METHOD FOR UPLOADING DATA OF CELL PANEL MONITORING SYSTEM AND CELL PANEL MONITORING SYSTEM
20170238074 · 2017-08-17
Assignee
Inventors
Cpc classification
Y04S40/121
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H02S50/10
ELECTRICITY
Y02E60/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A method for uploading data of a cell panel monitoring system and a cell panel monitoring system are provided. The method includes: collecting parameter information of each string of photovoltaic cells in each of a plurality of cell panels of a photovoltaic system; modulating the parameter information into a pulse carrier signal; and loading the pulse carrier signal to a busbar of the photovoltaic system, where the busbar is connected in series with each of the cell panels; where parameter information of the cell panels is obtained by a server of the photovoltaic system through demodulation on receiving the pulse carrier signal, data uploaded in a preset time difference AT is determined as valid data, remaining data is discarded, and the server is connected in series in the busbar. A cell panel monitoring system is further provided.
Claims
1. A method for uploading data of a cell panel monitoring system, comprising: collecting parameter information of each string of photovoltaic cells in each of a plurality of cell panels of a photovoltaic system; modulating the parameter information into a pulse carrier signal; and loading the pulse carrier signal to a busbar of the photovoltaic system, wherein the busbar is connected in series with each of the cell panels; wherein parameter information of the cell panels is obtained by a server of the photovoltaic system through demodulation on receiving the pulse carrier signal, data uploaded in a preset time difference AT is determined as valid data, remaining data is discarded, and the server is connected in series in the busbar.
2. The method for uploading data of a cell panel monitoring system according to claim 1, wherein in a case that a receiving function is exclusive in the cell panel monitoring system, the method further comprises: performing, by the cell panel monitoring system, system self-checking after the system meets a power-on condition; detecting a transmission condition after the self-checking is successful; and calculating random delay time in a current transmission period in a case that the transmission condition is met; wherein data transmission is performed by the cell panel monitoring system when transmission time is reached.
3. The method for uploading data of a cell panel monitoring system according to claim 1, wherein in a case that the cell panel monitoring system has a receiving function, the method further comprises: performing, by the cell panel monitoring system, system self-checking after the system meets a power-on condition; detecting a transmission condition after the self-checking is successful; and sensing whether there is data transmitted on the busbar; wherein data transmission is performed if there is no data transmitted on the busbar.
4. The method for uploading data of a cell panel monitoring system according to claim 1, wherein a collision probability k in a transmission period meets the following condition:
5. The method for uploading data of a cell panel monitoring system according to claim 1, wherein the parameter information is a voltage, a current or a temperature.
6. A cell panel monitoring system, wherein each of a plurality of cell panels of a photovoltaic system is provided with the cell panel monitoring system, and the cell panel monitoring system comprises: a plurality of voltage collection circuits, a controller, and a transmission circuit; wherein each string of photovoltaic cells of each of the cell panels is connected in parallel with one of the plurality of voltage collection circuits, and each of the plurality of voltage collection circuits is configured to collect parameter information of the corresponding string of photovoltaic cells and store the parameter information into the controller; and the transmission circuit is configured to transmit the collected corresponding parameter information to a busbar in a form of a pulse carrier signal.
7. The cell panel monitoring system according to claim 6, further comprising a receiving circuit configured to sense and receive a signal on the busbar.
8. The cell panel monitoring system according to claim 6, further comprising a plurality of bypass diodes, each one of which is connected between two terminals of each string of photovoltaic cells in each of the cell panels.
9. The cell panel monitoring system according to claim 6, wherein the cell panel monitoring system is designed as a standard module for using as a universal module.
10. The cell panel monitoring system according to claim 9, comprising: a plurality pairs of parameter information collection terminals, a PV+ terminal, and a PV− terminal; wherein two terminals of the transmission circuit are respectively connected to the PV+ terminal and the PV− terminal; and two terminals of each of the plurality of voltage collection circuits are connected to one pair of the plurality pairs of parameter information collection terminals.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0039] For a better understanding of the object, technical solutions and advantages of the present disclosure, the present disclosure is further described in detail in conjunction with drawings and embodiments. It should be understood that the specific embodiments described herein are merely for illustration of the invention and do not limit the invention.
[0040] Referring to
[0041] Each of the multiple cell panels 100 in the cell panel array 10 is provided with a cell panel monitoring system 200 according to the present disclosure. The cell panel monitoring system 200 collects parameter information, such as a voltage, a current and a temperature, of each string of photovoltaic cells 101 in the corresponding one of the multiple cell panels 100, modulates the parameter information into a pulse signal and loads the pulse signal to the busbar 30. The server 900 connected in series in the busbar 30 demodulates the pulse signal as received, to obtain a status parameter of each of the cell panels 100.
[0042] Each of the cell panels 100 generally includes multiple photovoltaic cells 101 connected in series or in parallel. In order to prevent a photovoltaic cell 101 in abnormal operation from affecting an output of the entire cell panel 100, a bypass diode 102 may be connected between two terminals of the multiple photovoltaic cells 101.
[0043] Referring to
[0044] Each string of photovoltaic cells 101 in each of the multiple cell panels 100 is connected in parallel with one of the several voltage collection circuits 300. Each of the several voltage collection circuits 300 is configured to collect the parameter information of the corresponding string of photovoltaic cells 101, and store the parameter information into the controller 400. The transmission circuit 500 is configured to transmit the collected corresponding parameter information to the busbar 30 in a format determined by a protocol, i.e., in a form of a pulse carrier signal. The receiving circuit 600 is configured to sense and receive a signal on the busbar 30. In other embodiments, the cell panel monitoring system 200 may not be provided with the receiving circuit 600, as shown in
[0045] Each of the voltage collection circuits 300 is configured to collect the parameter information of each string of photovoltaic cells 101 and store the parameter information into the controller 400. The transmission circuit 500 is configured to transmit the collected parameter information, such as a voltage, a current or a temperature, to the busbar in the format determined by the protocol. The receiving circuit 600 is configured to sense and receive a signal on the busbar.
[0046] Referring to
[0047] A collision probability k in the transmission period meets the following condition:
where N is the number of the cell panels, T.sub.L is the transmission period, T.sub.1 is a minimum step size of a timer, and T.sub.2 is a transmission time length. Taking 25 cell panels per string as an example, the transmission period T.sub.L is 1 s, the minimum step size T.sub.1 of the timer is 1 ms, and the transmission time length T.sub.2 is 2 ms, then the collision probability is 1.2% by calculation.
[0048] Reference is made to
[0049]
[0050] A function of the cell panel monitoring system 200 is to collect a parameter, such as a voltage or a temperature, of each string of photovoltaic cells 101 of each of the multiple cell panels 100, and to convert the parameter into a predetermined data format according to the protocol. A switch circuit is controlled, by an output pin of the timer of the controller 400, to superimpose the pulse signal to the busbar 30. On receiving the pulse signal, the server 900 demodulates the pulse signal, to obtain parameter information, such as a voltage or a temperature, of the multiple cell panels 100.
[0051] The cell panel monitoring system 200 can be divided into two types, i.e., a type with the receiving circuit 600 and a type without the receiving circuit 600. The cell panel monitoring system 200 without the receiving circuit 600 performs system self-checking after the system meets the power-on condition, detects the transmission condition after the self-checking is successful, and calculates the random delay time in the current transmission period in a case that the transmission condition is met. Data transmission is performed when the transmission time is reached. By calculation, the collision probability can be maintained at a very low level.
[0052] The cell panel monitoring system 200 with the receiving circuit 600 performs system self-checking after the system meets the power-on condition, detects the transmission condition after the self-checking is successful, senses whether there is data transmitted on the busbar, waits if there is data transmitted on the busbar. Data transmission is performed until the busbar 30 is idle, thereby further reducing the collision possibility.
[0053] On receiving uploaded data, the server 900 determines data uploaded in ΔT as the valid data and discards remaining data. In this way, data invalidation caused by inconsistent data upload time in a case that illumination changes dramatically can be avoided.
[0054] The above descriptions are only preferred embodiments of the invention and are not to limit the invention. Any changes, equivalents and modifications which are made within the spirit and principle of the present disclosure shall fall within the protection scope of the present disclosure.