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AN4070 Fiches technique(PDF) 31 Page - STMicroelectronics |
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AN4070 Fiches technique(HTML) 31 Page - STMicroelectronics |
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31 / 53 page ![]() AN4070 STM32F103xx based current control for inverter grid connection Doc ID 022934 Rev 1 31/53 controlled transforming the current in the same reference frame and by acting on the amplitude of the Id component. The Iq component must, also, be controlled in order to ensure zero reactive power injection. On the contrary, if the Vq component is controlled to zero in the PLL, the active power is controlled with the Id current component and the Iq current component is used to control the reactive power to zero or to the desired value. The reference values for the active and reactive component of the current are set by two additional PI regulators in the outer control loop. The active reference current component is generated by confronting the DC bus voltage with the reference voltage value. The error between the actual value and the reference DC bus voltage is sent to a PI regulator whose output is the active current component value. Similarly, the reactive current reference value is set by another PI regulator whose input is the error generated between the reactive power command and the actual estimated value. The difference between the reference components of the current and the actual d-q components are the inputs of the PI regulators in the inner control loop. The outputs of the PI regulators in the inner loop are two voltage components, Vd and Vq. By performing a reverse Park transformation two AC voltages are generated back on the stationary reference frame, and so the generation of the modulating signals of the DC-AC converter can be executed by the microcontroller. The block diagram of the control strategy described above is shown in Figure 21. The amount of power injected into the grid depends on the power available from the PV panel. This power is then processed by the DC-DC converter which is controlled in order to maximize the energy yield from the array, independently from temperature variations and irradiation conditions, by controlling its input impedance. The control of the input impedance requires both PV array current and voltage sensing and some simple calculations executed by the well known maximum power point algorithm. The perturb & observe (P&O) method is a very common and easy way to implement an MPPT technique. The DC-DC converter duty cycle is incremented or decremented according to both array power and voltage change. |
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