Title :
Comparative evaluation of DSTATCOM control algorithms for load compensation
Author :
Kummari, Naresh K. ; Singh, Asheesh K. ; Kumar, Pradeep
Author_Institution :
Electr. Eng. Dept., MNNIT, Allahabad, India
Abstract :
A number of control algorithms have been developed for load compensation using DSTATCOM. Choice of an algorithms according to the system therefore, becomes a topic of interest for the researchers. In this paper, nine control algorithms viz. instantaneous p-q theory, instantaneous modified p-q theory, synchronous reference frame theory, instantaneous p-q-r theory, average unity power factor (AUPF) theory, vectorial theory, instantaneous symmetrical components theory (ISCT), average global control theory (AGCT), and instantaneous global control theory (IGCT) are compared for different operating conditions of distribution system. The cases considered for system operation are nonlinear balanced load with balanced source, nonlinear unbalanced load with balanced source, nonlinear unbalanced load with unbalanced source, and nonlinear unbalanced load with non-sinusoidal balanced source. The performance of the system simulated on MATLAB platform is evaluated considering source current total harmonic distortion (THDI), total distortion content (TDC), and neutral current magnitude. The results show that ISCT, AGCT and IGCT control algorithms are able to compensate the load and improve system performance over other algorithms.
Keywords :
compensation; harmonic distortion; load regulation; nonlinear control systems; power distribution control; power factor; static VAr compensators; AGCT; AUPF theory; DSTATCOM control algorithms; IGCT; ISCT; MATLAB platform; TDC; THD; average global control theory; average unity power factor theory; balanced source; distribution system conditions; instantaneous global control theory; instantaneous modified p-q theory; instantaneous p-q-r theory; instantaneous symmetrical components theory; load compensation; neutral current magnitude; nonlinear balanced load; nonlinear unbalanced load; nonsinusoidal balanced source; source current total harmonic distortion; synchronous reference frame theory; total distortion content; vectorial theory; Harmonic analysis; Power system harmonics; DSTATCOM; harmonics; power theory; unbalance system;
Conference_Titel :
Harmonics and Quality of Power (ICHQP), 2012 IEEE 15th International Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4673-1944-7
DOI :
10.1109/ICHQP.2012.6381270