Health-aware fault-tolerant receding horizon control of wind turbines

被引:7
|
作者
Jain, Tushar [1 ]
Yame, Joseph [2 ]
机构
[1] Indian Inst Technol Mandi, Sch Comp & Elect Engn, Kamand 175005, HP, India
[2] Univ Lorraine, CRAN, CNRS, F-54506 Nancy, France
关键词
Health aware control; Fault diagnosis; Self-healing; Fault-tolerant control; Renewable energy systems; Wind turbine converters; Receding horizon control; Structural loads; PREDICTIVE CONTROL; PITCH CONTROL;
D O I
10.1016/j.conengprac.2019.104236
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Actuator faults in wind turbines (WT) significantly increase the structural loads exhibited by torsional vibration and tower fore-aft bending, thereby, drastically hampering the turbine health in terms of the reduction in its lifetime. This paper presents a health-aware fault-tolerant control (HAFTC) scheme for WT such that the turbine health, i.e., power maximization and fatigue reduction, can be achieved even under the event of bias faults in converter actuator. The proposed HAFTC system is built upon two interconnected modules: fault diagnosis and controller reconfiguration. The latter module is developed using a receding horizon control technique where the underlying optimization problem is not convex. The originality of the proposed scheme lies in the transformation of the initial non-convex optimization problem into a convex problem. The former module extracts the complete information of the fault, which is constructed using an unknown-input-observer based residual filter and a specific fault-estimation filter. A 2M W WT system is used to demonstrate the effectiveness of the HAFTC scheme.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Health-aware fault-tolerant control of multiple cooperating autonoumous vehicles
    Lipiec, Bogdan
    Mrugalski, Marcia
    Witczak, Marcin
    IEEE CIS INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS 2021 (FUZZ-IEEE), 2021,
  • [2] HEALTH-AWARE AND FAULT-TOLERANT CONTROL OF AN OCTOROTOR UAV SYSTEM BASED ON ACTUATOR RELIABILITY
    Carlo Salazar, Jean
    Sanjuan, Adrian
    Nejjari, Fatiha
    Sarrate, Ramon
    INTERNATIONAL JOURNAL OF APPLIED MATHEMATICS AND COMPUTER SCIENCE, 2020, 30 (01) : 47 - 59
  • [3] Health-aware LPV Model Predictive Control of Wind Turbines
    Boutrous, Khoury
    Nejjari, Fatiha
    Puig, Vicenc
    IFAC PAPERSONLINE, 2020, 53 (02): : 826 - 831
  • [4] Adaptive Fault-tolerant Pitch Control of Wind Turbines
    Hu, Xinrui
    Wang, Qingfeng
    Jiang, Tingting
    Zhan, Shaohui
    2023 35TH CHINESE CONTROL AND DECISION CONFERENCE, CCDC, 2023, : 5144 - 5149
  • [5] Fault-Tolerant Control of Wind Turbines: A Benchmark Model
    Odgaard, Peter Fogh
    Stoustrup, Jakob
    Kinnaert, Michel
    IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, 2013, 21 (04) : 1168 - 1182
  • [6] Health-aware Model Predictive Control including Fault-tolerant Capabilities for Drinking Water Transport Networks
    Pour, Fatemeh Karimi
    Puig, Vicenc
    2021 29TH MEDITERRANEAN CONFERENCE ON CONTROL AND AUTOMATION (MED), 2021, : 663 - 668
  • [7] Active and Passive Fault-Tolerant LPV Control of Wind Turbines
    Sloth, Christoffer
    Esbensen, Thomas
    Stoustrup, Jakob
    2010 AMERICAN CONTROL CONFERENCE, 2010, : 4640 - 4646
  • [8] Fault-Tolerant Economic Model Predictive Control for Wind Turbines
    Jain, Tushar
    Yame, Joseph Julien
    IEEE TRANSACTIONS ON SUSTAINABLE ENERGY, 2019, 10 (04) : 1696 - 1704
  • [9] Health-aware model predictive control of wind turbines using fatigue prognosis
    Eloy Sanchez, Hector
    Escobet, Teresa
    Puig, Vicenc
    Odgaard, Peter Fogh
    INTERNATIONAL JOURNAL OF ADAPTIVE CONTROL AND SIGNAL PROCESSING, 2018, 32 (04) : 614 - 627
  • [10] TOWARDS A HEALTH-AWARE FAULT TOLERANT CONTROL OF COMPLEXSYSTEMS: A VEHICLE FLEET CASE
    Lipiec, Bogdan
    Mrugalski, Marcin
    Witczak, Marcin
    Stetter, Ralf
    INTERNATIONAL JOURNAL OF APPLIED MATHEMATICS AND COMPUTER SCIENCE, 2022, 32 (04) : 619 - 634