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    A system wide scheme for mitigation of voltage instability

    , Article 2009 IEEE/PES Power Systems Conference and Exposition, PSCE 2009, Seattle, WA, 15 March 2009 through 18 March 2009 ; 2009 ; 9781424438112 (ISBN) Amraee, T ; Feuillet, R ; Ranjbar, A. M ; Mozafari, B ; Sharif University of Technology
    2009
    Abstract
    In this paper, a system wide scheme is proposed to arrest voltage instability. This scheme consists of two stabilizing and securing parts. For post- contingency situations, where there are no equilibrium solutions, first, the stabilizing scheme finds the closest solvable operating point, and then passes this point to the securing scheme. The securing scheme brings the solvable, but insecure operating point, back to a secure and stable one. Also, a voltage stability indicator is proposed to monitor the available margin to the collapse point. The proposed stabilizing and securing model are solved using the sequential quadratic programming technique. ©2009 IEEE  

    Comprehensive control framework for ensuring loading margin of power systems considering demand-side participation

    , Article IET Generation, Transmission and Distribution ; Volume 6, Issue 12 , 2012 , Pages 1189-1201 ; 17518687 (ISSN) Rabiee, A ; Parvania, M ; Vanouni, M ; Parniani, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    Abstract
    This study presents a comprehensive control framework to ensure desired loading margin (LM) while minimising the corresponding control cost. The proposed framework is divided into corrective control (CC) and preventive control (PC) subproblems. The CC subproblem deals with the condition that a power system encounters voltage instability as a result of severe contingencies. This control is merely devised to restore system stability. The PC subproblem is brought up when the system operates in a stable region but its LM is insufficient. In this manner, the system-operating point is changed such that the desired LM is achieved. One of the features of the proposed methodology is to consider... 

    Adaptive under-voltage load shedding scheme using model predictive control

    , Article Electric Power Systems Research ; Volume 81, Issue 7 , July , 2011 , Pages 1507-1513 ; 03787796 (ISSN) Amraee, T ; Ranjbar, A. M ; Feuillet, R ; Sharif University of Technology
    2011
    Abstract
    Recent system wide disturbances have demonstrated the need for automatic system protection schemes to prevent such cascading disturbances. In this paper, an adaptive under-voltage load shedding scheme using model predictive control is proposed to protect power system against voltage instability. The proposed scheme calculates the criticality of the system based on the measurements of voltage magnitudes and reactive power generations and then in case of voltage instability a model predictive based step-sized load shedding scheme will be triggered. The speed and amount of load shedding steps are adapted to the severity of contingency in the affected region. By devising the grid into the... 

    A global Particle Swarm-Based-Simulated Annealing Optimization technique for under-voltage load shedding problem

    , Article Applied Soft Computing Journal ; Volume 9, Issue 2 , 2009 , Pages 652-657 ; 15684946 (ISSN) Sadati, N ; Amraee, T ; Ranjbar, A. M ; Sharif University of Technology
    2009
    Abstract
    In this paper, a new approach based on hybrid Particle Swarm-Based-Simulated Annealing Optimization technique (PSO-B-SA) is proposed for solving under-voltage load shedding (UVLS) problem. Under-voltage load shedding (UVLS) is one of the most important tools for avoiding voltage instability. In this paper, the UVLS problem is formulated based on the concept of the static voltage stability margin and its sensitivity at the maximum loading point or the collapse point. The voltage stability criterion is modeled directly into the load-shedding scheme. In any UVLS scheme finding the global point is very important for having cost effective economy. The proposed PSO-B-SA methodology is implemented...