1. Field of the Invention
The present invention relates to an off-grid master-slave solar inverter system and a control method thereof, and particularly to an off-grid master-slave solar inverter system and a control method thereof that can utilize a controller to control a first inverter to output pulses corresponding a first series number and a second inverter to output pulses corresponding a second series number respectively to determine which inverter is a master inverter.
2. Description of the Prior Art
In the prior art, an off-grid master-slave solar inverter system fixedly sets an inverter included in the off-grid master-slave solar inverter system to be a master inverter, where a frequency of an alternating current (AC) voltage outputted by the master inverter is a reference frequency. Therefore, other inverters included in the off-grid master-slave solar inverter system output AC voltages with the frequency of the AC voltage outputted by the master inverter according to the frequency of the AC voltage outputted by the master inverter. Thus, each inverter included in the off-grid master-slave solar inverter system can output an AC voltage with the same frequency. However, each inverter included in the off-grid master-slave solar inverter system can not output an AC voltage with the same frequency when the master inverter can not function well (that is, the master inverter can not provide the reference frequency), resulting in the off-grid master-slave solar inverter system malfunctioning.
In addition, the off-grid master-slave solar inverter system can also utilize a controller to communicate with each inverter through a communication port of each inverter to determine which inverter included in the off-grid master-slave solar inverter system is a master inverter. However, the method is more complicated and still face malfunction of the master inverter.
An embodiment provides a control method of an off-grid master-slave solar inverter system, where the off-grid master-slave solar inverter system includes a first inverter, a second inverter, and a controller. The control method includes powering on the off-grid master-slave solar inverter system; the controller controlling the first inverter and the second inverter to prepare to output pulses corresponding to a first series number and pulses corresponding to a second series number, respectively; only the first inverter outputting a pulse corresponding to a first number of the first series number; and the controller controlling the first inverter to output a first AC voltage and the second inverter to output a second AC voltage with a frequency of the first AC voltage after a first predetermined time.
Another embodiment provides an off-grid master-slave solar inverter system. The off-grid master-slave solar inverter system includes a first inverter, a second inverter, and a controller. The first inverter has a first input terminal for coupling to a solar panel, and a first output terminal for coupling to a load, where the first inverter is used for outputting pulses corresponding to a first series number and converting a direct current (DC) voltage of the solar panel into a first AC voltage; the second inverter has a second input terminal for coupling to the solar panel, and a second output terminal for coupling to the load, where the second inverter is used for outputting pulses corresponding to a second series number and converting the DC voltage of the solar panel into a second AC voltage; and the controller is coupled to the first inverter and the second inverter for controlling the first inverter and the second inverter to output the pulses corresponding to the first series number and the pulses corresponding to the second series number, respectively, and controlling the first inverter and the second inverter to output the first AC voltage and the second AC voltage, respectively.
The present invention provides an off-grid master-slave solar inverter system and a control method thereof. The off-grid master-slave solar inverter system and the control method utilize a controller to control a first inverter and a second inverter to output pulses corresponding to a first series number and pulses corresponding to a second series number, respectively. Then, the controller can determine which inverter is a master inverter by a condition of the first inverter and the second inverter outputting the pulses corresponding to the first series number and the pulses corresponding to the second series number, respectively. Therefore, compared to the prior art, the control method provided by the present invention is simpler. In addition, when the master inverter fails, the present invention can not face malfunction of the off-grid master-slave solar inverter system because the control method provided by the present invention still can be utilized to determine which inverter is a new master inverter.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Please refer to
When the off-grid master-slave solar inverter system 100 is powered on, the controller 106 controls the first inverter 102 and the second inverter 104 to prepare to output the pulses corresponding to the first series number and the pulses corresponding to the second series number, respectively. Please refer to
Please refer to
Please refer to
Step 500: Start.
Step 502: Power on the off-grid master-slave solar inverter system 100.
Step 504: The controller 106 controls the first inverter 102 and the second inverter 104 to prepare to output pulses corresponding to a first series number and pulses corresponding to a second series number, respectively.
Step 506: If the first inverter 102 first outputs the pulses corresponding to the first series number, go to Step 508; if the second inverter 104 first outputs the pulses corresponding to the second series number, go to Step 510; if the first inverter 102 outputs the pulses corresponding to the first series number and the second inverter 104 outputs the pulses corresponding to the second series number, go to Step 504.
Step 508: The controller 106 controls the first inverter 102 to output a first AC voltage FAC and the second inverter 104 to output a second AC voltage SAC with a frequency of the first AC voltage FAC after a first predetermined time.
Step 510: The controller 106 controls the second inverter 104 to output a second AC voltage SAC and the first inverter 102 to output a first AC voltage FAC with a frequency of the second AC voltage SAC after a second predetermined time.
In Step 506, as shown in
To sum up, the off-grid master-slave solar inverter system and the control method thereof utilize the controller to control the first inverter and the second inverter to output pulses corresponding to the first series number and pulses corresponding to the second series number, respectively. Then, the controller can determine which inverter is a master inverter by a condition of the first inverter and the second inverter outputting the pulses corresponding to the first series number and the pulses corresponding to the second series number, respectively. Therefore, compared to the prior art, the control method provided by the present invention is simpler. In addition, when the master inverter fails, the present invention can not face malfunction of the off-grid master-slave solar inverter system because the control method provided by the present invention still can be utilized to determine which inverter is a new master inverter.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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101104012 | Feb 2012 | TW | national |