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Applications of eigenvalues in installation of multi‐infeed HVDC system for voltage stability
International Transactions on Electrical Energy Systems ( IF 2.3 ) Pub Date : 2020-10-18 , DOI: 10.1002/2050-7038.12645
Bilawal Rehman 1, 2 , Chongru Liu 1 , Wei Wei 3 , Chuang Fu 3 , Huan Li 3
Affiliation  

This research work provides a practical approach to install High Voltage Direct Current (HVDC) link in close vicinity of an existing HVDC system. The work establishes eigenvalue‐based approach using modal analysis to give voltage stability conditions for multi‐infeed scenario. A detailed analysis of steady state and transient behavior of multi‐infeed HVDC system is provided to understand the influence of network impedances. Minimum eigenvalue of AC‐DC Jacobian matrix is taken as index to determine stability using a realistic multi‐infeed HVDC model. Newton Raphson technique is applied to calculate bus angle and voltage for accurate stability analysis. The inter‐converter interaction of multi‐infeed HVDC severely affects the performance of AC/DC network. So, it is of great importance to study multi‐infeed phenomena with a systematic way to minimize the risk of adverse results. Practical applications of proposed scheme are provided. It has been examined that the behavior of positive eigenvalue largely depends on coupling impedance while impedance between AC busbar and inverters show less control on region of stability. With increase in coupling impedance, multi‐infeed interaction factor reduces which reflects less transient over voltage, commutation failure, and stability like problems. Various case studies are provided regarding network impedances to make system voltage stable. The results show that eigenvalues are greatly influenced by associated network impedances. The simulations are performed in MATLAB and PSCAD/EMTDC to verify the analytical results.

中文翻译:

特征值在多馈高压直流输电系统安装中的应用

这项研究工作提供了一种在现有HVDC系统附近安装高压直流(HVDC)链路的实用方法。这项工作使用模态分析建立了基于特征值的方法,从而为多馈情况提供了电压稳定条件。对多馈入高压直流输电系统的稳态和瞬态行为进行了详细分析,以了解网络阻抗的影响。使用实际的多馈入HVDC模型,以AC-DC Jacobian矩阵的最小特征值作为指标来确定稳定性。牛顿拉夫森技术用于计算母线角度和电压,以进行准确的稳定性分析。多馈高压直流电的变流器之间的相互作用会严重影响AC / DC网络的性能。所以,用系统的方法研究多次进料现象以最大程度地减少不良后果的风险非常重要。提供了该方案的实际应用。已经检查出,正本征值的行为在很大程度上取决于耦合阻抗,而交流母线和逆变器之间的阻抗对稳定区域的控制较少。随着耦合阻抗的增加,多次馈电的交互因数减小,这反映了较少的瞬态过电压,换向失败和诸如此类的稳定性。提供有关网络阻抗的各种案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。在MATLAB和PSCAD / EMTDC中执行仿真以验证分析结果。提供了该方案的实际应用。已经检查出,正本征值的行为在很大程度上取决于耦合阻抗,而交流母线和逆变器之间的阻抗对稳定区域的控制较少。随着耦合阻抗的增加,多次馈电的交互因数减小,这反映了较少的瞬态过电压,换向失败和诸如此类的稳定性。提供有关网络阻抗的各种案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。在MATLAB和PSCAD / EMTDC中执行仿真以验证分析结果。提供了该方案的实际应用。已经检查出,正本征值的行为在很大程度上取决于耦合阻抗,而交流母线和逆变器之间的阻抗对稳定区域的控制较少。随着耦合阻抗的增加,多次馈电的交互因数减小,这反映了较少的瞬态过电压,换向失败和诸如此类的稳定性。提供有关网络阻抗的各种案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。在MATLAB和PSCAD / EMTDC中执行仿真以验证分析结果。已经检查出,正本征值的行为在很大程度上取决于耦合阻抗,而交流母线和逆变器之间的阻抗对稳定区域的控制较少。随着耦合阻抗的增加,多次馈电的交互因数减小,这反映了较少的瞬态过电压,换向失败和诸如此类的稳定性。提供有关网络阻抗的各种案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。在MATLAB和PSCAD / EMTDC中执行仿真以验证分析结果。已经检查出,正本征值的行为在很大程度上取决于耦合阻抗,而交流母线和逆变器之间的阻抗对稳定区域的控制较少。随着耦合阻抗的增加,多次馈电的交互因数减小,这反映了较少的瞬态过电压,换向失败和诸如此类的稳定性。提供有关网络阻抗的各种案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。仿真在MATLAB和PSCAD / EMTDC中执行,以验证分析结果。和稳定性之类的问题。提供有关网络阻抗的各种案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。在MATLAB和PSCAD / EMTDC中执行仿真以验证分析结果。和稳定性之类的问题。提供了各种有关网络阻抗的案例研究,以使系统电压稳定。结果表明,特征值受相关网络阻抗的影响很大。在MATLAB和PSCAD / EMTDC中执行仿真以验证分析结果。
更新日期:2020-12-07
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