Robust load frequency control in interval power systems via reduced-order generalized active disturbance rejection control

被引:5
作者
Safiullah [1 ]
Hote, Yogesh V. [1 ]
机构
[1] Indian Inst Technol Roorkee, Dept Elect Engn, Roorkee 247667, India
关键词
Active disturbance rejection control; Interval system; Worst-case model identification; Reduced-order modeling; Load frequency control; CONTROL SCHEME; REDUCTION;
D O I
10.1016/j.compeleceng.2024.109788
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Abrupt load changes, structural discrepancies, and parametric uncertainties cause degraded performance of the high-order power systems. This situation creates a problematic endeavor while analyzing the performance of such high-order systems. Hence, a simple and efficient lower-order control methodology can be deployed to sort out the issues related to load frequency control (LFC) in such systems. This study resolves the LFC problem in parametric bounded power systems by developing a worst-case reduced-order generalized active disturbance rejection control (WRGADRC) method. The core concept of the proposed technique entails that a controller will perform well in nominal scenarios if it performs satisfactorily in worst-case conditions. Therefore, an interval system's worst-case reduced-order model is first obtained from its different uncertain models; the reduced order controller is then designed using the GADRC technique. The proposed scheme is rigorously validated on various parametric bounded minimum and non-minimum phase single-area and multi-area power systems, instilling confidence in its ability to achieve minimum frequency deviation in multiple scenarios. The supremacy of the proposed scheme is highlighted over some well-established control techniques in the literature related to the LFC problem.
引用
收藏
页数:17
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共 28 条
[1]   ON ROBUST HURWITZ POLYNOMIALS [J].
ANDERSON, BDO ;
JURY, EI ;
MANSOUR, M .
IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 1987, 32 (10) :909-913
[2]   A new PID load frequency controller design method in frequency domain through direct synthesis approach [J].
Anwar, Md Nishat ;
Pan, Somnath .
INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2015, 67 :560-569
[3]  
Bhattacharyya S.P., 1995, ADV CONTROL ED 1994, P49, DOI DOI 10.1016/B978-0-08-042230-5.50016-5
[4]   Analysis and tuning of reduced-order active disturbance rejection control [J].
Fu, Caifen ;
Tan, Wen .
JOURNAL OF THE FRANKLIN INSTITUTE-ENGINEERING AND APPLIED MATHEMATICS, 2021, 358 (01) :339-362
[5]   Parameters Tuning of Reduced-Order Active Disturbance Rejection Control [J].
Fu, Caifen ;
Tan, Wen .
IEEE ACCESS, 2020, 8 :72528-72536
[6]   Load Frequency Control of Single-Area Power System with PI-PD Controller Design for Performance Improvement [J].
Guler, Yavuz ;
Kaya, Ibrahim .
JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY, 2023, 18 (04) :2633-2648
[7]   From PID to Active Disturbance Rejection Control [J].
Han, Jingqing .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2009, 56 (03) :900-906
[8]   A new approach to time domain analysis of perturbed PWM push-pull DC-DC converter [J].
Hote, Yogesh V. .
Journal of Control Theory and Applications, 2012, 10 (04) :465-469
[9]   Novel tuning rules for IMC-high-order PID load frequency controller of power systems [J].
Hu, Xingqi ;
Tan, Wen ;
Hou, Guolian .
RESULTS IN CONTROL AND OPTIMIZATION, 2024, 15
[10]   Generalized Active Disturbance Rejection Controller for Load Frequency Control in Power Systems [J].
Jain, Shivam ;
Hote, Yogesh, V .
IEEE CONTROL SYSTEMS LETTERS, 2020, 4 (01) :73-78