Impact of virtual inertia and damping control on stability delay margins of load frequency control systems with renewable energy sources

被引:0
作者
Suud Ademnur Hasen
Ömer Aydın
Saffet Ayasun
Şahin Sönmez
机构
[1] Gazi University,Department of Electrical and Electronics Engineering
[2] Malatya Turgut Özal University,Department of Electronics and Automation
[3] Erzincan Binali Yıldırım University,Department of Electrical and Electronics Engineering
来源
Electrical Engineering | 2024年 / 106卷
关键词
Communication time delays; Load frequency control; Low inertia; Renewable energy sources; Stability delay margin; Virtual inertia and damping;
D O I
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中图分类号
学科分类号
摘要
The utilization of communication linkages generates delays that degrade system dynamic performance and cause fluctuations in the system frequency while the extensive integration of renewable energy sources may cause further increase in the frequency oscillations owing to low inertia. By considering the inclusion of the virtual inertia and damping (VID) control in load frequency control (LFC) systems with time delays, this article investigates the impacts of the VID control on the stability delay margins (SDMs) of two-area LFC systems. For this purpose, an exact method, which is based on recursively removing exponential terms from the characteristic equation, is first implemented to compute SDMs of the two-area LFC system enhanced by VID control for a wide range of controller gains. Secondly, the effect of the VID parameters on the SDMs is investigated by employing the exact method. Theoretical results clearly illustrate that SDMs significantly increase as VID parameters increase. Furthermore, simulation analysis elucidates that with the VID incorporation, the performance of the LFC system with low inertia is enhanced and the rate of change of the frequency and frequency nadir are remarkably decreased, improving the stability of time-delayed LFC systems.
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页码:323 / 341
页数:18
相关论文
共 220 条
[1]  
Bevrani H(2021)Power system frequency control: an updated review of current solutions and new challenges Electr Power Syst Res 194 107114-2693
[2]  
Golpîra H(2018)Electric power system inertia: requirements, challenges and solutions Electr Eng 100 2677-3696
[3]  
Messina AR(2022)A literature survey on load frequency control considering renewable energy integration in power system: recent trends and future prospects J Energy Storage 45 103717-3155
[4]  
Hatziargyriou N(2022)Effects of communication signal delay on the power grid: a review Electron 11 874-498
[5]  
Milano F(2019)Delay-dependent stability analysis of multi-area load frequency control with enhanced accuracy and computation efficiency IEEE Trans Power Syst 34 3687-105
[6]  
Ise T(2020)A comprehensive review of the cyber-attacks and cyber-security on load frequency control of power systems Energies 13 3680-941
[7]  
Rezkalla M(2019)A Review of power system flexibility with high penetration of renewables IEEE Trans Power Syst 34 3140-6992
[8]  
Pertl M(2021)Path to sustainable energy consumption: The possibility of substituting renewable energy for non-renewable energy Energy 228 120519-254
[9]  
Marinelli M(2018)How decarbonization, digitalization and decentralization are changing key power infrastructures Renew Sustain Energy Rev 93 483-14433
[10]  
Ranjan M(2019)Power systems with high renewable energy sources: a review of inertia and frequency control strategies over time Renew Sustain Energy Rev 115 109369-1267