000 04190nas|a2200385 i 4500
005 20260818133954.0
008 070200s1999 th uu m rtt 00| a1eng d
035 _a.b11777370
099 9 _aAIT Thesis no.ET-99-8
100 0 _aKhin Sandar Win
245 1 2 _aA hybrid approach to transient stability analysis
260 _aBangkok :
_bAsian Institute of Technology,
_c1999
300 _a126 leaves
490 1 _aThesis ;
_vno. ET-99-8
500 _aA thesis submitted in partial fulfillment of the requirements for the degree of Master of Engineering, School of Environment, Resources and Development
502 _aThesis (M.Eng.) - Asian Institute of Technology, 1999
520 _aTransient stability is the ability of a power system to maintain synchronism when subjected to large and severe disturbance. An efficient algorithm is essential to assess the transient stability in the modern power system. Several algorithms are developed for the analysis of Transient Stability. A hybrid method developed by Y Zhang et.al [ZWRP 97} assess the transient stability quite effectively since it couples both the time domain program and the direct method. The strength of this method is namely: the modeling of each machine and analysis of detail dynamic behavior during disturbance of Time Domain Simulation and calculation of stability limit and margin of the whole system for any condition using direct method. This thesis presents an algorithm based on the hybrid (time domain- direct method) for assessing the transient stability analysis combining the Time Domain as well as the direct method. First, the system stability is checked based on the Time Domain Simulation Algorithm. This algorithm uses the loadflow output obtained from the software package developed by D. Thukaram, IISc Bangalore, India as the input data along with machine details and system parameters and generates the reduced Y-bus for all conditions viz. Prefault, During and Post fault conditions. Further swing equation is solved for each machine using the Predictor Corrector method as a part of time domain analysis. The result obtained from time Domain Simulation Algorithm is compared with the developed algorithm by D. Thukaram, !!Sc Bangalore, and India. This thesis also presents an algorithm from the Time Domain Simulation to assess the transient stability of multimachine system via a Single Machine Infinite Bus system. Here the stability margin and stability limit for SMIB is computed by the equal area criterion. The stable margin is computed if the system is stable. Else, the unstable margin is found out for the specified clearing time. Further, the clearing time is modified and the system stability is checked again based on time domain simulation. This is done iteratively modifying the clearing time till the system become stable. The stability limit (Critical Clearing Time) is calculated by using the pair of relevant unstable as well as stable margin to interpolate the stability level corresponding to zero stable margin. This gives the complete assessment of the system during any disturbance. The algorithm is tested on two sample systems as well as on one practical system.
650 0 _aTransients (Electricity)
700 1 _aDhadbanjan, Thukaram,
_eChairperson
700 0 _aSurapong Chiraratananon,
_eExamination Committee
700 1 _aYu, Cun Yi,
_eExamination Committee
710 2 _aAsian Development Bank,
_eScholarship donor
810 2 _aAsian Institute of Technology.
_tThesis ;
_vno. ET-99-8
856 _3Full-Text
_uhttp://203.159.5.9/ait-thesis/detail.php?q=B12031
907 _a.b11777370
_bmnait
_cu
902 _a240421
998 _b0
_c000207
_dm
_ea
_fu
_g2
945 _lmnait
945 _lmnarc
942 _c14
942 _c40
909 _aBarcode : 30050120749576
_bCREATED : 2014-03-02
_cRECORD # : i12754936
_dLPATRON : 0
_eLCHKIN : -
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 0
_jTOT RENEW : 0
909 _aBarcode : 30050120365597
_bCREATED : 2016-06-15
_cRECORD # : i13036907
_dLPATRON : 0
_eLCHKIN : -
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 0
_jTOT RENEW : 0
999 _c56680
_d56680