Wide area oscillation damping controller for DFIG using WAMS with delay compensation

被引:27
|
作者
Simon, Likin [1 ]
Swarup, K. Shanti [1 ]
Ravishankar, Jayashri [2 ]
机构
[1] Indian Inst Technol, Elect Engn Dept, Madras, Tamil Nadu, India
[2] Univ New South Wales, Sch Elect Engn & Telecommun, Sydney, NSW 2052, Australia
关键词
phasor measurement; oscillations; asynchronous generators; control system synthesis; power generation control; wind turbines; power system stability; power system control; damping; power system interconnection; wind power plants; power system measurement; wide area oscillation; DFIG; delay compensation; system stability; induction generator based wind turbines; remote location; local signals; complete oscillation information; wide area damping control; local area oscillations; inter area oscillations; wide area measurement systems; phasor measurement units; synchrophasors; centralised controller; inter-area; local oscillatory modes; damping controller parameters; local power system stabiliser settings; system modal damping; WAMS based controller; controller design process; WADC algorithm addresses this issue; delayed time; optimisation algorithm; comprehensive case studies; noisy delayed communication signals; FED INDUCTION GENERATOR; POWER-SYSTEM; DESIGN; PENETRATION; STABILITY;
D O I
10.1049/iet-rpg.2018.5192
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Several studies have reported the improvement of system stability with a doubly-fed induction generator (DFIG) based wind turbines. Due to the remote location of DFIG, the local signals measured may not contain the complete oscillation information of the power system. This study describes an optimisation enabled wide area damping control (WADC) for DFIG to mitigate both local and inter area oscillations. Wide area measurement systems (WAMSs) which include phasor measurement units and synchrophasors are used for a centralised controller for damping inter-area and local oscillatory modes. The proposed damping controller parameters are optimised along with the local power system stabiliser settings for maximising the impact on system modal damping. The challenging shortcoming of WAMS based controller is the variable communication latency which can adversely affect the controller if not accounted in the controller design process. The proposed WADC algorithm addresses this issue and compensates for the delayed and time stamped error signals. The variable latencies are normalised in the optimisation algorithm in the design of controller parameters. The proposed algorithm is verified with transient simulation in PSCAD/EMTDC for the most severe three-phase faults. A set of comprehensive case studies are performed to analyse the effectiveness of the proposed algorithm for the noisy, delayed communication signals.
引用
收藏
页码:128 / 137
页数:10
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