TW201003099A - Solar panel feature parameter auto-authentication and performance verification system and its method - Google Patents

Solar panel feature parameter auto-authentication and performance verification system and its method Download PDF

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Publication number
TW201003099A
TW201003099A TW97125496A TW97125496A TW201003099A TW 201003099 A TW201003099 A TW 201003099A TW 97125496 A TW97125496 A TW 97125496A TW 97125496 A TW97125496 A TW 97125496A TW 201003099 A TW201003099 A TW 201003099A
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Taiwan
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computer
solar
load
template
characteristic
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TW97125496A
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Chinese (zh)
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TWI372258B (en
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Shun-Zhong Wang
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Univ Lunghwa Sci & Technology
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    • 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

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  • Testing Of Individual Semiconductor Devices (AREA)

Abstract

The present invention provides a solar panel feature parameter auto-authentication and performance verification system, which includes: a rack having a platform for receiving at least one solar cell module under test; a computer; a motor capable of being driven by the computer to execute a three-axis control of the rack; a programmable environmental status generating source; at least one lamp source; at least one sensor device; and a programmable load, whereby the programmable load is able to provide the solar cell module under test with different loads for measuring a working curve of the solar cell module under test at the current testing environment. In addition, the present invention also provides a solar panel feature parameter auto-authentication and performance verification method.

Description

201003099 九、發明說明: 【發明所屬之技術領域】 、本發明係一種太除能模板特性參數之驗證系統及其方 ί,尤其是指一種可驗證太陽能模板性能特性並用於i盖 4程與材料以提高太陽能電池的光電轉換效率,並可進二 步建立模組環境因素模型之太陽能模板特性參數 別與性能驗證系統及其方法。 【先前技術】 近年來由於工業的快速發展,使得地球上的石化能 十、速的枯竭,更造成全球自然環境的嚴重污染與變遷。美 源取得與來源多樣化和永久性能源的觀點而言,太‘ 能是除了石化燃料、水利及核能發電之外,最具^潛力與 值,開發賴能源。若能有效的彻太陽能,不但能夠& j能源需求的問題,且乾淨無污染的太陽能,更可以減少 環境污染以及降低全球溫室效應的惡劣情況。據估計/,以 來二十年全世界太陽能的使用每年將以彳5%_3〇%的比 快速的成長,因此太陽能深具發展潛力。 ^為工使太陽光電能發電系統可以最高效率發電,裝置 系統之前必須作適當規劃與設計,徹底瞭解裝置場所^地 王^經緯度位置、不同季節之平均日照率、設置場所之遮阶 ,況,在控制方面電能轉換器需具備最大功率追蹤功能 等,而其中徹底瞭解太陽光能電池特性參數與其數學模型 建立疋最基本工作,在知道相關特性曲線與數學模型後, ^可依據這些特性曲線與數學模型來設計、規劃所需的太 陽,電能發電系,並可據此數學模型作程式模擬,以驗證 所设计規劃之系統是否功能無誤且可正常工作,此電腦辅 助之設計過程,可提高硬體電路設置與實現時之精準度與 5 201003099 ίίί參I是作為設計統功率轉換器與最大功率追蹤器時 轉換特太陽能電池的光電 陽能電池輸出的特性參數做量,分^換太 f寻以驗證太陽能電池性能雜並的 科,以柃咼太陽能電池的光電轉換效率。、才 t^(s〇lar cell)^»^ g # , cell^ 雖然較料模擬光源所需數量與 簡’但在装設太陽能發電系統的時候糸:^=二 'Γ發電裝置。整塊的太陽能模板 的: 參j與單-的太陽能電池 仆派t明的目的在於提供一種太陽能模板特性參數自動 立:套,其以簡單的技術方法與流程來^ 整塊太陽能模板,_能依照各種可能的 素’來模擬與改變測量的環境,以進-步來得到所ί: 201003099 數1這種新的量測系統同時還能利用電腦所開發的人 大大的簡化複雜的操作流程,並達到減少誤差與 提南精度的目的。 白另—目的在於提供—種太陽能模板特性參數 板證系統及方法,其將整塊的太陽能模 ft置於—可改變光照射角與方位角的二軸控制平台上, 陽3電系統處之長期氣候、日照情形之觀測 公日統會按照不同季節與及每日不同時段 …、方位/、強度,利用程式自動設定所要的模 又ίΐί與二而模擬光源則安襄在另一特別設計 之燈t可以透過電腦直接改變光源的高度與照产。 本發明的另一目的在於提供一種太陽能模& ft,性能驗證系統及方法,其利用直接 式,來精確得到不同照度、溫度、傾斜角、盥 組電流_電壓曲線、功率_電壓曲線。 4疮下之換 為了達到上述目的,本發明之太陽 動化鑑別與性能驗證系統,其包括:-機架 !可供放置至少-待測太陽能電池模組;」電腦 整個系統之運作;-馬達,搞 制,-可程式環境狀態產生源,用以產^控 測試源;至少-燈源,係置於該機架上, 測該燈源所產生之照度,以及目前測’ 又坦以及-可程式負載’福接至該電腦;俾該^,:、 可=不同負载給該待測太陽能電池模板,載 太1%能電池模板在目前測試環境下之一工 ^ f南寺測 7 201003099 ί陽軸與垂直軸可ί轉的二軸 二&二if貝料榻取卡可直接控制該測試平台之 上有-=該燈架 ,利用至少一感測裝==== 將所擷取的數值傳送到該電腦中:取卡 太陽能模板在不^電壓=1== :=流,送至該電 便;^ J :壓^電流的值’經過相關的運算與處理 ΐίΐΐ乍照度與溫度下之該太陽能模板特性來數, 並由,電腦綠製出不同1作條件下之—工作數 及“,胃審查委員能進一步瞭解本發明之結構、特徵 以圖式及較佳具體實施例之詳細說明如ΐ。 板特其績示本發明一較佳實施例之太陽能模 板知r生參數自動化鑑別與性能驗證系統之示意圖。姨 ㈣ϊ圖所示’本發明之太陽能模板特性參數自動化㈣ ,一可程式環境狀態產生源4〇 ;至少一 二 一 置6〇,·以及-可程式負載7Q所組合而成者。 一二軸架10其具有一平台11 ’例如但不限於為 8〇 试平台,可供放置至少一待測太陽能電池模組 80,且該機架10進-步具有若干支架12,且每且 8 201003099 有—滑輪13 ’以方便該機架10之移動。該平A 11 馬達θ30之控制而成縱向轉動。此外,該‘竿 軸㈣虞^模㈣0之尺寸特別訂作,可作三 角^制G3先源南度、太陽能電池模板傾斜角、與方位 -人其上具有 與分析、驗證量測讀值是接貧料::執行計算 將測試結果顯示在榮幕或輸出外以即 S)上進一步具有-G叫面及㈣二: 接至該電腦 該可程式環舰能If執订韻架1〇之三軸控制。 境測試源,例如但不‘於為:二0用:二產1所需之人造環 等影響太陽能電池輪出、ί性::要 電以 =二巧控制電路42其ί 腦20,可接受該電腦2〇、、^且源:周光電路41轉接至該電 令來調整該驅動電路之照度命令’並根據照度命 控制電“ =及該鷄電路43,_至制; 向之控制外’亦接受傾斜角、方:角;令^^方 201003099 3日0控纖1G酬㈣綱,以作达 該燈源50係置於該機架1〇上,可接受哕 控制照度之光源至_酞 20,係置_機架1〇上且麵接至該電腦 用來感測该燈源50所產生之照度,以及目前 =溫度;該感測裝置6〇 _如但不限於為一昭度計或= ί£ίϊ=來㈣雜源50所纽之雜:以及目前測 該可程式負載70係_至該電腦如,其例如但 月;载其進一步具有一 GP旧介面(圖未示),透 過该GP旧介面與該電腦2Q連接 =201003099 IX. Description of the invention: [Technical field to which the invention pertains] The present invention relates to a verification system for a characteristic parameter of a de-energizing template and a method thereof, and particularly to a performance characteristic of a verifiable solar template and used for i-covering and materials In order to improve the photoelectric conversion efficiency of the solar cell, the solar module characteristic parameter and the performance verification system and the method thereof can be established in two steps. [Prior Art] In recent years, due to the rapid development of industry, the petrochemical energy on the earth has been exhausted, causing serious pollution and changes in the global natural environment. From the point of view of the source diversification and permanent energy source, it is too ‘potable to be the most potential and value in addition to fossil fuel, water conservancy and nuclear power generation. If it can effectively eliminate solar energy, it will not only solve the problem of energy demand, but also clean and pollution-free solar energy, which can reduce environmental pollution and reduce the global greenhouse effect. It is estimated that the use of solar energy in the world will grow rapidly at a rate of 彳 5% to 3% per year over the past two decades, so solar energy has great potential for development. ^For the solar photovoltaic power generation system to generate electricity at the highest efficiency, the device system must be properly planned and designed before, and thoroughly understand the location of the device, the location of the latitude and longitude of the device, the average sunshine rate of different seasons, and the layout of the installation site. In terms of control, the power converter needs to have the maximum power tracking function, etc., and thoroughly understand the solar energy battery characteristic parameters and its mathematical model to establish the most basic work, after knowing the relevant characteristic curve and mathematical model, ^ can be based on these characteristic curves The mathematical model is used to design and plan the required solar and electric power generation systems, and the mathematical model can be used to simulate the program to verify whether the designed system is functional and can work normally. This computer-aided design process can improve the hardware. The accuracy of the body circuit setting and implementation is 5 201003099 ίίί II is the characteristic parameter of the photoelectric solar cell output of the special solar cell when designing the power converter and the maximum power tracker. To verify the performance of solar cell hybrids, to light the solar cell Conversion efficiency. , t^(s〇lar cell)^»^ g # , cell^ Although the number of simulated light sources is required to be compared with the simple one, but when installing a solar power system, 糸: ^ = two 'Γ power generation device. The whole piece of solar template: The purpose of the j- and single-solar solar cells is to provide a solar module characteristic parameter automatic stand: set, which uses simple technical methods and processes to ^ a whole solar template, _ can In order to simulate and change the measurement environment according to various possible factors, we can get the following: 201003099 The new measurement system can also greatly simplify the complicated operation process by using the computer developed by people. And to achieve the purpose of reducing the error and accuracy of the South. White another - the purpose is to provide a solar module characteristic parameter board system and method, which puts the whole solar module ft on a two-axis control platform that can change the light irradiation angle and azimuth angle, and the solar power system The observation of long-term climate and sunshine conditions will be installed in another special design according to different seasons and different time periods..., orientation/intensity, using the program to automatically set the desired mode and then the analog light source. The lamp t can directly change the height and production of the light source through the computer. Another object of the present invention is to provide a solar mode & ft, performance verification system and method which utilizes direct mode to accurately obtain different illuminance, temperature, tilt angle, 盥 group current_voltage curve, power_voltage curve. In order to achieve the above object, the solarization identification and performance verification system of the present invention comprises: - a rack! can be placed at least - a solar cell module to be tested; "the operation of the entire system of the computer; , system, the source of the programmable environment state, used to produce the control test source; at least - the light source is placed on the rack, the illumination produced by the light source is measured, and the current measurement 'also and - Programmable load 'Fu to the computer; 俾 ^,:, can = different load to the solar cell template to be tested, load too 1% energy battery template in the current test environment ^ f Nansi test 7 201003099 ί The two-axis two & two if-bee pickup card for the male and vertical axes can directly control the test platform with -= the light frame, using at least one sensing device ==== The value is transferred to the computer: the card solar template is sent to the battery without the voltage ====:=; ^ J: the value of the voltage ^ is subjected to the relevant calculation and processing ΐίΐΐ乍 illuminance and temperature The characteristics of the solar module are counted, and the computer green is made under different conditions. The following is a detailed description of the structure and features of the present invention, and the detailed description of the preferred embodiments, such as ΐ ΐ ΐ ΐ ΐ ΐ ΐ ΐ ΐ ΐ ΐ ΐ ΐ 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能Schematic diagram of the parameter automatic identification and performance verification system. 姨 (4) ϊ ' ' ' ' ' 本 本 本 本 本 本 本 本 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能 太阳能The combination of 7Q has a platform 11' such as, but not limited to, an 8-inch test platform for placing at least one solar cell module 80 to be tested, and the rack 10 has a step-by-step A plurality of brackets 12, and each of 8 201003099 has a pulley 13' to facilitate the movement of the frame 10. The flat A 11 motor θ30 is controlled to rotate longitudinally. In addition, the '竿 axis (four) 虞 ^ die (four) 0 size is special Customized, can be used as a triangle system G3 first source south degree, solar cell template tilt angle, and orientation - people have and analyze, verify the measured reading value is poor:: Execute the calculation to display the test results in the honor screen Or output Externally, that is, S) further has -G called face and (4) 2: Connected to the computer, the programmable ring ship can perform the three-axis control of the rhyme frame. The environmental test source, for example, but not 'Yuwei: two 0 use: the artificial ring required for the second production 1 affects the solar cell rotation, ί:: to electricity = = two control circuit 42 its brain 20, can accept the computer 2 〇, ^ and source: Zhou photoelectric The circuit 41 is transferred to the electric order to adjust the illumination command of the driving circuit 'and to control the electric power according to the illumination life = "and the chicken circuit 43, _ to the system; to control the outside" also accepts the inclination angle, square: angle; ^^方201003099 3rd 0 control fiber 1G reward (four) program, to make the light source 50 is placed on the rack 1 ,, can accept the light source to control illuminance to _ 酞 20, system _ rack 1 〇 And the surface is connected to the computer for sensing the illuminance generated by the light source 50, and the current temperature; the sensing device 6 〇 _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ Source 50 of the new: and currently test the programmable load 70 is _ to the computer, for example, but the month; it further has a GP old interface (not shown), through the GP old interface and the Brain connected 2Q =

^動化改_電子貞載7Q 如此便可連續測得特性曲線上』 能驗陽”,性參數自動化鑑別與性 f步具有一多功能數位電表(D_)90,其經 ;能带二未示)#ί接至該電腦20,用來量測該太 池核* 80接不同負載下之輸出電麼盥電流, 以0,ff完所有測試點後,所儲存之 ^不,A丨j 5亥太陽咸電池模板之工作曲線,例如 特性曲線與部分遮籍特性曲線。轉不同角度之 耦接至該 20 ’用來監控整錢 化鑑別與性能驗證系統之硬齡備是否正常運作〔會是有 201003099 突發狀況產生時,使用者從該電腦2〇之畫面上即可作緊叁 =品以免發生災害’另外’該攝影機‘亦可檢測出: 此外’本發明之太陽能模板特性參數自動化鑑別 旎驗證系統進一步具有一資料擷取卡彳1〇,可提供各 =90、1〇〇與該電腦2〇聯繫溝通 : =所附通訊介面不一樣,但只要瞭解其通訊協定儀g 所驅動程式’則透過所撰寫之人機界面軟 體21,應可刼控母台儀器設備。 該待測太陽能電池模板8◦置於該平 ί越i妾疋^要測試之環境條件設定,包含照度、溫 ί,據命令產生所要的i 频轉確為 s;點; 不同角度之紐^與i 21上作齡或儲麵印。^诚轉,並在人機界面 動化鑑別與性能驗證方法,net糾踏性參數自 8,-水平轴 4千口 11上,一電腦2〇透 疋锝的一軸/則 制該測試 11 201003099 试平台11上有一燈架,該燈架上 T該待測謂能模板8〇的感光面:50 ’其可 ^少-感測裝置60偵測該燈源5J射步驟2);利用 拉板80表面溫度,並經由該資料操取=轉讀待測太陽能 ^值傳送到該電腦2〇 t做運 k 110將所掏取的 模板8◦的輸出端接至—可程 ^ ),▲將該待測太陽能 負載70以得到該待測太陽板亥電腦20調整該 !;=值(步驟4);以及所測得板的 下幅 该電知20,合併溫度、照度、傾 電机值再回送至 流的值,經過相關的運算與處理,…位角、電壓與電 溫度下之該待測太陽能模板特性不同工作照度與 ㈣出不同工作條件下之一 並由該電腦20 於該步驟]中,將至少一 平軸與垂直軸可旋轉的二轴測試^反8〇置於-水 過一貧料擷取卡11〇可直接控制該7 一電腦20透 與方位角度;其中,該二軸測試平Ύ、; 1之傾斜角度 限於為-步進馬達3Q之控制 & =可接雙例如但不 例如但不限於為一個人電腦動’且該電腦20 RS-232介面(皆圖未示)。"且其上具有—GPIB介面及 於該步驟2中,於該測試平A 上有至少一燈源5〇,j:可對^r D 有一燈架,該燈架 面進行照射;其中,該感測陽能模板80的感光 計或5外線熱像儀’用來感測該燈源5二::於為;照度 及目前測試環境之溫度,而該燈^生之照度,以 調式燈源,且其數量可視需要;;S〇例如但不限於為一可 於該步驟3中,利用至少一咸 5〇之照賴雜敎陽賴板 12 201003099 料擷取卡110將所擷取的數值傳 用;其中’該感聰置6。例如但不日2九中」故運 線熱像儀,用來感測該燈源5〇所產之;π度汁或紅外 試環境之溫度。 度’以及目前測 於該步驟4中,將該待測太陽能模 一可程式負載70,該電腦2〇調整該参、恭、^出端接至 ”模板8G在不同貞載下的電待測 可程式負載70例如但不限於為一: 中,该 一 GP旧介面(圖未示),其進—步具有 ,利用程式設定方式,可自動化改連 荷值,以提供不同負载給該待測太陽能、祐 之負 便可=測得特性曲線上之不同工作點之如此 於该步驟5中,所測得的電s和電流=== 腦20,合併溫度、照度、傾斜 ^口込至该电 相關的運算與處理,便可得不同二=、?产的 =====電“ rw _線、ρ·“:Γ^ίί 知*丨生曲線铃部分遮签特性曲線。 -驗之场能模板特性參數自動化鏗別與性 提供—多功能數位電表(D_9〇 ii )=ί 能數位電表90經由—gp旧介面(圖 if千負載70下之輸出電壓與電流,其所量到的值送 ΐ至该電腦2G ’在做完所有測試點後,所儲存之 據,=晝寺測太1能電池模板8〇之各種丄作曲線。 ,本卷明之太陽能模板特性參數自動化鑑別與性 13 201003099 =驗=方法進-步具有一提供—攝影機卿之步 7) ’该攝影機1〇〇經由一網路(圖未) 币(乂知 用夾畝批敕翩-、日丨从 ^ 、口不不;揭接至该電腦20, 皿拴整個i測統之硬體設備是否正常運作,合 务狀況產生時,使用者從該電腦畫面上 "大 以,生災害,另外,該攝影機亦可檢測出:理, ,以,經由本發明之太陽能模板特性參數自動= 性=證系統之實施’其以簡單触術方法 ^建^动化改_Electronic load 7Q so that the characteristic curve can be continuously measured on the characteristic curve, the automatic parameter identification and the sexual f step have a multi-function digital electric meter (D_)90, and the Show) #ί Connected to the computer 20, used to measure the output of the Taichi core * 80 connected to different loads, current, after 0, ff all test points, stored ^ no, A丨j The working curve of the 5 Hai solar battery template, such as the characteristic curve and the partial shading characteristic curve. The coupling of the different angles to the 20' is used to monitor the hard-working identification and performance verification system. When there is a sudden occurrence of 201003099, the user can immediately close the product from the screen of the computer to avoid disasters. In addition, the camera can also detect: In addition, the solar panel characteristic parameter of the present invention is automated. The authentication verification system further has a data acquisition card 彳1〇, which can provide each=90, 1〇〇 to communicate with the computer 2〇: = The attached communication interface is different, but as long as the communication protocol g is driven The program is written by The machine interface software 21 should be able to control the mother station equipment. The solar cell template 8 to be tested is placed in the environmental condition setting to be tested, including illuminance and temperature, according to the command to generate the desired i frequency is indeed s; point; different angles of the new ^ and i 21 on the age or storage surface printing. ^ Cheng turn, and in the human-machine interface dynamic identification and performance verification method, net correction parameters from 8, - Horizontal axis 4 thousand ports 11 on, one computer 2 〇 through a shaft / then the test 11 201003099 Test platform 11 has a light stand on the light stand T to be measured as the template 8 〇 photosensitive surface: 50' can detect the light source 5J step 2); use the surface temperature of the pull plate 80, and use the data to read = read the solar energy value to be tested and transmit it to the computer 2〇t The operation k 110 will connect the output of the template 8◦ obtained to the process ^), ▲ the solar load 70 to be tested to obtain the solar panel 20 to be tested; And the measured lower panel of the board, the combined temperature, illuminance, tilt motor value and then returned to the value of the stream, after the relevant operations and processing The position of the solar illuminator to be tested under the position angle, voltage and electric temperature is different from the working illuminance and (4) one of the different working conditions and the computer 20 is in the step], at least one of the flat axis and the vertical axis is rotatable The axis test ^ anti 8 〇 placed - water through a poor material picking card 11 〇 can directly control the 7 computer 20 through and azimuth angle; wherein the two axis test flat,; 1 tilt angle is limited to - step The control of the motor 3Q & = can be doubled, for example but not limited to, but not limited to, a computer for one person and the computer 20 RS-232 interface (both not shown). " and has a -GPIB interface and In step 2, there is at least one light source 5〇 on the test level A, j: there is a light frame for the ^r D, and the light frame surface is irradiated; wherein the sensitometer for sensing the aging energy template 80 or 5 The external thermal imager is used to sense the light source 5:: illuminance; the illuminance and the temperature of the current test environment, and the illumination of the lamp is used to adjust the light source, and the number thereof can be used as needed; However, it is not limited to one that can be used in the step 3, using at least one salty 5 〇 赖 敎 赖 赖 12 12 12 20 20 The 1003099 pick-up card 110 passes the retrieved value; wherein the sense is set to 6. For example, but not in the 2nd and 9th, the accidental line camera is used to sense the temperature produced by the lamp source; π-degree juice or infrared test environment. Degree 'and currently measured in step 4, the solar module to be tested is a programmable load 70, the computer 2〇 adjusts the reference, Gong, ^ out to the "template 8G under different load carrying electrical test The programmable load 70 is, for example but not limited to: one, the old interface of the GP (not shown), and the step-by-step has a program setting manner, which can automatically change the load value to provide different loads for the test. Solar energy, the negative of the negative can be measured = the different working points on the characteristic curve. In this step 5, the measured electric s and current === brain 20, combined temperature, illuminance, tilt ^ mouth to the electricity Related calculations and processing can be different. ================================================================================================ Can be used to automatically analyze the characteristics of the template parameters - multi-function digital meter (D_9 〇 ii) = ί energy meter 90 through the -gp old interface (Figure if the load voltage and current under a thousand load 70, its measured value Send to the computer 2G 'after all the test points have been completed, the stored data, = 昼 Temple test too 1 can battery module 8〇 Various kinds of curve. The automatic identification and property of the solar module characteristic parameters in this volume 13 201003099 = test = method into - step has a provision - camera step 7) 'The camera 1 through a network ( Figure not) Coin (when you know how to use the arbitrarily--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- The user can use the computer screen to generate a disaster. In addition, the camera can also detect: the solar panel template characteristic parameter of the invention is automatically implemented by the present invention. Touch method

f j電腦辅助的太陽能模板特性參數量測系統 J接:測整塊太陽能模板,還要能依照 J J :來模擬與改變測量的環境,以進一步來 機種新的量測系統同時還能利用電腦所開發的2 ^ =的目的等優點,因此,確可改善習知太陽能ί板 特丨生參數之驗證系統之缺點。 、 U所揭示者,乃較佳實施例之一種,舉凡局部之變 源於本案之技術思想而為熟習該項技藝之人所 易於推知者,俱不脫本案之專利權範疇。 上所陳,本案無論就目的、手段與功效,在在顯示 二U於習知之技術特徵’且其首先發明合於實用,亦在 曰明之專利要件’懇請f審查委員明察,並析早 曰賜予專利,俾嘉惠社會,實感德便。 【圖式簡單說明】 处1為一示意圖,其繪示本發明一較佳實施例之太陽 月匕杈板特性參數自動化鏗別與性能驗證系統之示意圖。 ^2為一不意圖,其繪示本發明另一實施例之太陽能 ,反4寸性參數自動化鑑別與性能驗證方法之流程示意圖。 【主要元件符號說明】 14 201003099 機架10 支架12 電腦20 馬達30 燈源調光電路41 驅動電路43 感測裝置60 待測太陽能電池模組80 攝影機100 平台11 滑輪13 人機界面軟體21 可程式環境狀態產生源40 溫度控制電路42 燈源50 可程式負載70 多功能數位電表90 資料擷取卡110 15Fj computer-aided solar module characteristic parameter measurement system J: measuring the whole solar module, but also can simulate and change the measurement environment according to JJ: to further develop the new measurement system and also develop with computer The advantages of 2 ^ = purpose, etc., therefore, can indeed improve the shortcomings of the verification system of the conventional solar panel. The disclosure of U is a kind of preferred embodiment. Any change from the technical idea of the present invention to those skilled in the art can be easily inferred from the patent right of the case. In the case of the above, the case, in terms of purpose, means and efficacy, is showing the technical characteristics of the second U in Xizhi and its first invention is practical and practical, and also in the patent requirements of the Ming Dynasty, please review the members of the review, and analyze the early gift The patent, the Jiahui society, is really sensible. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic view showing a schematic diagram of an automatic screening and performance verification system for a solar panel characteristic parameter according to a preferred embodiment of the present invention. ^2 is a schematic diagram showing the flow of the method for automatic identification and performance verification of solar energy and anti-four-inch parameters according to another embodiment of the present invention. [Main component symbol description] 14 201003099 Rack 10 Bracket 12 Computer 20 Motor 30 Light source dimming circuit 41 Drive circuit 43 Sensing device 60 Solar cell module to be tested 80 Camera 100 Platform 11 Pulley 13 Human interface software 21 Programmable Environmental status generation source 40 Temperature control circuit 42 Light source 50 Programmable load 70 Multi-function digital meter 90 Data capture card 110 15

Claims (1)

201003099 十、申請專利範圍: 1.一種太陽能模板特性參數自動化鑑別與性 統,其包括: 能驗證系 池模組機架’其具有—平台可供放置至少—制太陽能電 之運;電腦’其上具有—人機界面軟體,可控制整個系統 該機ίίί軸=至該電腦’可接受該電腦之驅動而執行 測試;^程式環境㈣產生源,肋產生所需之人妓境 至少一燈源’係置於該機架, 兩 ^少-感測裝置,係置於該機架上且^ ; 】來3該燈源所產生之照度’以及目前測試環境=, 可程式負載,麵接至該電腦; 支=滑輪,以方便該機架之:動。 16 201003099 腦’ ίίίΐί二GP旧介面及RS_232介面。 自細與性能驗證纽,其中 t源凋先电路,耦接至該電腦,可 U度叩令,並根據照度命令來 ^^ 功率,以調整該燈源之輸出照度; 〜路之輸出 -溫度控制電路,雛至該電腦, 路,以調控該_之高度做溫度之增減控鶴电 ㈣m路’雛至該電腦,除可執行2軸方向之# 自動 7.如f 5#專利關第彳項騎之太陽麟板特性參數 ,動化鑑別與性能驗證系統,其中該感測裝置可為昭产 ,紅外線熱像儀,用來感測舰源所產生 ’:^ W測試環境之溫度。 8·如申請專利範圍第1項所述之太陽能模板特性來數 =化鑑顺性能驗證系統,其中該可程式負載可為1 負載,其進一步具有一 GP旧介面,透過該gp旧介面 ^該電腦,接,程式設定方式,可自統改變該電子 負載之負荷值,以提供不同負載給該待測太陽能電池模 板,如此便可連續測得特性曲線上之不同工作點之電壓與 電流。 /、 9.如申請專利範圍第1項所述之太陽能模板特性參數 自動化鑑別與性能驗證系統,其進一步具有一多功能數位 17 201003099 電表(DMM),其經由一 GP旧介面耦接至兮币 電池模板接不同負载下電= 所!到的值运回至該電腦,在做完所有制包机,其 之讀值數據,即可畫出該太陽能電池模^丨”、1 ’所儲存 數自利範圍第1項所述之太陽能模° f自動化鑑別與性能驗證系、统,其進—牛亘η雖參 ㈣⑼突㈣⑽設 腦晝面上即可作緊急處理,以免發生災者從該電 機亦可檢測出瑕症產σ。 ' 另外,該攝影 — = ;模板_ 卡,;儀器設備與該電腦聯ί溝料擷取 、方紐錄自祕細慎性能驗證 轉的陽能模板置於—水平軸與垂直軸可旋 源,::j逆fii;光=2至少-燈 18 201003099 ^將該待測太陽能模板的輸出端接至一可程式負載,該 電腦調整該負載來得到該待測太陽能模板在不同負載下的 電壓和電流的值;以及 所測得的電壓和電流值再回送至該電腦,合併度、 斜角與方位角、電壓與電流的值,經過二的運 I便可得不同工作照度與溫度下之該待測太陽能 ^板扣性餐數,並由該電腦繪製出不同工作條件一工 作曲線。 ㈣m請f利範目®13項觸之太陽紐板特性參 接為牛性能驗證方法,其中該二軸測試平台係可 接又一步進馬達之控制而成縱向轉動。 μ 巾請專利範圍第13項所述之太陽能模板特性來 生?f登方法,其中該電腦可為-個人電 月曲且其上具有一 GP旧介面及RS-232介面。 數自圍第13項所述之太陽能模板特性參 數自==驗=項=;,特性參 同負載下之輸出電壓與電^ 接不 腦’在做完所有測試點後,欠==㊁出 19 201003099 該板之敎作曲線。 數自動化猶3項戶斤述之太陽能模板特性參 機之步驟,該攝提供—攝影 ;?,使用者從該電:緊忠突發狀況產 火告,另外,該攝影機亦可檢測 理’以免發生 20.如申請專利範圍第13項又,,口口。 不同角度之特性曲 數自動化鑑別與性能驗證方法,、发太陽能模板特性參 特性曲線、ΡΛ/特性曲線、又曰:二中該工作曲線可為一|_V 特性曲線 線與部分遮蔭 20201003099 X. Patent application scope: 1. An automatic identification and sexual system of solar module characteristic parameters, including: It can verify that the system module rack has the platform to be placed at least for solar power; the computer There is a human-machine interface software that can control the whole system. The machine ίίί axis=to the computer can accept the driver of the computer and perform the test; ^the program environment (4) generates the source, the rib generates the required person environment at least one light source 'The system is placed in the rack, two ^ less - sensing device, is placed on the rack and ^; 】 to 3 the illumination produced by the light source 'and the current test environment =, programmable load, face to The computer; support = pulley to facilitate the movement of the frame: moving. 16 201003099 Brain ' ί ί ί ί ί GP old interface and RS_232 interface. Self-fine and performance verification button, where the t source is connected to the computer, can be connected to the computer, and can be adjusted according to the illumination command to adjust the output illuminance of the light source; Control circuit, the young to the computer, the road, to adjust the height of the _ to do the temperature increase and decrease control crane electric (four) m road 'small to the computer, in addition to the executable 2 axis direction # automatic 7. such as f 5 #patent彳 骑 之 太阳 麟 太阳 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 太阳 太阳 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性 特性8) The solar stencil characteristic as described in claim 1 of the patent application, wherein the programmable load can be 1 load, which further has a GP old interface, through the gp old interface The computer, connection, and program setting mode can automatically change the load value of the electronic load to provide different loads to the solar cell template to be tested, so that the voltage and current of different operating points on the characteristic curve can be continuously measured. /, 9. The solar template characteristic parameter automatic identification and performance verification system described in claim 1 further has a multi-function digit 17 201003099 electric meter (DMM) coupled to the coin via a GP old interface The battery template is connected to different loads. The value obtained is returned to the computer. After all the charter machines have been completed, the reading data of the machine can be used to draw the solar energy module described in item 1 of the solar cell module. fAutomatic identification and performance verification system, system, although the entry - burdock η ginseng (4) (9) sudden (four) (10) set the cerebral palsy surface for emergency treatment, so as to avoid the disaster victims from the motor can also detect sputum production σ. , the photography - = ; template _ card,; instrument equipment and the computer ί 沟 撷 、 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 方 : : :j inverse fii; light=2 at least-light 18 201003099 ^The output of the solar template to be tested is connected to a programmable load, and the computer adjusts the load to obtain the voltage and current of the solar template to be tested under different loads And the measured voltage and current values are sent back to the computer, the degree of integration, bevel and azimuth, voltage and current, after two operations I can get different work illuminance and temperature Measure the number of solar-powered plates, and The brain draws a different working condition and a working curve. (4) The m-type F-Fanmu® 13-touch solar plate characteristics are connected to the cow performance verification method, wherein the two-axis test platform can be connected to the control of another stepping motor. Rotating. μ Towels, please refer to the solar stencil characteristics described in the 13th patent range, where the computer can be a personal electric moon and has a GP old interface and an RS-232 interface. The solar module characteristic parameter mentioned in item 13 is ==test=item=;, the output voltage and the electric characteristic under the load are not in the brain' after all the test points are completed, owe==two out 19 201003099 The curve of the board is made. The number of automation is still the step of the solar module feature of the 3 households. The camera provides the camera. The user receives the fire from the power. It can also be tested to avoid occurrence of 20. For example, in the scope of patent application, item 13, and mouth. Automatic identification and performance verification methods for characteristic angles of different angles, solar module characteristic parameter characteristic curve, ΡΛ/characteristic curve, and曰: The working curve in the second can be a |_V characteristic curve and part of the shading 20
TW97125496A 2008-07-07 2008-07-07 Solar panel feature parameter auto-authentication and performance verification system and its method TW201003099A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI410641B (en) * 2011-02-18 2013-10-01 Univ Lunghwa Sci & Technology Solar power supply system maximum power tracker verification platform
TWI461882B (en) * 2012-09-18 2014-11-21 Univ Nat Taiwan Multipoint direct-prediction method for maximum power point tracking of photovoltaic modules system and control device of photovoltaic modules array

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Publication number Priority date Publication date Assignee Title
TW201547050A (en) * 2014-06-13 2015-12-16 Univ Chung Hua Solar cell production process efficiency monitoring system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI410641B (en) * 2011-02-18 2013-10-01 Univ Lunghwa Sci & Technology Solar power supply system maximum power tracker verification platform
TWI461882B (en) * 2012-09-18 2014-11-21 Univ Nat Taiwan Multipoint direct-prediction method for maximum power point tracking of photovoltaic modules system and control device of photovoltaic modules array
US8957643B2 (en) 2012-09-18 2015-02-17 National Taiwan University Method and device for maximum power point tracking of photovoltaic module systems

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