TWI706617B - Solar Smart Disaster Prevention Circuit Breaker - Google Patents
Solar Smart Disaster Prevention Circuit Breaker Download PDFInfo
- Publication number
- TWI706617B TWI706617B TW108103112A TW108103112A TWI706617B TW I706617 B TWI706617 B TW I706617B TW 108103112 A TW108103112 A TW 108103112A TW 108103112 A TW108103112 A TW 108103112A TW I706617 B TWI706617 B TW I706617B
- Authority
- TW
- Taiwan
- Prior art keywords
- unit
- switch
- output
- control unit
- output terminal
- Prior art date
Links
Images
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
Landscapes
- Distribution Board (AREA)
- Supply And Distribution Of Alternating Current (AREA)
Abstract
一種太陽能智慧防災斷路器,用於電連接一太陽能板模組,該太陽能智慧防災斷路器包含一輸入單元、一輸出單元、一開關單元、一電能檢測單元及一控制單元,該輸入單元包括電連接該太陽能板模組的一第一輸入端子及一第二輸入端子,該輸出單元包括一第一輸出端子,及一電連接該第二輸入端子的第二輸出端子,該開關單元串聯於該第一輸入端子及該第一輸出端子之間,並可受控制而於一導通狀態及一斷路狀態之間變換,該控制單元電連接該該電能檢測單元,對該電能檢測單元所檢測的該轉換電訊號於一預定時間的電壓大小進行判斷,而能於該轉換電訊號的電壓大小產生異常的下降狀況時能使該開關單元變換至該斷路狀態,確保整個系統的安全。A solar intelligent disaster prevention circuit breaker for electrically connecting a solar panel module. The solar energy intelligent disaster prevention circuit breaker includes an input unit, an output unit, a switch unit, an electric energy detection unit and a control unit. The input unit includes electricity A first input terminal and a second input terminal of the solar panel module are connected. The output unit includes a first output terminal and a second output terminal electrically connected to the second input terminal. The switch unit is connected in series with the Between the first input terminal and the first output terminal, and can be controlled to switch between an on state and an off state, the control unit is electrically connected to the power detection unit, and the power detection unit detects the The voltage level of the converted electrical signal is judged for a predetermined time, and the switch unit can be converted to the open circuit state when the voltage level of the converted electrical signal produces an abnormal drop condition, ensuring the safety of the entire system.
Description
本發明是有關於一種防災裝置,特別是指一種太陽能智慧防災斷路器。The invention relates to a disaster prevention device, in particular to a solar intelligent disaster prevention circuit breaker.
參閱圖1,一種現有的配電系統,包括複數分別輸出複數轉換電訊號的太陽能板模組11、一電連接該等太陽能板模組11的直流電保護模組12、一電連接該直流電保護模組12以將直流電轉換成交流電的電力轉換模組13、一電連接該電力轉換模組13的交流電配電模組14、複數包覆該等太陽能板模組11及該直流電保護模組12間的線路的第一線槽件15、一包覆該直流電保護模組12及該電力轉換模組13間的線路的第二線槽件16,及一包覆於該電力轉換模組13及該交流電配電模組14間的第三線槽件17。Referring to Figure 1, an existing power distribution system includes a plurality of
該等太陽能板模組11分別將太陽能轉換成該等轉換電訊號後,將直流電型式的該等轉換電訊號傳輸至該直流電保護模組12後,再傳輸至該電力轉換模組13以轉換成交流電型式的該等轉換電訊號,最後將交流電型式的該等轉換電訊號傳輸至該交流電配電模組14以供後續使用,該直流電保護模組12可於過載時斷開以確保該直流電保護模組12下游的電路的安全。After the
然而,若電力發生異常,若無法及時關閉系統,則有可能導致系統進一步發生損壞的災情,因此有必要進行防災設計。However, if the power is abnormal, if the system cannot be shut down in time, it may cause further damage to the system. Therefore, it is necessary to design for disaster prevention.
因此,本發明之目的,即在提供一種克服先前技術所述缺點的太陽能智慧防災斷路器。Therefore, the purpose of the present invention is to provide a solar smart disaster prevention circuit breaker that overcomes the disadvantages of the prior art.
於是,本發明太陽能智慧防災斷路器,用於電連接一太陽能板模組,該太陽能板模組用於將太陽能轉換成一轉換電訊號,該太陽能智慧防災斷路器包含一輸入單元、一輸出單元、一開關單元、一訊號產生單元、一電能檢測單元,及一控制單元。Therefore, the solar smart disaster prevention circuit breaker of the present invention is used to electrically connect a solar panel module, the solar panel module is used to convert solar energy into a converted electrical signal, and the solar smart disaster prevention circuit breaker includes an input unit, an output unit, A switch unit, a signal generation unit, an electric energy detection unit, and a control unit.
該輸入單元包括電連接該太陽能板模組以接收該轉換電訊號的一第一輸入端子及一第二輸入端子,該輸出單元包括一第一輸出端子,及一電連接該第二輸入端子並與該第一輸出端子共同輸出該轉換電訊號的第二輸出端子,該開關單元串聯於該第一輸入端子及該第一輸出端子之間,並可受控制而於一導通狀態及一斷路狀態之間變換,於該導通狀態時,該第一輸入端子及該第一輸出端子相互導通,於該斷路狀態時,該第一輸入端子及該第一輸出端子不導通,該訊號產生單元電連接該開關單元並可受控制而輸出一驅動電壓,該電能檢測單元電連接該第一輸出端子及該第二輸出端子以檢測該轉換電訊號的電壓大小,該控制單元電連接該訊號產生單元及該電能檢測單元,該控制單元對該電能檢測單元所檢測的該轉換電訊號於一預定時間的電壓大小進行判斷,當該預定時間內的電壓下降至一預設電壓時,該控制單元於一延遲時間後驅使該訊號產生單元不對該開關單元輸入該驅動電壓以使該開關單元變換至該斷路狀態。The input unit includes a first input terminal and a second input terminal electrically connected to the solar panel module to receive the converted electrical signal. The output unit includes a first output terminal, and a second input terminal electrically connected to the solar panel module. The second output terminal that outputs the converted electrical signal together with the first output terminal, the switch unit is connected in series between the first input terminal and the first output terminal, and can be controlled to be in an on state and an off state In the conducting state, the first input terminal and the first output terminal are connected to each other, and in the open state, the first input terminal and the first output terminal are not conducting, and the signal generating unit is electrically connected The switch unit can be controlled to output a driving voltage, the electric energy detection unit is electrically connected to the first output terminal and the second output terminal to detect the voltage of the converted electrical signal, and the control unit is electrically connected to the signal generating unit and The power detection unit and the control unit judge the voltage of the converted electrical signal detected by the power detection unit for a predetermined time. When the voltage within the predetermined time drops to a predetermined voltage, the control unit is After the delay time, the signal generating unit is driven not to input the driving voltage to the switch unit to make the switch unit change to the open circuit state.
本發明之功效在於:藉由設置該開關單元、該訊號產生單元、該電能檢測單元及該控制單元,而能夠於該轉換電訊號的電壓大小產生異常的下降狀況時能停止傳輸該轉換電訊號,以確保整個系統的安全。The effect of the present invention is that by providing the switch unit, the signal generating unit, the electric energy detecting unit and the control unit, the transmission of the converted electrical signal can be stopped when the voltage of the converted electrical signal is abnormally decreased. To ensure the safety of the entire system.
參閱圖2,本發明太陽能智慧防災斷路器之一實施例,用於電連接一太陽能板模組91,該太陽能板模組91用於將太陽能轉換成一轉換電訊號。於本實施例中,該太陽能板模組91是由多個太陽能板(圖未示)串接而成,該轉換電訊號為直流電型式且為該等太陽能板的共同串聯電壓。Referring to FIG. 2, an embodiment of the solar intelligent disaster prevention circuit breaker of the present invention is used to electrically connect a
該太陽能智慧防災斷路器包含一輸入單元21、一輸出單元22、一開關單元3、一溫度量測單元4、一訊號產生單元5、一電能檢測單元6、一控制單元7,及一收發單元8。The solar smart disaster prevention circuit breaker includes an
該輸入單元21包括電連接該太陽能板模組91以接收該轉換電訊號的一第一輸入端子211及一第二輸入端子212。The
該輸出單元22包括一第一輸出端子221,及一電連接該第二輸入端子212並與該第一輸出端子221共同輸出該轉換電訊號的第二輸出端子222。於本實施例中,該第一輸入端子211及該第一輸出端子221為直流電的負電極,該第二輸入端子212及該第二輸出端子222為直流電的正電極,但在其它的實施例中,也可以是相反設置,該第一輸入端子211及該第一輸出端子221為直流電的正電極,該第二輸入端子212及該第二輸出端子222為直流電的負正電極,同樣具備相同的效果。The
該開關單元3串聯於該第一輸入端子211及該第一輸出端子221之間,並可受控制而於一導通狀態及一斷路狀態之間變換,於該導通狀態時,該第一輸入端子211及該第一輸出端子221相互導通,於該斷路狀態時,該第一輸入端子211及該第一輸出端子221不導通。於本實施例中,該開關單元3為繼電器(Relay)型式的電磁開關,在其它的實施態樣中,也可以是矽控整流器(Silicon Controlled Rectifier,SCR )、絕緣柵雙極電晶體(Insulated Gate Bipolar Transistor,IGBT)或其它可做為開關功能的電子零件。The
該溫度量測單元4用於量測環境溫度。於本實施例中,該溫度量測單元4是將所量測到的環境溫度轉換成類比電壓的型式輸出,但在其它的實施態樣中,也可以是以先轉換成數位訊號型式後再輸出。The
該訊號產生單元5電連接該開關單元3並可受控制而輸出一驅動電壓。於本實施例中,該驅動電壓為15VDC。The signal generating
該電能檢測單元6電連接該第一輸出端子221、該第二輸出端子222及該控制單元7以檢測該轉換電訊號的電壓大小、電流大小及功率大小。The
該控制單元7電連接該溫度量測單元4、該訊號產生單元5及該電能檢測單元6,該控制單元7於該溫度量測單元4所量測的環境溫度不高於一預設溫度時,驅使該訊號產生單元5對該開關單元3輸入該驅動電壓以使該開關單元3變換至該導通狀態,該控制單元7於該溫度量測單元所量測的環境溫度高於該預設溫度時,驅使該訊號產生單元5不對該開關單元3輸入該驅動電壓以使該開關單元3變換至該斷路狀態。於本實施例中,該預設溫度為攝氏80度,但並不限於此。The
該收發單元8電連接該控制單元7並可對一伺服器92接收或輸出一收發訊號,輸出的該收發訊號的內容為該轉換電訊號的電壓大小、電流大小、功率大小及該開關單元3的導通狀態的至少其中一者,輸入的該收發訊號的內容為驅使該控制單元7控制該訊號產生單元5是否輸出該驅動電壓的指令。The transceiving
使用時,該太陽能板模組91會將所接收的太陽能轉換成該轉換電訊號,當該控制單元7於該溫度量測單元4所量測的環境溫度不高於攝氏80度時,驅使該訊號產生單元5對該開關單元3輸入15VDC的該驅動電壓,以使該開關單元3變換至該導通狀態,此時該轉換電訊號就能通過該輸入單元21及該開關單元3而由該輸出單元22輸出,以將電力提供給後續元件使用或進一步儲存備用。When in use, the
同時,該控制單元7能將該電能檢測單元6所檢測該轉換電訊號的電壓大小、電流大小、功率大小及該開關單元3的導通狀態透過該收發單元8所輸出的該收發訊號傳送至該伺服器92,使遠方的維運人員能根據該伺服器92所接收的該收發訊號就能得知該太陽能智慧防災斷路器的相關即時狀況。於本實施例中,該控制單元7是定期發送該收發訊號,例如是每十秒傳送一次,該收發單元8可以是以有線傳輸或是無線傳輸的型式傳送該收發訊號。At the same time, the
而當火災發生,該控制單元7於該溫度量測單元4所量測的環境溫度高於攝氏80度時,驅使該訊號產生單元5不再對該開關單元3輸入該驅動電壓以使該開關單元3變換至該斷路狀態,此時電能較大的該轉換電訊號就無法通過該開關單元3,由於直流電的正負極不再構成迴路,故不再有該轉換電訊號的產生,因此下游的線路不再有電能較大的電力經過,就能避免火災發生時因持續供應大電力所產生的擴大災害,也可避免消防救災人員觸電的意外。When a fire occurs, when the ambient temperature measured by the
另外,當火災發生中,該控制單元7仍持續透過該收發單元8將該收發訊號傳送至該伺服器92,因此遠方的維運人員也能根據該伺服器92所接收的該收發訊號得知該開關單元3已變換至該斷路狀態,而能藉此判斷火災的發生,並採取相對應的措施。In addition, when a fire occurs, the
要說明的是,當維運人員得知火災發生而需要停止該開關單元3,或因維修的需求而需要停止或開啟該開關單元3時,只要對該收發單元8輸入驅使該控制單元7控制該訊號產生單元5是否輸出該驅動電壓的指令,就能控制該開關單元3切換至所需要的狀態,而能確保維修人員的安全。It should be noted that when maintenance personnel know that a fire has occurred and need to stop the
要說明的是,該控制單元7還對該電能檢測單元6所檢測的該轉換電訊號於一預定時間的電壓大小進行判斷,當該預定時間內的電壓下降至一預設電壓時,該控制單元7於一延遲時間後驅使該訊號產生單元5不對該開關單元3輸入該驅動電壓以使該開關單元3變換至該斷路狀態。於本實施例中,該預定時間為3秒,該預設電壓為0VDC,該延遲時間為1秒,但並不以此為限,而可視需求進行調整,另外,在另一種實施態樣中,該預定時間為1秒,也可以是每隔該預定時間就判斷一次電壓大小,當連續三次的電壓大小是呈下降趨勢且最後一次的電壓大小是下降至該預設電壓時,驅使該使該開關單元3變換至該斷路狀態。要說明的是,當電壓下降至該預設電壓時,是代表該第一輸出端子221及該第二輸出端子222兩者之後的電路短路,因此需要該開關單元3變換至該斷路狀態以進行檢修。It should be noted that the
如此一來,當該轉換電訊號的電壓大小產生異常的下降狀況時,可能是線路毀損或該太陽能板模組91損壞時,就能切換使該開關單元3變換至該斷路狀態,以確保整個系統的安全,並供維運人員進行維護。In this way, when the voltage of the converted electrical signal has an abnormal drop, it may be that the circuit is damaged or the
綜上所述,藉由設置該開關單元3、該溫度量測單元4、該訊號產生單元5、該電能檢測單元6及該控制單元7,而能夠檢測是否發生火災,並於火災發生時能停止傳輸該轉換電訊號,避免災害擴大,以及於該轉換電訊號的電壓大小產生異常的下降狀況時能停止傳輸該轉換電訊號,以確保整個系統的安全,故確實能達成本發明之目的。To sum up, by providing the
惟以上所述者,僅為本發明之實施例而已,當不能以此限定本發明實施之範圍,凡是依本發明申請專利範圍及專利說明書內容所作之簡單的等效變化與修飾,皆仍屬本發明專利涵蓋之範圍內。However, the above are only examples of the present invention. When the scope of implementation of the present invention cannot be limited by this, all simple equivalent changes and modifications made in accordance with the scope of the patent application of the present invention and the content of the patent specification still belong to This invention patent covers the scope.
21:輸入單元 211:第一輸入端子 212:第二輸入端子 22:輸出單元 221:第一輸出端子 222:第二輸出端子 3:開關單元 4:溫度量測單元 5:訊號產生單元 6:電能檢測單元 7:控制單元 8:收發單元 91:太陽能板模組 92:伺服器 21: Input unit 211: The first input terminal 212: second input terminal 22: output unit 221: The first output terminal 222: second output terminal 3: Switch unit 4: Temperature measurement unit 5: Signal generation unit 6: Power detection unit 7: Control unit 8: Transceiver unit 91: Solar Panel Module 92: server
本發明之其他的特徵及功效,將於參照圖式的實施方式中清楚地呈現,其中: 圖1是一現有的配電系統的一配電示意圖;及 圖2本發明太陽能智慧防災斷路器的一實施例的一示意圖。Other features and effects of the present invention will be clearly presented in the embodiments with reference to the drawings, in which: Figure 1 is a schematic diagram of an existing power distribution system; and Fig. 2 is a schematic diagram of an embodiment of the solar smart disaster prevention circuit breaker of the present invention.
21:輸入單元 21: Input unit
211:第一輸入端子 211: The first input terminal
212:第二輸入端子 212: second input terminal
22:輸出單元 22: output unit
221:第一輸出端子 221: The first output terminal
222:第二輸出端子 222: second output terminal
3:開關單元 3: Switch unit
4:溫度量測單元 4: Temperature measurement unit
5:訊號產生單元 5: Signal generation unit
6:電能檢測單元 6: Power detection unit
7:控制單元 7: Control unit
8:收發單元 8: Transceiver unit
91:太陽能板模組 91: Solar Panel Module
92:伺服器 92: server
Claims (4)
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW107140381 | 2018-11-14 | ||
TW107140381 | 2018-11-14 |
Publications (2)
Publication Number | Publication Date |
---|---|
TW202019043A TW202019043A (en) | 2020-05-16 |
TWI706617B true TWI706617B (en) | 2020-10-01 |
Family
ID=71895825
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
TW108103112A TWI706617B (en) | 2018-11-14 | 2019-01-28 | Solar Smart Disaster Prevention Circuit Breaker |
Country Status (1)
Country | Link |
---|---|
TW (1) | TWI706617B (en) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI748552B (en) * | 2020-07-08 | 2021-12-01 | 力瑪科技股份有限公司 | Solar DC feeder disaster prevention system |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWM426214U (en) * | 2011-10-31 | 2012-04-01 | Tsint | Solar-energy air supply system with power feedback function |
US20130188285A1 (en) * | 2012-01-19 | 2013-07-25 | Delta Electronics, Inc. | Method of operating integrated circuit breaker module for solar power system |
CN104052036A (en) * | 2014-06-13 | 2014-09-17 | 遵义长征电器开关设备有限责任公司 | Intelligent controller used for intelligent low-voltage breaker |
CN105934858A (en) * | 2013-12-04 | 2016-09-07 | 伊顿工业(荷兰)有限公司 | Automatic reclosing alternating current circuit breaker |
CN106663577A (en) * | 2014-06-20 | 2017-05-10 | 伊顿工业(奥地利)有限公司 | Circuit breaker |
CN207164137U (en) * | 2017-07-06 | 2018-03-30 | 上海佳岚智能科技有限公司 | Intelligent breaker |
-
2019
- 2019-01-28 TW TW108103112A patent/TWI706617B/en active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWM426214U (en) * | 2011-10-31 | 2012-04-01 | Tsint | Solar-energy air supply system with power feedback function |
US20130188285A1 (en) * | 2012-01-19 | 2013-07-25 | Delta Electronics, Inc. | Method of operating integrated circuit breaker module for solar power system |
CN105934858A (en) * | 2013-12-04 | 2016-09-07 | 伊顿工业(荷兰)有限公司 | Automatic reclosing alternating current circuit breaker |
CN104052036A (en) * | 2014-06-13 | 2014-09-17 | 遵义长征电器开关设备有限责任公司 | Intelligent controller used for intelligent low-voltage breaker |
CN106663577A (en) * | 2014-06-20 | 2017-05-10 | 伊顿工业(奥地利)有限公司 | Circuit breaker |
CN207164137U (en) * | 2017-07-06 | 2018-03-30 | 上海佳岚智能科技有限公司 | Intelligent breaker |
Also Published As
Publication number | Publication date |
---|---|
TW202019043A (en) | 2020-05-16 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US8933321B2 (en) | Systems and methods for an enhanced watchdog in solar module installations | |
CN103916074B (en) | Closing system and method for photovoltaic system | |
JP5542942B2 (en) | Grounding device | |
US20140191589A1 (en) | Safety device for a photovoltaic system | |
JP2013534125A (en) | Method and photovoltaic installation for limiting the generator voltage of photovoltaic installations in hazardous situations | |
US20160211797A1 (en) | Photovoltaic power generation system and shut-down device | |
US10411459B2 (en) | Photovoltaic power generation system and method for shutting down the same | |
CN204597784U (en) | Testing circuit and there is the three-phase alternating current/AC power conversion equipment of testing circuit | |
US9735777B2 (en) | Disconnection of solar modules | |
CN105021977A (en) | AC relay detection method and system before grid connection of photovoltaic inverter | |
CN103683188B (en) | The safety detection device of solar inverter | |
JP2016208635A (en) | Protection system and protection method | |
CN104953546A (en) | Protection detection device for photovoltaic assembly or power system as well as control method of protection detection device | |
CN204835488U (en) | A protection detection device for photovoltaic module or electrical power generating system | |
TWI706617B (en) | Solar Smart Disaster Prevention Circuit Breaker | |
KR20120086558A (en) | Solar power generation system with monitoring and neutral line replacement | |
TWI737547B (en) | Solar DC feeder disaster prevention system | |
CN108896808A (en) | A kind of alternating current outage detection device | |
JP2022016352A (en) | Photovoltaic generation dc feed line disaster prevention system | |
WO2020068024A2 (en) | The smart circuit breaker for grid connected residential photovoltaic systems | |
CN116436114A (en) | Energy storage system and electric leakage fault positioning method thereof | |
CN103311921B (en) | A kind of power supply entering line switch and bus connection switch interlock connection circuit | |
TWM636645U (en) | Solar energy monitoring shutoff device with high-voltage DC input capability and one-to-many connecting function | |
TWI748552B (en) | Solar DC feeder disaster prevention system | |
KR101030925B1 (en) | Solar power generation system with monitoring and neutral line replacement |