2020
DOI: 10.11591/ijeecs.v17.i1.pp61-69
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Enhancement transient stability of power system using UPFC with M-PSO

Abstract: <span>During the last few decades, electrical power demand enlarged significantly whereas power production and transmission expansions have been brutally restricted because of restricted resources as well as ecological constraints. Consequently, many transmission lines have been profoundly loading, so the stability of power system became a Limiting factor for transferring electrical power. Therefore, maintaining a secure and stable operation of electric power networks is deemed an important and challengi… Show more

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Cited by 6 publications
(5 citation statements)
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“…By injecting an AC voltage with a controllable magnitude and phase angle in series with the transmission line via a series-connected coupling transformer, the series converter performs the primary role of a UPFC. On the other hand, the main job of the shunt converter is to give or take the actual power that the series converter needs at the common DC link [26]. Figure 2 [12] shows the UPFC's electrical model.…”
Section: Unified Power Flow Controllermentioning
confidence: 99%
“…By injecting an AC voltage with a controllable magnitude and phase angle in series with the transmission line via a series-connected coupling transformer, the series converter performs the primary role of a UPFC. On the other hand, the main job of the shunt converter is to give or take the actual power that the series converter needs at the common DC link [26]. Figure 2 [12] shows the UPFC's electrical model.…”
Section: Unified Power Flow Controllermentioning
confidence: 99%
“…V vR : the shunt converter's governable voltage magnitude ((V vR min) ≤ V vR ≤ (V vR max)); δ vR : the shunt converter's phase angle (0 ≤ δ vR ≤ 2π); V cR : the series converter's governable voltage magnitude ((V cR min) ≤ V cR ≤ (V cR max)); δ cR : the series converter's phase angle (0 ≤ δ cR ≤ 2π) [30].…”
Section: 𝐸 = 𝑉 (𝑐𝑜𝑠𝛿 + 𝑗 𝑠𝑖𝑛 𝛿 )mentioning
confidence: 99%
“…The controller can control active and reactive power in the transmission line [17]. As it is shown in Figure 1, the basic structure of UPFC device is a combination of two compensators [18]: one connected in parallel called Static Compensator (STATCOM) and the other in series called Static Synchronous Series Compensator (SSSC). Both compensators are connected with "DC" link to exchange the real power between the output terminals of STATCOM and SSSC [12,19].…”
Section: Modeling Of Upfcmentioning
confidence: 99%