IAS '97. Conference Record of the 1997 IEEE Industry Applications Conference Thirty-Second IAS Annual Meeting
DOI: 10.1109/ias.1997.629051
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A new control strategy for voltage type PWM rectifiers to realise zero steady-state control error in input current

Abstract: In this paper, a new simple control strategy for ac input current o f voltage type P W M rectifiers which can eliminate the steady state control error completely is proposed. This control method requires neither the instantaneous value of the supply voltage nor any accurate circuit parameters on the ac side o f the rectifier. Thus, a robust operation against the variation o f the circuit parameters can be achieved. In the proposed control system, a digital resonant element implemented by a digital signal proce… Show more

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Cited by 111 publications
(6 citation statements)
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“…This modification is also justified from the fact that in implementations of the resonant controller for practical applications it is required to add the damping factor ζ in the digital implementation due to numerical limitations [20]. Having applied this modification, A 0 will be an exponentially stable matrix, g is bounded and T -periodic, and thus the system of (14) holds all conditions of Theorem C. Existence, uniqueness, and exponential stability of a T -periodic solution for the system is then concluded from this theorem. The constant * defined in Theorem C is obtained from the continuity condition of the matrix ∂ f ∂ x at the origin.…”
Section: Stability Analysis Of the Proposed System Ofmentioning
confidence: 96%
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“…This modification is also justified from the fact that in implementations of the resonant controller for practical applications it is required to add the damping factor ζ in the digital implementation due to numerical limitations [20]. Having applied this modification, A 0 will be an exponentially stable matrix, g is bounded and T -periodic, and thus the system of (14) holds all conditions of Theorem C. Existence, uniqueness, and exponential stability of a T -periodic solution for the system is then concluded from this theorem. The constant * defined in Theorem C is obtained from the continuity condition of the matrix ∂ f ∂ x at the origin.…”
Section: Stability Analysis Of the Proposed System Ofmentioning
confidence: 96%
“…Theorem C stated in Appendix C is used here to prove the stability of (14). The correspondence between the variables used in Theorem C and the aforementioned variables are summarized as:…”
Section: Stability Analysis Of the Proposed System Ofmentioning
confidence: 99%
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“…The principle of resonant controller is based on the resonance; the transfer function module takes a very big value (infinite in theory) for a privileges frequency, this allows to obtain a difference between the controlled variable and a sinusoidal reference equal to zero [7] [8].…”
Section: Control Loopsmentioning
confidence: 99%
“…A estrutura de controle ressonante vem sendo muito estudada nos últimos anos dentro do âmbito de controle de corrente, principalmente em conversores de potência [46,47]. Ela é capaz, assim como o controlador PI em coordenadas síncronas, de rastrear sinais de natureza CA, com uma frequência síncrona definida.…”
Section: Controle De Corrente Proporcional-ressonanteunclassified