NPC three-level inverter optimal sequence model prediction control device and method

A three-level inverter, model predictive control technology, applied in harmonic reduction devices, output power conversion devices, electrical components, etc., can solve the problem of unstable output current spectrum, unstable switching frequency, and grid-connected current quality Poor etc.

Active Publication Date: 2020-03-06
NANJING UNIV OF SCI & TECH
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Problems solved by technology

[0003] However, the traditional model predictive control also has disadvantages such as poor grid-connected current quality and unstable switching frequency, especially the problem that the output current spectrum is not fixed, which will significantly increase the difficulty of designing the subsequent grid-connected filter. Limits the application of model predictive control in grid-connected inverter control

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  • NPC three-level inverter optimal sequence model prediction control device and method
  • NPC three-level inverter optimal sequence model prediction control device and method
  • NPC three-level inverter optimal sequence model prediction control device and method

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Embodiment 1

[0164] In this embodiment, an NPC three-phase three-level inverter grid-connected system simulation platform is built based on MATLAB / Simulink, and the optimal sequence model predictive control method is simulated and verified. The specific parameters are shown in Table 2. Figure 6 , Figure 7 , Figure 8 , Figure 10 They are the simulation results of grid-connected instantaneous active power, grid-connected instantaneous reactive power, three-phase grid-connected current, and midpoint voltage of DC side, respectively. Figure 9 It is the harmonic distribution diagram of the three-phase grid-connected current. From Figure 6 , Figure 7 It can be seen that the optimal sequence model predictive control can effectively control the instantaneous active power and reactive power to track the power reference value, and the power fluctuation is small; from Figure 8 , Figure 9 It can be seen from the figure that under the optimal sequence model predictive control, the three-...

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Abstract

The invention discloses an NPC three-level inverter optimal sequence model prediction control device and method. The device comprises an NPC three-phase three-level inverter, a digital processing control module and a driving circuit, wherein the digital processing control module comprises a sampling unit, a sector pre-selection unit, a vector action time calculation unit, a prediction calculationunit and a modulation unit. The method comprises the following steps of: calculating a reference voltage vector and carrying out sector selection on a pre-generated three-vector sequence, calculatingincrements of the current and the neutral-point voltage according to the sampling information, calculating vector action time and correcting the vector action time, predicting, calculating and selecting an optimal vector sequence and action time, and generating a switching signal by the modulation unit to drive the NPC three-phase three-level inverter to work. The method is low in hardware cost, accurate in control and wide in application range, fixed switching frequency grid-connected control over the NPC three-phase three-level inverter can be achieved, the total harmonic distortion rate ofthe network access current is reduced, and meanwhile fluctuation of the midpoint voltage of the direct-current side is effectively restrained.

Description

technical field [0001] The invention relates to the technical field of DC-AC converters of electric energy conversion devices, in particular to an optimal sequence model predictive control device and method for an NPC three-level inverter. Background technique [0002] The NPC (Neutral Point Clamped) three-phase three-level grid-connected inverter plays the role of an energy conversion interface in a distributed grid-connected power generation system, and its working status greatly affects the power quality of the grid. At present, there are many control strategies applied to grid-connected inverters, mainly including: PI control, PR control, hysteresis control and model predictive control, among which model predictive control is an emerging nonlinear control method with strong robustness, fast The advantages of uniqueness, easy digital implementation and multi-variable control have attracted extensive attention in the grid-connected control of multi-level inverters. [000...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J3/38H02M7/487H02M7/5387
CPCH02J3/38H02M7/487H02M7/53873Y02E40/40
Inventor 吕建国闫涵徐志良丁金勇吕勋
Owner NANJING UNIV OF SCI & TECH
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