Performance of Multistep Finite Control Set Model Predictive Control for Power Electronics
Работа многозвенного предсказательного управления с конечным множеством переключений для силовой электроники
2014-04-08
SCID: 54.1/k3njdube
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direct MPC with reference trackingfinite control set model predictive controllong prediction horizonsmodel predictive controlmodified sphere decodingspace vector modulationthree-level invertertotal harmonic distortionvariable speed drivevoltage source inverter
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Abstract (AI)
The performance of direct model predictive control (MPC) with reference tracking and long prediction horizons is evaluated through simulations, using the current control problem of a variable speed drive system with a voltage source inverter as an illustrative example. A modified sphere decoding algorithm is used to efficiently solve the optimization problem underlying MPC for long horizons. For a horizon of five and a three-level inverter, for example, the computational burden is reduced by four orders of magnitude, compared to the standard exhaustive search approach. This paper illustrates the performance gains that are achievable by using prediction horizons larger than one. Specifically, for long prediction horizons and a low switching frequency, the total harmonic distortion of the current is significantly lower than for space vector modulation, making direct MPC with long horizons an attractive and computationally viable control scheme.
Key Findings
1
A modified sphere decoding algorithm efficiently solves the MPC optimization for long horizons, reducing computational burden by four orders of magnitude versus exhaustive search for horizon five and a three-level inverter.
2
Direct MPC with long horizons is computationally viable for practical power electronics applications when combined with the proposed efficient solver.
3
Direct model predictive control (MPC) with reference tracking and long prediction horizons improves control performance for a variable speed drive current control problem.
4
For long prediction horizons and low switching frequency, direct MPC achieves significantly lower current THD than space vector modulation, making it an attractive control scheme.
5
Using prediction horizons larger than one yields measurable performance gains, notably reduced total harmonic distortion (THD) of the current at low switching frequency.
Research Object
Direct finite-control-set model predictive control (FCS-MPC) applied to current control of a variable-speed drive system with a voltage-source inverter
Research Subject
Performance metrics (computational burden, feasibility for long prediction horizons, reduction in total harmonic distortion at low switching frequency) of multistep FCS-MPC compared to exhaustive search and space vector modulation
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2014-04-08
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