC器件参数采用补偿残差相位法进行调整,实现不同低频机电采样信息的自适应配置,保证电气系统的稳定运行。实验结果表明,所提配置方案能够有效提高系统的阻尼比,对抑制低频故障下的连续振荡具有较好的效果。

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