As two 500kV high voltage direct current (HVDC) lines are planned to be installed in the Alberta transmission system in Canada, this work analyzes the potential low frequency oscillations in the system and designs damping controllers for the identified oscillation modes. By performing Prony analysis, oscillation modes in the power system are identified. Two oscillation modes are found in the system. A HVDC damping controller and PSS are designed to damp each oscillation mode respectively. The effectiveness of both damping controllers is tested under a set of three-phase faults. The potential interaction of these two modes is analyzed
International audienceThis paper proposes a mixed sensitivity H-infinity controller to deal with dam...
In recent years, the low-frequency oscillation (LFO) problem has become increasingly significant wit...
This thesis is concerned with the development of a supplementary controller associated with a Static...
SaskPower has two separate systems, namely the North and the South systems. The South system contai...
This chapter shows the potential contribution that voltage source converter-high-voltage direct curr...
The damping of multi-modal oscillations through supplementary control of multiple HVDC systems is pr...
© 2018 IEEE. Due to the increasing replacement of conventional generators with renewable energy sour...
International audienceThis paper addresses the problem of damping inter-area oscillations via power ...
As an interconnected power system via a High-Voltage Direct Current (HVDC) link is subjected to a ra...
In this paper, damping power system oscillations with active power and ac voltage modulations of VSC...
The complexity of an interconnected power system has grown exponentially with the increased load dem...
The primary aim of this thesis is to investigate the small-signal dynamic performance of high voltag...
A hybrid multi-infeed HVDC (HMIDC) system is composed of line-commutated converter-based high-voltag...
A hybrid multi-terminal HVDC (MTDC) scheme combines line commutated converter and voltage source con...
This paper presents implications of connecting large remote generation sources to an existing grid. ...
International audienceThis paper proposes a mixed sensitivity H-infinity controller to deal with dam...
In recent years, the low-frequency oscillation (LFO) problem has become increasingly significant wit...
This thesis is concerned with the development of a supplementary controller associated with a Static...
SaskPower has two separate systems, namely the North and the South systems. The South system contai...
This chapter shows the potential contribution that voltage source converter-high-voltage direct curr...
The damping of multi-modal oscillations through supplementary control of multiple HVDC systems is pr...
© 2018 IEEE. Due to the increasing replacement of conventional generators with renewable energy sour...
International audienceThis paper addresses the problem of damping inter-area oscillations via power ...
As an interconnected power system via a High-Voltage Direct Current (HVDC) link is subjected to a ra...
In this paper, damping power system oscillations with active power and ac voltage modulations of VSC...
The complexity of an interconnected power system has grown exponentially with the increased load dem...
The primary aim of this thesis is to investigate the small-signal dynamic performance of high voltag...
A hybrid multi-infeed HVDC (HMIDC) system is composed of line-commutated converter-based high-voltag...
A hybrid multi-terminal HVDC (MTDC) scheme combines line commutated converter and voltage source con...
This paper presents implications of connecting large remote generation sources to an existing grid. ...
International audienceThis paper proposes a mixed sensitivity H-infinity controller to deal with dam...
In recent years, the low-frequency oscillation (LFO) problem has become increasingly significant wit...
This thesis is concerned with the development of a supplementary controller associated with a Static...