CN104836528A - Convergence detection method and system for convergence boxes, solar power station - Google Patents

Convergence detection method and system for convergence boxes, solar power station Download PDF

Info

Publication number
CN104836528A
CN104836528A CN201510206770.6A CN201510206770A CN104836528A CN 104836528 A CN104836528 A CN 104836528A CN 201510206770 A CN201510206770 A CN 201510206770A CN 104836528 A CN104836528 A CN 104836528A
Authority
CN
China
Prior art keywords
input
header box
solar battery
battery group
group string
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201510206770.6A
Other languages
Chinese (zh)
Other versions
CN104836528B (en
Inventor
杨盛楠
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Dongjun new energy Co.,Ltd.
Original Assignee
Beijing Hanergy Solar Power Investment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Beijing Hanergy Solar Power Investment Co Ltd filed Critical Beijing Hanergy Solar Power Investment Co Ltd
Priority to CN201510206770.6A priority Critical patent/CN104836528B/en
Publication of CN104836528A publication Critical patent/CN104836528A/en
Application granted granted Critical
Publication of CN104836528B publication Critical patent/CN104836528B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S50/00Monitoring or testing of PV systems, e.g. load balancing or fault identification
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

Landscapes

  • Photovoltaic Devices (AREA)

Abstract

The invention provides a convergence detection method and system for convergence boxes. According to the convergence detection method and system for the convergence boxes, the number of the input ends of a current-stage convergence box which are actually connected with a solar energy battery pack string is put into consideration of mean value judgment; high value limit crossing and low value limit crossing of the change rate of current values of adjacent or approximate input ends are verified; and therefore, fault judgment accuracy of the convergence boxes in a photovoltaic array can be improved. The invention also provides a solar power station.

Description

For conflux detection method and system, the solar power station of header box
Technical field
The present invention relates to field of solar thermal power generation, be specifically related to a kind of conflux detection method and system for header box, and a kind of solar power station.
Background technology
Along with the worsening shortages of the energy, the exploitation of renewable green energy resource more and more receive the concern of people, are especially subject to the favor of common people especially with the utilization of solar energy.Solar energy is as clean, safe, the sustainable and reliable energy, and solar energy photovoltaic system is expanding rapidly its application in the energy and industrial technology exploitation.In recent years, common concern is caused as the photovoltaic cell of solar energy conversion medium and the development and application of large area photovoltaic module device.With monocrystalline silicon, polysilicon, amorphous silicon membrane etc. for the extensive use of solar panel in the facility such as business and residential building of representative demonstrates huge potentiality, as thin film solar photovoltaic template can replace some building elements, such as building wall, window etc.
Solar energy photovoltaic system power generation situation directly affects the economic benefit of enterprise, can greatly reduce photovoltaic system generating capacity, affecting business economic interests as broken down in the photovoltaic system course of work.In actual applications for different projects, the arrangement of photovoltaic array is different, this brings certain difficulty just to the Real-Time Monitoring of photovoltaic array and failure diagnosis, and whether solar battery group string normally works and directly will have influence on safety and the gross generation of solar power station, therefore to the real-time current monitoring of each solar battery group string and failure diagnosis just particularly necessary.
At present, the solar panel in industry is of a great variety, and component parameter aspect differs greatly, and for different designs scheme, also can adopt multi-form inverter, and has the arrangement of distinctive photovoltaic array according to project characteristic.In view of these reasons, the building form of photovoltaic array is varied, cause each solar battery group string operating characteristic in photovoltaic array to differ greatly, therefore very difficult single foundation component characteristic or arrangement mode delimited to solar battery group string operating state and determined number range.Just conflux for one-level for the diagnosis of photovoltaic system in prior art, can not diagnose for independent input, the solution that the operating state for photovoltaic solar cell group string has not had.The method of existing diagnosis has:
1, electric current average determining method
The mean value of current value is utilized whether to undergo mutation to judge whether to break down, if < predetermined value, then think normal, otherwise explanation is undergone mutation as exception, wherein I nfor the current value of the input n of header box, a is the input number of header box, i.e. I aveget be the input current value of this header box and divided by the fan-in of this header box, and do not consider that the quantity of the upper level header box that each input connects or solar battery group string is different, cause judged result inaccurate.Such as certain three grades of header box, both there is the input directly connecting solar battery group string, also there is the input connecting secondary header box, and also both there is the input directly connecting solar battery group string in secondary header box, when also there is the input connecting one-level header box, when utilizing above-mentioned electric current average determining method to judge, each input electric current for three grades of header boxs is got average and is carried out judging obviously substantial deviation real work situation, because the current value of the input of the connection secondary header box of three grades of header boxs should be far longer than the current value of the input directly connecting solar battery group string, be easy to cause fault misdescription after getting average.And generally all include all for header box inputs in calculating when calculating in prior art, and do not consider untapped input (vacant input), this can strengthen the deviation of judged result and actual conditions further.
2, fuse alarm method
When monitored current circuit current value is zero, then produce " fuse alarm ", wherein this drift value can be set up.
This kind of method defect is: for the time-division sooner or later every day, affect by illumination or shade, and very likely just solar battery group crosstalk stream is less for the still generating of some solar battery group string, and some assembly does not generate electricity.According to diagnostic rule, will produce fuse alarm to the solar battery group string do not generated electricity, warn the solar battery group string do not generated electricity to occur exception, and in fact this phenomenon is normal, the assembly do not generated electricity also still is in normal operating conditions.
Visible, existing this fuse alarm decision logic will introduce wrong report every day.
3, the out-of-limit method of electric current low value
The out-of-limit method of estimated current low value the actual input current in mean value of all inputs in certain one-level header box is multiplied by one to be greater than 0 coefficient of safety (generally getting 50%) being less than 1 and to judge as low limit value Imin.When the electric current of a certain input outputting alarm signal, wherein, n is the circuitry number of actual access this grade of header box.
This kind of method defect is: for multistage monitoring of confluxing, in header box the current value of each input may be the multi-string battery assembly electric current of multistage header box access above and.Such as to conflux monitoring for secondary, in secondary header box, the current value of each input is the multi-string battery assembly electric current sum of one-level header box access.Because arrangement position is different, the number of the solar battery group string that each input of same secondary header box accesses may be different, and such as input 1 is by one-level header box access 5 string battery components, and input 2 is by one-level header box access 3 string assemblies.In this case, the needs that a fixing low limit value just cannot meet use are set for all inputs is unified.In addition, the installation site of percentage of batteries assembly in the afternoon or some moment may be blocked by building, the electric current that the battery component that is blocked exports will be starkly lower than the electric current that other battery components export, and this is normal operating conditions, should outputting alarm information.But current this electric current low value is out-of-limit method meetingto normal operating conditions be in but output current is less than the header box of low limit value or solar battery group crossfire is alert, produce wrong report.Even if the photovoltaic plant confluxed for only having one-level, some battery component is in the afternoon, morning or some moment also may be blocked by building, when occurring that indivedual solar battery group string output loop electric current is starkly lower than other loops, and this judgement method is producedraw warning information is likely still wrong report.The alarm signal that this change because of natural conditions produces, can cause higher rate of false alarm.
4, the out-of-limit method of electric current high level
The out-of-limit method of estimated current high level the actual input current in mean value of all inputs in certain one-level header box is multiplied by a coefficient of safety (being generally 150%) being greater than 1 to judge as ceiling value Imax.When the electric current of a certain input outputting alarm signal, wherein, n gets actual access this grade of header box circuitry number.
This kind of method defect is similar to the deficiency of the out-of-limit method of above-described electric current low value.Such as, secondary is confluxed monitoring, in secondary header box the current value of each input be the multi-string battery assembly electric current of one-level header box access and.Because arrangement position is different, the solar battery group string number that each input of same secondary header box accesses may be different.In this case, the needs that a fixing ceiling value cannot meet use are set for all inputs is unified.In addition, the installation site of percentage of batteries assembly may under than other battery components, more Zao or more ground be exposed to sunlight in the morning or some moment, the electric current that the electric current that the battery component so exposed exports will export apparently higher than other battery components, this is normal operating conditions, should outputting alarm information.But current this electric current high level is out-of-limit method meetingto normal operating conditions be in but output current is greater than the header box of ceiling value or solar battery group crossfire is alert, produce wrong report.Even if the photovoltaic plant confluxed for only having one-level, in the afternoon, morning or some moment, power station was blocked by building when, part solar battery group string wherein can be there is and expose situation in the sun early than other battery strings, now the electric current of indivedual solar battery group string output loop will apparently higher than other loops, this judgement method is producedraw warning information is likely still wrong report.The alarm signal that this change because of illumination condition produces, can cause higher rate of false alarm.
Also exist in prior art and utilize current changing rate whether to undergo mutation the technical scheme judging whether to produce DC Line Fault electric arc, this technical scheme can reduce false drop rate.But first, this technical scheme only considers the rate of change of a road electric current, and reckon without the curent change that the situations such as building as above blocks can cause solar battery group string, fault false drop rate is still higher; Secondly, when there is multistage header box, this technical scheme is only applicable to current acquisition between the output of afterbody header box and inverter and detection, and can not detect for the fault of independent solar battery group string or upper level header box, like this, technical staff just knows and there occurs fault, but and does not know that fault occurs in where.
No matter above-mentioned any detection method is all in time domain or frequency domain, and one of header box independent input or output are carried out to the contrast of current value or rate of change, can not get rid of the impact that environmental factor causes, fault misdescription rate is higher.
Summary of the invention
The object of the invention is to reduce the fault false drop rate in photovoltaic system, The embodiment provides following technical scheme for this reason:
For a detection method of confluxing for header box, described header box comprises multiple input and an output, and each input connects the output of solar battery group string or upper level header box, and described method comprises: the current value sensing each input; If the judged result of < first predetermined value is no, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation, otherwise the rate of change of calculating current value and enter next step judge, wherein I nfor the current value of described input, a is the number of the solar battery group string of the actual connection of described input, and b is the number of the solar battery group string of the actual connection of described header box, and m is the number of the input of described header box; Judge whether that the rate of change of the current value of described input is less than the second predetermined value, or the rate of change of the current value of described input is greater than the 3rd predetermined value, wherein said second predetermined value is less than zero and described 3rd predetermined value is greater than zero, if not, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions.
Preferably, described detection method of confluxing also comprises: if the rate of change of the current value of described input is less than the second predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also less than described second predetermined value, if or the rate of change of the current value of described input is greater than the 3rd predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also greater than described 3rd predetermined value, if, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions, if not, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation.
Preferably, detection method of confluxing described in also comprises: if the solar battery group string having input to connect or upper level header box are in abnormal operation, then carry out alarm.
A kind of detection system of confluxing for header box, described header box comprises multiple input and an output, each input connects the output of solar battery group string or upper level header box, described in detection system of confluxing comprise: current sensing unit, for sensing the current value of each input; Data processing unit, for calculating the rate of change of the current value of each input; Judging unit, the current value for each input sensed according to described current sensing unit judges whether the solar battery group string that described input connects or upper level header box are in normal operating conditions, if the judged result of < first predetermined value is no, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation, otherwise enters next step judgement, wherein I nfor the current value of described input, a is the number of the solar battery group string of the actual connection of described input, and b is the number of the solar battery group string of the actual connection of described header box, and m is the number of the input of described header box; Judge whether that the rate of change of the current value of described input is less than the second predetermined value, or the rate of change of the current value of described input is greater than the 3rd predetermined value, wherein said second predetermined value is less than zero and described 3rd predetermined value is greater than zero, if not, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions.
Preferably, described judging unit also for: if the rate of change of the current value of described input is less than the second predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also less than described second predetermined value, if or the rate of change of the current value of described input is greater than the 3rd predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also greater than described 3rd predetermined value, if, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions, if not, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation.
Preferably, described in detection system of confluxing also comprise: Alarm Unit, after being in abnormal operation for the solar battery group string that judges at described judging unit to have input to connect or upper level header box, carry out alarm.
A kind of solar power station, described solar power station comprises solar battery group string, N level header box and detection system of confluxing as above, wherein N be more than or equal to 2 integer, wherein except the input of one-level header box is directly contacted with described solar battery group and connect, input described at least one of other arbitrary grade of header box is connected with the output of upper level header box, described detection system of confluxing detected confluxing of header box at different levels, and the output current of N level header box is through the access grid-connected point of inverter.
The method and system of the embodiment of the present invention to the input of header box carry out average judge time, take into full account the difference of the solar battery group string number of the solar battery group string number difference that this input connects and the actual connection of this header box, and avoiding problems and only the average ANOMALOUS VARIATIONS of the front solar battery group string caused of the input of header box at the corresponding levels is attenuated and is even ignored, it also avoid header box not only connected upper level header box, but also directly connect solar battery group string time I avethe calculating impact and causing that is subject to abnormal battery pack string the fault of normal solar battery group string is judged by accident, thus improve breakdown judge accuracy.And after average judges, the rate of change of the current value of the adjacent or close input of further employing comes mutually to verify, if the rate of change of the current value of a certain input there occurs, low value is out-of-limit or high level is out-of-limit, and the rate of change of the current value of other adjacent or close input synchronously occurs, and low value is out-of-limit or high level is out-of-limit, then think and cause the reason of the sudden change of this current value to be that adjacent or close solar battery group string enters simultaneously or leaves shade and blocks, still think the solar battery group string that input connects or upper level header box normal, avoid the fault erroneous judgement adopting the current changing rate of input itself to bring.
And the present invention senses the input input current of header box, that is, detect each input electric current of header box, can judge fault point more exactly, thus overhaul.
Accompanying drawing explanation
Next will be in conjunction with accompanying drawingspecific embodiments of the invention are described in further detail, wherein:
fig. 1that the employing secondary of embodiments of the invention confluxes the bus structure signal of solar power plant of photovoltaic array figure;
fig. 2it is the flow process of the detection method of confluxing of embodiments of the invention figure;
fig. 3it is the structural representation of the detection system of confluxing of the solar power plant of embodiments of the invention figure.
Embodiment
Reference fig. 1, in figurea part for shown an is solar power plant, namely illustrate only two-stage and to conflux the part of photovoltaic array of composition, and in actual applications, this photovoltaic array can continue increase and to conflux rank.In the present embodiment, in photovoltaic array, assembly connecting mode is: x (x >=1) solar panel forms a solar battery group string, the one-level adopting n to enter 1 is confluxed, input 1 to the input n ganging up same one-level header box by n solar battery group confluxes, the secondary simultaneously adopting m to enter 1 again confluxes, the electric current exported by the output of m one-level header box is confluxed by input 1 to the input m of same secondary header box, and finally unification is exported by the output of secondary header box.I represents the current value of each input input of header box.I represents the output current value of header box output, and this current value also equals the input current value of the corresponding input of next stage header box.N generation table onethe maximum solar battery group string quantity that level header box can access, as being 8 enter 1 one-level header box for model, there are at most 8 inputs, accessible at most 8 solar battery group strings, it is different that the one-level header box different when reality uses actually may access solar battery group string quantity when exact arrangement, connect solar battery group string as Z1-H1 header box reality is only connected to 7 inputs, Z1-H2 header box is actual is connected with 6 input solar battery group strings.M generation table twolevel header box connect the maximum branch road quantity that can access, as being 10 enter 1 secondary header box for model, having at most 10 inputs, the output of 10 one-level header boxs can be connected at most.If one-level header box is 8 models entering, so this 10 electric current entering each input of secondary header box of 1 output that will be an one-level header box, be 8 solar battery group crosstalk streams and, the output current of whole secondary header box be at most 80 solar battery group crosstalk streams and.The solar battery group string quantity difference that the secondary header box different when reality uses may actually access when exact arrangement, as Z1 header box reality is only connected to 9 one-level header boxs, the input 1 of Z1 header box connects the output of Z1-H1 header box, the input 2 of Z1 header box connects the output of Z1-H2 header box, the like.Or except being connected with one-level header box, also there is the input directly connecting solar battery group string in Z1 header box.That is, for one-level header box Z1-H1 to Z1-Hm, in n input of one-level header box, multiple or whole input and solar battery group are contacted and are connect, and allow one-level header box to there is vacant input; And for secondary header box Z1, have at least an input to be connected other input with the output of one-level header box and can contact with solar battery group and connect, or as Fig. 1shown in secondary header box all with input 1 to input m be connected with one-level header box Z1-H1 to Z1-Hm respectively, and allow to there is vacant input.The header box of higher level the like until N level (N is integer and N >=2).
In the photovoltaic array that in the present embodiment, solar power station adopts, each subcircuits of header box at different levels has following relation:
1, for one-level header box: for Z1-H1 header box, the electric current of its output and the current value of input have following relation: I zI-H1=i 11+ i 12++ i 1n.Z1-H1 header box has n input, and each input only connects a string solar battery group string, so the current value of its each input be exactly separately connect the output current of solar battery group string, that is: for the input 1, I of Z1-H1 1=i 11; For the input 2, I of Z1-H1 2=i 12; For the input n of Z1-H1, I n=i 1n; For the input n of Z1-Hm, I n=i mn.
2, for secondary header box: for Z1 header box, the current value of its output and the current value of input have following relation: I zI=i 1+ i 2++ i m.Wherein, i 1for the input current value of the input 1 of secondary header box Z1, this current value equals the output current value I of the output of one-level header box Z1-H1 zI-H1, i 2to i mthe like, conveniently, the input current value of input 1 of secondary header box Z1 I will be expressed as at this 1the input current value of the input m of secondary header box Z1 is expressed as I m.Z1 header box has m input, each input connects an one-level header box, so the current value of each input of secondary header box Z1 is exactly the current value of the output of the one-level header box connected separately, be actually n solar battery group crosstalk flow valuve and, that is: the i of secondary header box input 1=I 1=i 1=I zI-H1=i 11+ i 12++ i 1n... i input m=I m=i m=I zI-Hm=i m1+ i m2++ i mn.And if both there is the input directly connecting solar battery group string in Z1 header box, also there is the input connecting one-level header box, then the current value of the output of Z1 header box equals the current value sum of the current value of the solar battery group string be directly connected with it and the output of each one-level header box.
For the header box of the higher level of N > 2, account form the like, no longer describe in detail herein.The electric current of the output of N level header box, through the access grid-connected point of inverter, enters power supply grid.
In this application, the input of " adjacent or close " refers to the solar battery group string of connection or the adjacent or close input of upper level header box physical location, such as, exist fig. 1in Z1-H1 header box, many the inputs although be separated by between the input 1 of this header box and input n, if but the solar battery group string physical location that the solar battery group string that input 1 connects is connected with input n is adjacent or close, then represent that input 1 is adjacent with input n or close.The solar battery group string that physical location is adjacent or close or header box experience the change of identical illumination condition substantially, and the shade that the shade such as simultaneously experiencing building blocks process or successively experience same building thing blocks.
Next will be with fig. 2in flow process be example describe in detail right fig. 1in solar power station in header boxs at different levels to carry out confluxing the method detected.
Suppose: the input number of secondary header box Z1 is 3, i.e. m=3; The input number of one-level header box Z1-H1 is 5, i.e. the n=5 of Z1-H1; The input number of one-level header box Z1-H2 is 3, i.e. the n=3 of Z1-H2; The input 3 of secondary header box Z1 directly connects solar battery group string, also can think that the input number of one-level header box Z1-H3 was 1 (in fact the input 3 of Z1 does not connect one-level header box).
First, S1 step is carried out: the current value of each input of sensing header box Z1.At this, " each input " refers to the input being connected with solar battery group string or upper level header box of header box, and does not consider vacant input.Such as in the present embodiment, secondary header box Z1 has 8 inputs, and only considers its input 1, input 2 and input 3.
After the current value obtaining each input, enter S2 step: average judges.
The content that average judges is: inequality whether < first predetermined value is set up, wherein I nfor the current value of the input n of secondary header box Z1, I avefor electric current average, a is the number of the solar battery group string of the actual connection of input n, and b is the number of the solar battery group string of the actual connection of secondary header box Z1, and m is the number of the input of secondary header box Z1.Such as, the input number of secondary header box Z1 is 3, m=3; The solar battery group string number that the input of the upper level header box Z1-H1 of input 1 connection of secondary header box Z1 connects is 5, and the solar battery group string number that namely input 1 reality of Z1 connects is 5, a=5; Similarly, the solar battery group string number a=3 of the input 2 reality connection of header box Z1; Similarly, the solar battery group string number a=1 of the input 3 reality connection of header box Z1.Therefore for secondary header box Z1, b=5+3+1=8.For three grades of header boxs, the solar battery group string number a of the actual connection of each input be solar battery group string number in the one-level header box that connects of secondary header box, secondary header box that this input connects and, and the solar battery group string number b of the actual connection of these three grades of header boxs is the number of the solar battery group string of these three grades of actual connections of all inputs of header box.Such as, the input number m=2 of certain three grades of header box, wherein input 1 connects secondary header box, input 2 connects solar battery group string, the input number of the secondary header box that input 1 connects is 2, wherein input 1 connects one-level header box, input 2 connects solar battery group string, and one-level header box connects 5 solar battery group strings, then for these three grades of header boxs, m=2, the solar battery group string number a=5+1=6 that input 1 reality connects, the solar battery group string number a=1 that input 2 reality connects, the solar battery group string number b=5+1+1=7 of the actual connection of these three grades of header boxs.The header box of higher level the like, no longer describe in detail herein.
If the judged result of S2 step is no, then prove that this input electric current average creates sudden change, judge that the solar battery group string that this input connects or upper level header box are in abnormal operation.The reason of abnormal operation may be come from the open circuit of solar battery group string or different manufacturers, different batches the performance of solar panel equal, unifiedly think to belong to the true fault that should be detected at this.
Judging to contrast with average of the prior art to more clearly the average of the present embodiment be judged, now same group of data is judged, and two kinds of determination methods getting the first identical predetermined value 0.6, comparing result as table 1with table 2shown in:
table 1prior art average judged result
table 2the present embodiment average judged result
By contrast table 1with table 2two kinds of results are known, adopt the average of prior art to judge, for the input 1 of header box Z1, judged result is abnormal, but the current value of each input of header box Z1-H1 is all stabilized in about 0.9A, and without exception, generation fault is judged by accident, and the reason of erroneous judgement is i 23by I avevalue drag down, but input 1 connect normal solar battery pack string number more, therefore I 1higher; For the input 2 of header box Z1, judged result is abnormal, but the current value of the input 3 of header box Z1-H2 is only 0.11A, and header box Z1-H2 there occurs fault, is not judged out, and reason is the i in Z1-H2 23impact be attenuated in secondary header box, and header box rank is higher, i 23the decay of impact more serious; For the input 3 of header box Z1, judged result is abnormal, but the input 3 of Z1 be only connected to a solar battery group string and current value at about 0.9A, and without exception, produce fault erroneous judgement, reason is identical with the erroneous judgement reason of input 1.And after adopting the average of the present embodiment to judge, the judged result for each input of header box Z1 conforms to actual.The reason of this difference is caused just to be, average of the prior art only considers the current value of 3 inputs of secondary header box Z1, and do not consider that the number of the solar battery group string that in fact 3 inputs of secondary header box Z1 connect is not identical, and the header box rank that the solar battery group string distance producing fault is detected is far away, the decay of its fault effects is more serious, erroneous judgement will be produced so calculate again after averaging, and electric current mean value computation mode in the present embodiment and judgment mode all take into account the difference of each input connection of secondary header box Z1, thus the result obtained closer to truth, and, calculate I in the present embodiment aveand aI avetime be directly with solar battery group string for calculating and judging object, the impact of the solar battery group string broken down is understood and directly be found.In fact, if only carry out average judgement to one-level header box, because each input of one-level header box directly connects solar battery group string, therefore a=1, b=m, now the average judged result of the present embodiment is identical with the average judged result of prior art, but for the header box of header box level n >=2, these high level header boxs have at least an input to connect upper level header box, therefore a ≠ b, this will cause the judged result of the present embodiment unlike the prior art and have more advantage.And generally calculate I in the prior art avetime be consider the whole input of header box (comprising vacant input), and the present embodiment only considers the input that there is annexation, therefore for the one-level header box that there is vacant input, the average judged result of the present embodiment also can exist different and more accurate from prior art.
But, if in S2 step the judged result of < first predetermined value is yes, directly can't showing that solar battery group string or upper level header box are in normal operating conditions and trouble-free conclusion, not being excluded because of also likely there is such environmental effects.Such as exist table 1in, the current value of each solar battery group string of the one-level header box Z1-H1 that the input 1 of this moment Z1 connects all is in more than 0.9A, therefore after S2 step detects, operating state is not detected abnormal, but, the current value of this more than 0.9A likely reaches suddenly, the solar battery group string of such as other input solar battery group string that is unexpected and this input is short-circuited, now fault should be reported, if do not reported fault then for fault is undetected, or just leave blocking of building effects at illumination condition good situation next stage header box Z1-H1, now fault should not be reported, as reported fault then for fault misdescription.Or, although at a time the current value of one-level header box Z1-H1 all reaches more than 0.9A, but the illumination of very possible prevailing circumstances can reach the current value of 1.5A, in fact block because the solar panel generation open circuit in battery pack string or one-level header box Z1-H1 start to enter building and be decreased to 0.9A from 1.5A.That is, through S2 step with the absolute value in current value a certain moment for after object judges, be also not sufficient to judge whether the change of current value breaks down.The current value of more than 0.9A as escribed above is (that is, the rate of change of current value creates sudden change) that reach suddenly, and whether this sudden change should be judged as normally, also needs to carry out ensuing calculating and judgement.
In order to reduce false drop rate further and improve recall rate, in the present embodiment, if when the judged result of S2 step is "Yes", also carry out S3 step: the rate of change calculating the current value of each input.After obtaining the rate of change of current value, the out-of-limit determining method of recycling high level, the out-of-limit determining method of low value carry out the judgement of S4, S5 step.
The out-of-limit judgement of low value judges whether that the sudden change (negative sense sudden change) reduced suddenly occurs input electric current by comparing the variable quantity (i.e. the rate of change of current value) of current value within the time of presetting, and whether sudden change exceedes normal limit, judges whether solar battery group string normally works.
Under normal circumstances, photovoltaic module exports relatively stable, and do not have fixing operating current, output current changes with the change of irradiation.Under normal circumstances, the irradiation of sunlight is steady and continuous change, and affects by diffusion etc., transition can not occur, therefore under normal circumstances, the current value that solar battery group string exports is relatively stable, can not suddenly change, namely the electric current of each input of Z1-H1 header box can not suddenly change.When having fault or damaging, will there is significant change in solar battery group string output current.Therefore, can judge whether solar battery group string normally works by detecting the real-time current variable quantity of each input of Z1-H1 connect of contacting with solar battery group.If but when having arbitrary neighborhood or close two-way or multi-channel input that the sudden change of electric current larger negative sense occurs in same header box, may be have object to block or cloud is sailed and caused, now not answer outputting alarm simultaneously.
The judgement the formula whether rate of change of current value low value occurs out-of-limit is:
As (i n (t)-i n (0)) < I min=li n (0)time, judge that electric current low value is out-of-limit.Wherein, l is electric current low value limit coefficient, and l is less than zero, thus li n (0)be a minus value, I minalso be a minus value, referred to here as the second predetermined value.This variable l is by background maintenance software design patterns, and with monitoring backstage real time communication, l value is directly downloaded in equipment by 485 order wires.N is integer, and represent certain input in header box, n is input sum to the maximum.T is certain input timer periods, and this variable is by background maintenance software design patterns, and adjustable range carries out difference setting according to different needs.That is, the rate of change of the current value of the input of one-level header box and minus second predetermined value are compared, if rate of change is less than the second predetermined value, then judge that the solar battery group string generation low value that this input connects is out-of-limit, because rate of change is less than the second predetermined value (this second predetermined value is less than zero), then prove that input electric current there occurs the sudden change (rate of change is less, and it is strong that electric current reduces Shaoxing opera) sharply reduced.
The out-of-limit judgement of high level is that the variable quantity (i.e. the rate of change of current value) by comparing the current value of current value within the time arranged judges whether that the electric current of input occurs to become large sudden change (forward mutation assay) suddenly, and whether sudden change exceedes normal limit, judges whether solar battery group string normally works.
Under normal circumstances, photovoltaic module exports relatively stable, and do not have fixing operating current, output current changes with the change of irradiation.Under normal circumstances, the irradiation of sunlight is steady and continuous change, and affects by diffusion etc., transition can not occur, therefore under normal circumstances, solar battery group string output current is relatively stable, can not suddenly change, when having fault or damaging, will there is significant change in its output current.Therefore, can judge whether solar battery group string normally works by detecting solar battery group string real-time current variable quantity.If but when having arbitrary neighborhood or close two-way or multi-channel input that the larger forward mutation assay of electric current occurs simultaneously in same header box, may be to have blocked or cloud is sailed and caused because solar battery group string has just left shadow of object, now not answer outputting alarm.
The judgement the formula whether rate of change of current value high level occurs out-of-limit is:
As (i n (t)-i n (0)) > I max=hi n (0)time, judge that electric current high level is out-of-limit, wherein, h is electric current high level limit coefficient, and h is greater than zero, thus hi n (0)be a value being greater than zero, I maxalso be a value being greater than zero, referred to here as the 3rd predetermined value, this variable h is by background maintenance software design patterns, and with monitoring backstage real time communication, h value is directly downloaded in equipment by 485 order wires.N is integer, and represent certain input in header box, n is input sum to the maximum.T is certain input timer periods, and this variable is by background maintenance software design patterns, and adjustable range carries out difference setting according to different needs.That is, the 3rd predetermined value rate of change of the current value of the input of one-level header box and one being greater than zero compares, if rate of change is greater than the 3rd predetermined value, then judge that the solar battery group string generation high level that this input connects is out-of-limit, because rate of change is greater than the 3rd predetermined value (the 3rd predetermined value is greater than zero), then prove that input electric current there occurs the sudden change (rate of change is larger, and it is strong that electric current increases Shaoxing opera) sharply increased.
After completing the out-of-limit judgement of high level and the out-of-limit judgement of low value, if input electric current does not occur, high level is out-of-limit or low value is out-of-limit, namely in S4 step, the judged result of " rate of change that the rate of change of the current value of input is less than the current value of the second predetermined value or input is greater than the 3rd predetermined value " is "No", the rate of change of the current value of input is more than or equal to the second predetermined value and is less than or equal to the 3rd predetermined value simultaneously in other words, then judge that the solar battery group string that this input connects is in normal operating conditions.Now, the rate of change of current value does not occur that high level is out-of-limit and low value is out-of-limit, i.e. input no current sudden change, the current value of such as adjacent or close input is all stabilized in a higher level, current value due to this input is (namely not the undergoing mutation) that slowly reach, now judges that the solar battery group string that input connects is working properly.Such as time-division at noon, illumination is the strongest, now the current value of all adjacent or close inputs of one-level header box Z1-H1 is all 1.5A, but this high electric current slowly reaches from morning to noon, and in a period of time, the current value of input is stabilized in 1.5A even at noon, rate of change is zero, now think and cause the reason of this phenomenon to be that solar irradiation condition is good, should not report fault, and should judge that solar battery group string is in normal operating conditions, thus reduce fault misdescription rate.
And as previously mentioned, if judged that in S4 step high level is out-of-limit or low value is out-of-limit, namely in S4 step, the judged result of " rate of change that the rate of change of the current value of input is less than the current value of the second predetermined value or input is greater than the 3rd predetermined value " is "Yes", then also there are two kinds of situations:
The first situation, it is out-of-limit that the rate of change of current value there occurs low value.But the rate of change of current value there occurs out-of-limit not the necessarily representing of low value and has occurred fault because solar battery group start of string enter shade block or cloud is sailed time, it is out-of-limit also may to there is low value in the solar battery group string be blocked.Therefore embodiment adds the adjacent or close input verification of S5 step, checking procedure is: preset a fan-in k1 (k1 >=2), when have in same header box k1 adjacent or close input occur simultaneously low value out-of-limit time, still judge that solar battery group string is working properly, not outputting alarm signal.That is, for some inputs, if this input generation low value is out-of-limit, be adjacent simultaneously or one or more close input also to there occurs low value out-of-limit, then think that multiple adjacent or close solar battery group string starts to enter shade simultaneously and blocks, now still judge solar battery group string (because the possibility of the multiple solar battery group strings of same header box open circuit is simultaneously minimum) working properly, otherwise this low value out-of-limit be exception.
The second situation, it is out-of-limit that the rate of change of current value there occurs high level.But, the rate of change of current value there occurs out-of-limit not the necessarily representing of high level and has occurred fault, because along with the change of sun irradiation angle, solar battery group start of string leave shadow of object block or cloud wafts time, also it is out-of-limit to there is high level in the solar battery group string be blocked, therefore embodiment adds the adjacent or close input verification of S5 step, checking procedure is: preset a fan-in k2 (k2 >=2), when have in same header box k2 adjacent or close input occur simultaneously high level out-of-limit time, still judge that solar battery group string is working properly, not outputting alarm signal.That is, for some inputs, if this input generation high level is out-of-limit, be adjacent simultaneously or one or more close input also to there occurs high level out-of-limit, then think that illumination condition change causes multiple adjacent or close solar battery group string to leave shade simultaneously and blocks, now still judge that solar battery group string is working properly, otherwise this high level out-of-limit be abnormal.
That is, in S5 determining step: if the rate of change of the current value of input is less than the second predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also less than described second predetermined value, if judged result is "Yes", then think that these adjacent or close solar battery group strings start to enter building effects simultaneously and block, now still judge that the solar battery group string that this input connects is in normal operating conditions; If or the rate of change of the current value of input is greater than the 3rd predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also greater than the 3rd predetermined value, if judged result is "Yes", then think that these adjacent or close solar battery group strings have left shade simultaneously and block, now still judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions.Only have when above-mentioned judged result is "No", namely only have single input generation high level out-of-limit or low value is out-of-limit time, just judge that the solar battery group string that this input connects is in abnormal operation.This eliminates because dusk illumination variation, the building effects that As time goes on occurs block the interference of the environmental factors such as range, reduce fault misdescription rate further, improve fault recall rate.
From foregoing description, in the average of S2 step judges, the solar battery group string number that the solar battery group string number of actual for each input connection and this header box reality connect being included in the first time that the scope of considering carries out fault detects, and then utilize S4, high level in S5 step is out-of-limit to be detected with the rate of change of the out-of-limit determination methods of low value to current value, if testing result is no in S4 step, then can screen out the interference of environmental factor for the first time, reduce fault misdescription rate, if and testing result is yes in S4 step, then recycle the verification of the adjacent or close input in S5 step, carry out second time to fault to detect and screen out for the second time, therefore the accuracy of fault detect is greatly enhanced.
After condition adjudgement of finishing the work, if the solar battery group string having input to connect is in abnormal operation, then carry out alarm.
To the header box of higher level conflux detect step, the determination methods adopted with to one-level header box Z1-H1, the secondary header box Z1 step and method detected that carries out confluxing is substantially identical, difference is only when input belongs to secondary header box, sensing, calculate and judge that object is one-level header box or solar battery group string, and when input belongs to three grades of header boxs, sensing, calculate and judge that object is secondary header box or solar battery group string, and need to set respectively each predetermined value again according to the actual connection of each input of three grades of header boxs.
Such as, exist fig. 1shown in all inputs of secondary header box Z1 1 to input m all connects is one-level header box, but in fact also there is secondary header box Z1 only has one or more input to be connected with one-level header box, and the situation (example that other input is direct and solar battery group is contacted to be connect as table 1in listed situation).Although the current sensor value of now carrying out each input 1 to input m of secondary header box, the rate of change of calculating current value, the out-of-limit judgement of high level, the out-of-limit judgement of low value and null value judge and report to the police all identical with one-level header box, but, when the input m in secondary header box connect for one-level header box Z1-Hm time, the current sensor value of this input m is the output current value i of the output of one-level header box mnamely now the current sensor value of this input is the output current value of one-level header box but not the output current value of a certain solar battery group string, this just likely causes in each input of secondary header box Z1, both there is the electric current coming from one-level header box, also there is the electric current directly coming from solar battery group string, or the electric current of all inputs of secondary header box Z1 is the output current value of one-level header box.Even if in normal operation, current value and the rate of change thereof of each input of secondary header box also likely differ greatly, therefore the actual connection according to secondary header box is needed, when carrying out null value and judging, need to set respectively the second predetermined value of the input of secondary header box Z1 and the 3rd predetermined value, and when needing to carry out the out-of-limit judgement of low value and the out-of-limit judgement of high level, need to set respectively the second predetermined value and the 3rd predetermined value again, or to three grades of header boxs carry out average judge time, to the first predetermined value, second predetermined value and the 3rd predetermined value set respectively.
The like to N level header box (N >=2), according to the difference of header box rank, need the actual connection for each input of the header box of this rank to set the first predetermined value respectively, or set the second predetermined value and the 3rd predetermined value simultaneously respectively.Certainly, these predetermined values set respectively might not be different.Such as, the solar battery group string all inputs that are all identical, secondary header box connected when all inputs of one-level header box all connect these identical one-level header boxs, all inputs of three grades of header boxs all connect identical secondary header box, and when now carrying out confluxing detection for one-level header box, secondary header box, three grades of header boxs, the first set predetermined value can be identical.
Further by the present embodiment compared with prior art, during only to detect one-level header box, what each input of its header box connected is solar battery group string, and each input electric current is single solar battery group crosstalk stream is example:
1) the out-of-limit comparison of low value
Prior art detection method: afternoon every day or the morning or terrestrial solar radiation angular deviation in winter larger in, because the arrangement of photovoltaic array is different, solar battery group string for some position very likely starts to be blocked by Adjacent Buildings, at this moment the solar battery group crosstalk stream be blocked accesses other solar battery group crosstalk stream of same header box around by being significantly less than, at this moment solar battery group string is in normal operating conditions, but prior art will judge fault at these inputs, occurs wrong report situation.
The present embodiment method: by the verification of adjacent or close input, effectively can solve the deficiency of art methods, effectively reduces because building blocks caused wrong report, alarm accuracy rate is effectively promoted 50%.
2) the out-of-limit comparison of high level
Prior art shortcoming: afternoon every day or the morning or terrestrial solar radiation angular deviation in winter larger in, because the arrangement of photovoltaic array is different, solar battery group string for some position very likely starts to leave Adjacent Buildings and blocks, at this moment the solar battery group crosstalk stream be not blocked accesses other solar battery group crosstalk streams of same header box around by being obviously greater than, at this moment solar battery group string is in normal operating conditions, but prior art will judge fault at these inputs, occurs wrong report situation.
The present embodiment method: similar with the out-of-limit judgement of low value, effectively can be reduced because building blocks caused wrong report by the verification of adjacent or close input, alarm accuracy rate is effectively promoted 50%.
Three grades of header boxs N level confluxed in array ... N level header box, the above-mentioned method of inspection is still effective.
Comprehensive above situation, no matter in solar power station, how photovoltaic array arranges, and the method for the present embodiment by adjustment parameter, can realize the effective monitoring to photovoltaic array, reduces fault misdescription rate, raising fault recall rate.
Reference fig. 3, should diagramgo out fig. 1in the detection system of confluxing that adopts of solar power station.This detection system of confluxing comprises:
Current sensing unit, for sensing fig. 1in the current value of each input of header boxs at different levels, and send measured current value to data processing unit.Current sensing unit carries out the collection of current-mode analog quantity by configuration Hall element or current transformer.Current sensing unit (Hall element/current transformer) quantity can require to carry out flexible configuration according to difference, and acquisition precision requires the components and parts of configuration different accuracy according to difference simultaneously, thus better improves product cost.Preferred Hall element is as the acquisition elements of current sensing unit.
Data processing unit, for calculating the rate of change of the current value of each input.
Judging unit, for whether being in normal operating conditions according to the current value of each input and/or the rate of change of current value to solar battery group string or upper level header box judges.Data processing unit and judging unit form primarily of CPU processing unit and memory cell on hardware, realize the data processing of each detection module of header box, the functions such as data storage, the program that programming can be required different according to difference in addition, programming program can be carried out by Local or Remote, program parameters etc. carry out long-range setting by communication module, easy to use.CPU processing unit can be made up of the chip or integrated circuit with data processing function, preferably uses single-chip microcomputer C8051F021 as core CPU unit.Memory cell comprises ROM and RAM, and its external memory can according to needs configuration different capabilities memory.Judging unit is for performing foregoing S2, S4, S5 determining step.
Except above-mentioned functions unit, the system of the present embodiment also can comprise following any one or more unit module further:
Alarm Unit: after being in abnormal operation for the solar battery group string that judges at judging unit to have input to connect or upper level header box, carry out alarm.
Power module: mainly utilize DC-DC principle to achieve the conversion of high voltage to low-voltage, and provide working power as the governor circuit such as detection module, communication module that confluxes.Preferably, power module electric energy can directly from the header box in photovoltaic array, and without the need to external power supply, convenient construction, uses simple, greatly simplify system, and power module power consumption is less, does not affect photovoltaic array whole efficiency.Preferred use voltage withstand class 1000V, wide range input voltage such as 800-400V inputs, the DC-DC power module that 24V/5v exports.In practice, the power supplies such as the power module of separately power supply is the current sensing unit of confluxing in detection system can also be adopted.
Voltage acquisition unit: for right fig. 1in the input of header boxs at different levels or output carry out the Real-time Collection of voltage, and send the voltage of collection to data processing unit and carry out Correlation method for data processing.Correspondingly, the magnitude of voltage that data acquisition unit can transmit according to voltage acquisition unit calculates the I/O power of header box at different levels.According to input/input power, whether judging unit can judge in preset range whether header box is in normal operating conditions, if voltage or performance number exceed preset range, then judge that input is abnormal.
Communication module: for transmitting in real time the data of the header box in photovoltaic array, such as by data processing unit calculate the current value of acquisition rate of change, power, alarm signal etc. transmit to Surveillance center, achieve the communication of the external equipments such as the PC of header box and Surveillance center.Can require and the difference of actual service condition according to user, configure different communication modules, realize wireless transmission or wire transmission, larger is user-friendly to.Communication mode can be established, such as, use wire communication, 485 communication modes, the transmission of standard MODBUS agreement.
DC lightning prevention module: be arranged on header box, position that the PC etc. of Surveillance center needs lightning protection, for carrying out lightning protection to header box.Because solar battery group string, header box etc. in photovoltaic array are used for open air, therefore configuring direct current lightning-protection module realizes lightning protection.DC lightning prevention module is that electricity piece is commonly used in this area, and concrete structure no longer describes in detail herein.
Circuit breaker: be coupled to header box, after the solar battery group string that judging unit judges to have input to connect or upper level header box are in abnormal operation, trigger circuit breaker and disconnects.Circuit breaker voltage grade preferably can reach 1000V, and current class is determined according to the input sum of solar panel current parameters and header box access.
Fuse: between the solar panel being connected on solar battery group string, between solar battery group string and the input of header box, the output of upper level header box and the input of next stage header box, the position of overcurrent easily occurs between the output of N level header box and inverter etc.; for the protection of the harm of electronic device from overcurrent; if do not add protection, this overcurrent likely cause electronic device malfunctioning, overheated, damage even on fire.If fuse grade is excessive, cannot defencive function be provided, if too small, then cannot normally work.Therefore, when selecting fuse, need to require according to the class rating of photovoltaic array and relevant criterion and determine.The minimum level of fuse can be obtained by the calculation of short-circuit current of circuit in photovoltaic array, if local standard does not have particular/special requirement, and Isc (short circuit current) value of the fuse preferably used and minimum 1.56 times of the rated value demand fulfillment of wiring.Fuse is that electricity piece is commonly used in this area, no longer describes in detail its structure herein.
Counnter attack diode: for better realizing route protection, can be connected in series counnter attack diode in each road solar battery group string.
If needed, other analog acquisition unit can also be matched, as temperature, humidity etc.
Although the present invention is described in conjunction with above embodiment, but the present invention is not limited to above-described embodiment, and only by the restriction of claim, those of ordinary skill in the art can easily modify to it and change, but do not leave essential idea of the present invention and scope.

Claims (7)

1. for a detection method of confluxing for header box, described header box comprises multiple input and an output, and each input connects the output of solar battery group string or upper level header box, and it is characterized in that, described method comprises:
Sense the current value of each input;
If judged result be no, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation, otherwise the rate of change of calculating current value and enter next step judge, wherein I nfor the current value of described input, a is the number of the solar battery group string of the actual connection of described input, and b is the number of the solar battery group string of the actual connection of described header box, and m is the number of the input of described header box;
Judge whether that the rate of change of the current value of described input is less than the second predetermined value, or the rate of change of the current value of described input is greater than the 3rd predetermined value, wherein said second predetermined value is less than zero and described 3rd predetermined value is greater than zero, if not, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions.
2. detection method of confluxing according to claim 1, is characterized in that, described method also comprises:
If the rate of change of the current value of described input is less than the second predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also less than described second predetermined value, if or the rate of change of the current value of described input is greater than the 3rd predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also greater than described 3rd predetermined value, if, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions, if not, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation.
3. detection method of confluxing according to claim 1 and 2, is characterized in that, described method also comprises:
If the solar battery group string having input to connect or upper level header box are in abnormal operation, then carry out alarm.
4. for a detection system of confluxing for header box, described header box comprises multiple input and an output, and each input connects the output of solar battery group string or upper level header box, and it is characterized in that, described system comprises:
Current sensing unit, for sensing the current value of each input;
Data processing unit, for calculating the rate of change of the current value of each input;
Judging unit, the current value for each input sensed according to described current sensing unit judges whether the solar battery group string that described input connects or upper level header box are in normal operating conditions, if judged result be no, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation, otherwise enter next step judge, wherein I nfor the current value of described input, a is the number of the solar battery group string of the actual connection of described input, and b is the number of the solar battery group string of the actual connection of described header box, and m is the number of the input of described header box;
Judge whether that the rate of change of the current value of described input is less than the second predetermined value, or the rate of change of the current value of described input is greater than the 3rd predetermined value, wherein said second predetermined value is less than zero and described 3rd predetermined value is greater than zero, if not, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions.
5. detection system of confluxing according to claim 5, is characterized in that, described judging unit also for:
If the rate of change of the current value of described input is less than the second predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also less than described second predetermined value, if or the rate of change of the current value of described input is greater than the 3rd predetermined value, judge whether that the rate of change of the current value of adjacent or close other inputs one or more is also greater than described 3rd predetermined value, if, then judge that the solar battery group string that this input connects or upper level header box are in normal operating conditions, if not, then judge that the solar battery group string that this input connects or upper level header box are in abnormal operation.
6. the detection system of confluxing according to claim 4 or 5, is characterized in that, described system also comprises:
Alarm Unit, after being in abnormal operation, carries out alarm for the solar battery group string that judges at described judging unit to have input to connect or upper level header box.
7. a solar power station, it is characterized in that, described solar power station comprises the detection system of confluxing described in solar battery group string, N level header box and any one of claim 4 to 6, wherein N be more than or equal to 2 integer, wherein except the input of one-level header box is directly contacted with described solar battery group and connect, input described at least one of other arbitrary grade of header box is connected with the output of upper level header box, described detection system of confluxing detected confluxing of header box at different levels, and the output current of N level header box is through the access grid-connected point of inverter.
CN201510206770.6A 2015-04-28 2015-04-28 Conflux detection method and system, solar power station for header box Active CN104836528B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510206770.6A CN104836528B (en) 2015-04-28 2015-04-28 Conflux detection method and system, solar power station for header box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510206770.6A CN104836528B (en) 2015-04-28 2015-04-28 Conflux detection method and system, solar power station for header box

Publications (2)

Publication Number Publication Date
CN104836528A true CN104836528A (en) 2015-08-12
CN104836528B CN104836528B (en) 2017-03-08

Family

ID=53814205

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510206770.6A Active CN104836528B (en) 2015-04-28 2015-04-28 Conflux detection method and system, solar power station for header box

Country Status (1)

Country Link
CN (1) CN104836528B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107171638A (en) * 2016-10-18 2017-09-15 上海电力新能源发展有限公司 The division methods and device of a kind of group of set of strings
WO2023155463A1 (en) * 2022-02-16 2023-08-24 华为数字能源技术有限公司 Photovoltaic power supply system

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060237058A1 (en) * 2005-04-25 2006-10-26 Mcclintock Ronald B Direct current combiner box with power monitoring, ground fault detection and communications interface
CN102361415A (en) * 2011-05-12 2012-02-22 嘉应学院 Power device for simulating volt-ampere characteristics of photovoltaic battery
CN103701410A (en) * 2013-12-31 2014-04-02 阳光电源股份有限公司 Photovoltaic group string fault identifying method, device and system
JP5584622B2 (en) * 2010-02-19 2014-09-03 オーナンバ株式会社 Fault detection method for photovoltaic system
CN104283512A (en) * 2014-10-28 2015-01-14 上海许继电气有限公司 Method for remotely monitoring and locating faults of set strings in photovoltaic power station system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060237058A1 (en) * 2005-04-25 2006-10-26 Mcclintock Ronald B Direct current combiner box with power monitoring, ground fault detection and communications interface
JP5584622B2 (en) * 2010-02-19 2014-09-03 オーナンバ株式会社 Fault detection method for photovoltaic system
CN102361415A (en) * 2011-05-12 2012-02-22 嘉应学院 Power device for simulating volt-ampere characteristics of photovoltaic battery
CN103701410A (en) * 2013-12-31 2014-04-02 阳光电源股份有限公司 Photovoltaic group string fault identifying method, device and system
CN104283512A (en) * 2014-10-28 2015-01-14 上海许继电气有限公司 Method for remotely monitoring and locating faults of set strings in photovoltaic power station system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107171638A (en) * 2016-10-18 2017-09-15 上海电力新能源发展有限公司 The division methods and device of a kind of group of set of strings
WO2023155463A1 (en) * 2022-02-16 2023-08-24 华为数字能源技术有限公司 Photovoltaic power supply system

Also Published As

Publication number Publication date
CN104836528B (en) 2017-03-08

Similar Documents

Publication Publication Date Title
CN104767481B (en) Method and system for monitoring working state of solar photovoltaic power station
CN104601108A (en) Small photovoltaic power station fault diagnosis method
KR20120138866A (en) Trouble recognition apparatus for photovoltaic system and methord thereof
CN112462176B (en) Device and method for supporting detection of photovoltaic system direct current arc fault
CN104868845A (en) Device and method for monitoring data of embedded solar photovoltaic module data
CN104767480A (en) Convergence detecting method and system for convergence box and solar power station
KR20130047898A (en) Photovoltaic monitoring device that can be default diagnosis each module and method of diagnosing photovoltaic power generator
KR101024225B1 (en) Total renewable energy monitering and management system with building energy management system, tbems
CN104779913B (en) Method and system for monitoring working state of solar photovoltaic power station
CN104767479B (en) Convergence detecting method and system for convergence box and solar power station
CN104779914B (en) Conflux detection method and system for conflux boxes and solar power station
CN104796086B (en) Conflux detection method and system, solar power station for header box
CN104767485B (en) Conflux detection method and system, solar power station for header box
CN104779909B (en) Method and system for monitoring working state of solar photovoltaic power station
CN108696249A (en) Photovoltaic module Fault Quick Diagnosis method
CN104779911B (en) Method and system for monitoring working state of solar photovoltaic power station
CN104836528A (en) Convergence detection method and system for convergence boxes, solar power station
CN104779915B (en) Conflux detection method and system, solar power station for header box
CN104779916B (en) Conflux detection method and system, solar power station for header box
CN104767486B (en) Convergence detecting method and system for convergence box and solar power station
CN115483670A (en) Power distribution network protection method, system, equipment and storage medium suitable for photovoltaic access
CN104779910A (en) Conflux detection method and system for conflux boxes and solar power station
CN104779908B (en) The work state monitoring method of a kind of solar photovoltaic power plant and system
CN104779907B (en) A kind of work state monitoring method of solar photovoltaic power plant and system
KR101603893B1 (en) Connection Board of Photovoltaics System having Sensing Function for PV module

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
EXSB Decision made by sipo to initiate substantive examination
SE01 Entry into force of request for substantive examination
C41 Transfer of patent application or patent right or utility model
TA01 Transfer of patent application right

Effective date of registration: 20160214

Address after: 100176 Beijing economic and Technological Development Zone, Kangding street, No. 11, building three, floor 11

Applicant after: APOLLO PREC KUNMING YUANHONG LTD

Address before: 100101 Beijing city Huairou area yangsongzhen Fengxiang East Street, No. 5

Applicant before: Beijing Han Neng photovoltaic Investment Co., Ltd

C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20201223

Address after: 102206 1611, floor 16, building 5, No. 106, Kexing West Road, Changping District, Beijing

Patentee after: Beijing heshengtong Technology Co.,Ltd.

Address before: 100176 3rd floor, 11 Kangding Street, Beijing Economic and Technological Development Zone

Patentee before: BEIJING APOLLO DING RONG SOLAR TECHNOLOGY Co.,Ltd.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20210317

Address after: 101407 Yanqi Street, Yanqi Economic Development Zone, Huairou District, Beijing

Patentee after: Dongjun new energy Co.,Ltd.

Address before: 102206 1611, floor 16, building 5, No. 106, Kexing West Road, Changping District, Beijing

Patentee before: Beijing heshengtong Technology Co.,Ltd.

TR01 Transfer of patent right