TW201351903A - Power line communication control system - Google Patents
Power line communication control system Download PDFInfo
- Publication number
- TW201351903A TW201351903A TW102117760A TW102117760A TW201351903A TW 201351903 A TW201351903 A TW 201351903A TW 102117760 A TW102117760 A TW 102117760A TW 102117760 A TW102117760 A TW 102117760A TW 201351903 A TW201351903 A TW 201351903A
- Authority
- TW
- Taiwan
- Prior art keywords
- power line
- line communication
- load
- signal
- control system
- Prior art date
Links
Landscapes
- Cable Transmission Systems, Equalization Of Radio And Reduction Of Echo (AREA)
- Remote Monitoring And Control Of Power-Distribution Networks (AREA)
Abstract
Description
本發明是有關於一種電力線通訊控制系統,特別是指一種兼具節省功耗及相容於現有電器負載的電力線通訊(Power Line Communication)控制系統。 The invention relates to a power line communication control system, in particular to a power line communication control system which has both power consumption and compatibility with existing electrical loads.
電力線通訊控制系統是近年來熱門的控制技術,優點是利用現有的電力線就可進行控制,但是用來控制發光裝置或一般電器時,會有下述問題: The power line communication control system is a popular control technology in recent years. The advantage is that it can be controlled by using the existing power line. However, when used to control a light-emitting device or a general electric appliance, there are the following problems:
1.抗干擾能力弱:若是同時傳輸市電及電力線通訊載波,電力線通訊載波容易受到其他電器設備產生的雜訊干擾。 1. The anti-interference ability is weak: if the mains and power line communication carriers are transmitted at the same time, the power line communication carrier is easily interfered by the noise generated by other electrical equipment.
2.與現有電器設備相容性差:若是同時傳輸市電及電力線通訊載波,對於電器設備的整體功率因素會有很大的影響,現有的電器設備,如調光電路的設計必須大幅修改以克服此問題。 2. Poor compatibility with existing electrical equipment: If the mains and power line communication carriers are transmitted at the same time, the overall power factor of the electrical equipment will have a great impact. The design of existing electrical equipment, such as dimming circuits, must be greatly modified to overcome this. problem.
3.節能效果差:一般室內電力線系統的等效阻抗約2至10歐姆,傳統的電力線通訊數據機(PLC modem)在這樣的低阻抗環境中傳輸信號的輸出電流相當大,整體功耗很高。 3. Poor energy saving effect: The equivalent impedance of the general indoor power line system is about 2 to 10 ohms. The traditional power line communication modem (PLC modem) transmits a large amount of output current in such a low impedance environment, and the overall power consumption is high. .
因此,如何實現電力線通訊控制系統提高抗干擾能力、與現有電器設備的相容性及提高節能效果,是一重要的課題。 Therefore, how to realize the power line communication control system to improve anti-interference ability, compatibility with existing electrical equipment and improve energy-saving effect is an important issue.
因此,本發明之目的,即在提供一種兼具節省功耗及相容於現有電器負載的電力線通訊控制系統。 Accordingly, it is an object of the present invention to provide a power line communication control system that is both power efficient and compatible with existing electrical loads.
本發明的電力線通訊控制系統耦接於一電力線及一負載之間,該電力線載有一來自市電的交流電信號,其特徵在於:該電力線通訊控制系統具有一基本控制器,該基本控制器包括一控制單元、一耦合電路及一隔離元件,控制單元產生一電力線通訊載波;耦合電路電性連接於控制單元及負載之間,以耦合及傳輸電力線通訊載波予負載;隔離元件電性連接於電力線及負載之間,避免該交流電信號干擾控制單元及負載之間的電力線通訊載波訊號,同時避免此電力線通訊載波訊號干擾其他通訊設備。 The power line communication control system of the present invention is coupled between a power line and a load, the power line carrying an alternating current signal from the mains, wherein the power line communication control system has a basic controller, and the basic controller includes a a control unit, a coupling circuit and an isolation component, the control unit generates a power line communication carrier; the coupling circuit is electrically connected between the control unit and the load to couple and transmit the power line communication carrier to the load; the isolation component is electrically connected to the power line and Between the loads, the AC signal is prevented from interfering with the power line communication carrier signal between the control unit and the load, and the power line communication carrier signal is prevented from interfering with other communication devices.
較佳的,該隔離元件是一方向耦合器、一大電感元件、一扼流電感器,或一低通濾波器。 Preferably, the isolation element is a directional coupler, a large inductive component, a choke inductor, or a low pass filter.
本發明的第二實施例的電力線通訊控制系統中,該隔離元件是一開關元件,該開關元件電性連接於該電力線及該負載之間;該控制單元控制該開關元件交替於一截止期間關閉及一導通期間開啟,而使得該交流電信號於該導通期間導通輸出一交流電壓載波予該負載,並於該截止期間不導通該交流電信號且傳輸一電力線通訊載波予該負載。 In the power line communication control system of the second embodiment of the present invention, the isolation element is a switching element electrically connected between the power line and the load; the control unit controls the switching element to be turned off alternately during an off period And turning on during the conducting period, so that the alternating current signal turns on and outputs an alternating voltage carrier to the load during the conducting period, and does not turn on the alternating current signal and transmits a power line communication carrier to the load during the off period.
較佳的,該開關元件是一三端雙向可控開關。該控制模組還可包括一無線傳輸單元、一控制單元及一耦合單元,該無線傳輸單元電性連接該控制單元並接收一載有一控制指令的無線信號予該控制單元,令該控制單元依據該控制指令形成該電力線通訊載波,且由該耦合單元傳輸該電力線通訊載波予該負載。 Preferably, the switching element is a three-terminal bidirectional controllable switch. The control module may further include a wireless transmission unit, a control unit and a coupling unit. The wireless transmission unit is electrically connected to the control unit and receives a wireless signal carrying a control command to the control unit, so that the control unit is based on the control unit. The control command forms the power line communication carrier, and the power line communication carrier is transmitted by the coupling unit to the load.
較佳的,所述電力線通訊控制系統還包括多數個基本控制器及一總控制器,該總控制器藉由該電力線連接連接各該基本控制器,令各該開關元件受該總控制器控制。 Preferably, the power line communication control system further includes a plurality of basic controllers and a total controller, wherein the total controller is connected to each of the basic controllers by the power line connection, so that the switching elements are controlled by the overall controller. .
較佳的,所述電力線通訊控制系統還包括多數個基本控制器、一電力量測儀表及一主開關,該電力量測儀表配合該主開關的切換電力以監控各個負載的用電量。 Preferably, the power line communication control system further includes a plurality of basic controllers, a power measuring instrument and a main switch, and the power measuring instrument cooperates with the switching power of the main switch to monitor the power consumption of each load.
本發明的第三實施例的電力線通訊控制系統耦接於一電力線及一負載之間,該電力線載有一來自市電的交流電信號,該電力線通訊控制系統包含一主控制模組及一副控制模組。該主控制模組具有一開關元件、一第一控制單元及一第一耦合單元,該開關元件電性連接於該電力線及該負載之間;該第一控制單元控制該開關元件交替於一截止期間關閉及一導通期間開啟,使得該交流電信號於該導通期間導通輸出,以及於該截止期間不導通該交流電信號但輸出一電力線通訊載波,藉由該第一耦合單元輸出給該副控制模組。該副控制模組包括一分歧線路、一第二耦合電路、一轉換電路及一第二控制單元;該第二耦合電 路及該轉換電路分別接收該整合信號;該轉換電路利用該整合信號的交流電壓載波轉換出該負載所需的轉換電壓並供應給該負載;該第二耦合電路自該整合信號耦合出該電力線通訊載波予該第二控制單元以控制該負載的相關運作。 The power line communication control system of the third embodiment of the present invention is coupled between a power line and a load, the power line carries an alternating current signal from the mains, and the power line communication control system includes a main control module and a pair of control modes. group. The main control module has a switching element, a first control unit and a first coupling unit. The switching element is electrically connected between the power line and the load. The first control unit controls the switching element to alternate with a cutoff. During the off period and during the on period, the alternating current signal is turned on during the on period, and the alternating current signal is not turned on during the off period but a power line communication carrier is outputted, and the first coupling unit outputs the sub control Module. The sub-control module includes a branch line, a second coupling circuit, a conversion circuit and a second control unit; the second coupling circuit And the conversion circuit respectively receives the integrated signal; the conversion circuit converts a conversion voltage required by the load to the load by using an AC voltage carrier of the integrated signal; and the second coupling circuit couples the power line from the integrated signal The communication carrier is supplied to the second control unit to control the related operation of the load.
較佳的,該主控制模組還包括一無線傳輸單元,該無線傳輸單元電性連接該第一控制單元並接收一載有一控制指令的無線信號予該第一控制單元,令該第一控制單元依據該控制指令形成該電力線通訊載波。該轉換電路是一整流電路。 Preferably, the main control module further includes a wireless transmission unit, the wireless transmission unit is electrically connected to the first control unit and receives a wireless signal carrying a control command to the first control unit, so that the first control The unit forms the power line communication carrier according to the control instruction. The conversion circuit is a rectifier circuit.
本發明的電力線通訊控制系統耦接於一電力線及一負載之間,該電力線載有一直流電信號;其特徵在於:該電力線通訊控制系統具有一基本控制器,該基本控制器包括:一控制單元,產生一電力線通訊載波;一耦合電路,電性連接於該控制單元及該負載之間,以耦合及傳輸該電力線通訊載波予該負載;及一隔離元件,電性連接於該電力線及該負載之間,避免該直流電信號干擾該控制單元及該負載之間的電力線通訊載波訊號,同時避免此電力線通訊載波訊號干擾其他通訊設備。 The power line communication control system of the present invention is coupled between a power line and a load, the power line carrying a DC signal; wherein the power line communication control system has a basic controller, and the basic controller includes: a control unit, Generating a power line communication carrier; a coupling circuit electrically connected between the control unit and the load to couple and transmit the power line communication carrier to the load; and an isolation component electrically connected to the power line and the load In the meantime, the DC signal is prevented from interfering with the power line communication carrier signal between the control unit and the load, and the power line communication carrier signal is prevented from interfering with other communication devices.
較佳的,該隔離元件是一方向耦合器、一大電感元件、一扼流電感器,或一低通濾波器。 Preferably, the isolation element is a directional coupler, a large inductive component, a choke inductor, or a low pass filter.
本發明的電力線通訊控制系統之功效在於: The power line communication control system of the present invention has the following effects:
1.抗干擾能力強:本發明的電力線通訊控制系統的電力線通訊載波只被侷限在隔離元件跟電器負載之 間,電磁干擾可以降到最低,同時避免此電力線通訊載波訊號干擾其他通訊設備。 1. Strong anti-interference ability: The power line communication carrier of the power line communication control system of the present invention is only limited to the isolation component and the electrical load. Between, electromagnetic interference can be minimized, while avoiding this power line communication carrier signal interferes with other communication devices.
2.與現有電器設備相容性佳:一般的電器設備利用本發明的電力線通訊控制系統,若是開關控制方式的隔離元件可在市電交流電的零交越點的附近斷開的瞬間傳輸電力線通訊載波,對於電器設備的整體功率因素也不會有太大的影響,因此對於現有的電器設備的控制電路有很好的相容性。 2. Good compatibility with existing electrical equipment: General electrical equipment utilizes the power line communication control system of the present invention, and if the isolation control element of the switch control mode can transmit the power line communication carrier at the instant of disconnection near the zero crossing point of the commercial alternating current It does not have much influence on the overall power factor of electrical equipment, so it has good compatibility with the control circuit of existing electrical equipment.
3.節能效果佳:本發明的電力線通訊控制系統是若是開關控制方式的隔離元件在傳輸電力線通訊載波之前先與電力系統斷開,在傳輸瞬間的導體阻抗相當高,因此可以降低整體功耗,對於節能系統是一大助益。 3. The energy saving effect is good: the power line communication control system of the present invention is that if the isolation control element of the switch control mode is disconnected from the power system before transmitting the power line communication carrier, the conductor impedance at the moment of transmission is relatively high, thereby reducing the overall power consumption. It is a big help for energy-saving systems.
100、200、500、700‧‧‧電力線通訊控制系統 100, 200, 500, 700‧‧‧Power Line Communication Control System
101、501‧‧‧電力線 101, 501‧‧‧ power line
1‧‧‧基本控制器 1‧‧‧Basic controller
10‧‧‧控制單元 10‧‧‧Control unit
11、51、814‧‧‧隔離元件 11, 51, 814‧‧‧ isolation components
110‧‧‧控制模組 110‧‧‧Control Module
12‧‧‧耦合電路 12‧‧‧Coupling circuit
13、53‧‧‧無線傳輸單元 13, 53‧‧‧ Wireless transmission unit
201‧‧‧交流電信號 201‧‧‧AC signal
202、401‧‧‧交流電壓載波 202, 401‧‧‧ AC voltage carrier
203、402‧‧‧電力線通訊載波 203, 402‧‧‧Power line communication carrier
204‧‧‧輸出電流 204‧‧‧Output current
3、7‧‧‧負載 3, 7‧‧‧ load
31‧‧‧輸出端 31‧‧‧ Output
400‧‧‧整合信號 400‧‧‧ integrated signal
4‧‧‧主控制電路 4‧‧‧Main control circuit
41‧‧‧主控制器 41‧‧‧Master controller
42‧‧‧耦合電路 42‧‧‧Coupling circuit
5‧‧‧主控制模組 5‧‧‧Main control module
50‧‧‧第一控制單元 50‧‧‧First Control Unit
51‧‧‧主開關電路 51‧‧‧Main switch circuit
52‧‧‧第一耦合單元 52‧‧‧First coupling unit
53‧‧‧無線傳輸單元 53‧‧‧Wireless transmission unit
6‧‧‧副控制模組 6‧‧‧Sub Control Module
60‧‧‧第二控制單元 60‧‧‧Second Control Unit
61‧‧‧第二耦合電路 61‧‧‧Second coupling circuit
62‧‧‧轉換電路 62‧‧‧Transition circuit
65‧‧‧電力量測儀表 65‧‧‧Power measuring instrument
8‧‧‧遙控器 8‧‧‧Remote control
81‧‧‧副控制電路 81‧‧‧Sub Control Circuit
811‧‧‧副控制器 811‧‧‧Sub Controller
812‧‧‧輸入側耦合電路 812‧‧‧Input side coupling circuit
813‧‧‧輸出側耦合電路 813‧‧‧Output side coupling circuit
82‧‧‧受控裝置 82‧‧‧Controlled device
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是說明本發明電力線通訊控制系統的系統方塊圖;圖2是說明本發明電力線通訊控制系統的一實施例的電路方塊圖;圖3是說明圖2的交流電信號及輸出電壓的波形示意圖;圖4是說明本發明電力線通訊控制系統的另一實施例的電路方塊圖;圖5是說明圖4的交流電信號、交流電壓載波及電力線通訊載波的整合信號,及輸出電流的波形圖; 圖6是說明本發明電力線通訊控制系統的又一實施例的電路方塊圖;圖7是說明圖6的交流電壓載波及電力線通訊載波的整合信號的波形圖;圖8是說明本發明電力線通訊控制系統的再一實施例的電路方塊圖。 Other features and advantages of the present invention will be apparent from the embodiments of the present invention. FIG. 1 is a system block diagram illustrating the power line communication control system of the present invention. FIG. 2 is a diagram illustrating the power line communication control system of the present invention. FIG. 3 is a circuit block diagram illustrating another embodiment of the power line communication control system of the present invention; FIG. 5 is an explanatory diagram of the circuit diagram of the power line communication control system of the present invention; 4 AC signal, AC voltage carrier and integrated signal of power line communication carrier, and waveform diagram of output current; 6 is a circuit block diagram showing still another embodiment of the power line communication control system of the present invention; FIG. 7 is a waveform diagram illustrating an integrated signal of the AC voltage carrier and the power line communication carrier of FIG. 6; and FIG. 8 is a diagram illustrating the power line communication control of the present invention. A circuit block diagram of still another embodiment of the system.
在本發明被詳細描述之前,應當注意在以下的說明內容中,類似的元件是以相同的編號來表示。 Before the present invention is described in detail, it should be noted that in the following description, similar elements are denoted by the same reference numerals.
下面結合附圖及數個實施例對本發明進行詳細說明:在本發明被詳細描述之前,要注意的是,在以下的說明內容中,類似的元件是以相同的編號來表示。 The present invention will be described in detail with reference to the accompanying drawings, in which: FIG.
參閱圖1及圖2,本發明的電力線通訊控制系統100耦接於一電力線101及一負載3之間,該電力線101載有一來自市電的交流電信號201。電力線通訊控制系統100具有一基本控制器1,該基本控制器1包括一隔離元件11,及一控制模組110,控制模組110具有一控制單元10、一耦合電路12及一無線傳輸單元13,且可接收一遙控器8的一無線信號控制負載3。 Referring to FIG. 1 and FIG. 2, the power line communication control system 100 of the present invention is coupled between a power line 101 and a load 3, and the power line 101 carries an AC signal 201 from the mains. The power line communication control system 100 has a basic controller 1 including an isolation component 11 and a control module 110. The control module 110 has a control unit 10, a coupling circuit 12 and a wireless transmission unit 13. And receiving a wireless signal control load 3 of a remote controller 8.
無線傳輸單元13電性連接控制單元10,可接收來自遙控器8的無線信號予控制單元10,無線信號內載有一控制指令,控制單元10就是依據該控制指令形成一電力線通訊載波203,且由耦合單元12耦合及傳輸該電力線通 訊載波203予負載3。其他實施例中,亦可將該無線傳輸單元13以一網路(Ethernet)傳輸單元(如:無線網路介面)取代,該網路傳輸單元接收載有該控制指令的網路信號予該控制單元10,亦屬於本發明的範疇。 The wireless transmission unit 13 is electrically connected to the control unit 10, and can receive the wireless signal from the remote controller 8 to the control unit 10. The wireless signal carries a control command, and the control unit 10 forms a power line communication carrier 203 according to the control command, and Coupling unit 12 couples and transmits the power line The carrier 203 is preloaded to the load 3. In other embodiments, the wireless transmission unit 13 may be replaced by an Ethernet transmission unit (eg, a wireless network interface), and the network transmission unit receives the network signal carrying the control command to the control. Unit 10 is also within the scope of the invention.
控制單元10產生一電力線通訊載波203;耦合電路12電性連接於控制單元10及負載3之間,以耦合及傳輸電力線通訊載波203予負載3。 The control unit 10 generates a power line communication carrier 203. The coupling circuit 12 is electrically connected between the control unit 10 and the load 3 to couple and transmit the power line communication carrier 203 to the load 3.
參閱圖2,隔離元件11電性連接於電力線101及負載3之間,阻斷該電力線通訊載波203以避免該交流電信號201干擾控制單元10及負載3之間的電力線通訊載波訊號203,同時避免此電力線通訊載波訊號203干擾其他通訊設備。較佳的,該隔離元件11可以是(但不限於)是一方向耦合器、一大電感元件、一扼流(Choke)電感器或一低通濾波器,只要是可以隔離(阻絕)高頻(如:300KHz)的電力線通訊載波訊號203,但可通過低頻訊號(如:60Hz)的主動或被動元件,皆屬於本發明的範疇。 Referring to FIG. 2, the isolation component 11 is electrically connected between the power line 101 and the load 3, and blocks the power line communication carrier 203 to prevent the AC signal 201 from interfering with the power line communication carrier signal 203 between the control unit 10 and the load 3. Avoid this power line communication carrier signal 203 from interfering with other communication devices. Preferably, the isolation component 11 can be, but is not limited to, a directional coupler, a large inductive component, a choke inductor, or a low pass filter, as long as it can isolate (block) the high frequency. The power line communication carrier signal 203 (e.g., 300 kHz), but active or passive components that can pass low frequency signals (e.g., 60 Hz) are within the scope of the present invention.
參閱圖3,說明圖1的輸入電壓Vin為交流電信號201,且隔離元件11及耦合電路12共同電性連接的一輸出端31(如圖2)的輸出電壓Vout供應給負載3,且該輸出端31的輸出電壓Vout為載有交流電信號201及電力線通訊載波訊號203,須說明的是,交流電信號201除了峰值之處或零交越點之處也可以出現其他地方,不以出現在峰值之處或零交越點之處為限制。 Referring to FIG. 3, the input voltage Vin of FIG. 1 is an alternating current signal 201, and the output voltage Vout of an output terminal 31 (FIG. 2) electrically connected to the isolation component 11 and the coupling circuit 12 is supplied to the load 3, and The output voltage Vout of the output terminal 31 is an alternating current signal 201 and a power line communication carrier signal 203. It should be noted that the alternating current signal 201 may appear elsewhere except for the peak or zero crossing point. There is now a limit at the peak or zero crossing point.
補充說明的是,若將圖2的電力線101載有的 交流電信號201改變為直流電信號(如:車用直流電源),則可利用類似圖2的電路架構及原理,選用適當的隔離元件以避免直流電信號干擾控制單元10及負載3之間的電力線通訊載波訊號203,同時避免此電力線通訊載波訊號203干擾其他通訊設備。 It is added that if the power line 101 of FIG. 2 is carried When the AC signal 201 is changed to a DC signal (for example, a DC power supply for a vehicle), an appropriate isolation component can be selected using a circuit structure and principle similar to that of FIG. 2 to prevent the DC signal from interfering with the power line communication between the control unit 10 and the load 3. The carrier signal 203 prevents the power line communication carrier signal 203 from interfering with other communication devices.
參閱圖4,本發明的另一實施例中,電力線通訊控制系統200耦接於一電力線101及一負載3之間,且可接收一遙控器8的一無線信號控制負載3的開關動作。 Referring to FIG. 4, in another embodiment of the present invention, the power line communication control system 200 is coupled between a power line 101 and a load 3, and can receive a wireless signal of a remote controller 8 to control the switching action of the load 3.
電力線101包括一火線(L)及一地線(N),且火線載有一來自市電的交流電信號201,負載3是一可受電力線通訊載波控制的電子式發光裝置,或其他例如電表、電力模組等電子設備。 The power line 101 includes a live line (L) and a ground line (N), and the live line carries an alternating current signal 201 from the mains. The load 3 is an electronic light-emitting device that can be controlled by the power line communication carrier, or other such as an electric meter or electric power. Electronic equipment such as modules.
電力線通訊控制系統200具有一基本控制器1,該基本控制器1包括一隔離元件11及一控制模組110;控制模組110包括一無線傳輸單元13、一控制單元10及一耦合單元12,各元件動作原理介紹如下。 The power line communication control system 200 has a basic controller 1 including an isolation component 11 and a control module 110. The control module 110 includes a wireless transmission unit 13, a control unit 10, and a coupling unit 12. The principle of operation of each component is described below.
隔離元件11電性連接於電力線101及負載3之間,本實施例是一三端雙向可控開關,可受控制模組110的調控產生一交流電壓載波202。 The isolation component 11 is electrically connected between the power line 101 and the load 3. In this embodiment, a three-terminal bidirectional controllable switch can be generated by the control module 110 to generate an AC voltage carrier 202.
無線傳輸單元13電性連接控制單元10,可接收來自遙控器8的無線信號予控制單元10,無線信號內載有一控制指令,控制單元10就是依據該控制指令形成一電力線通訊載波203,且由耦合單元12耦合及傳輸該電力線通訊載波203予負載3。其他實施例中,亦可將該無線傳輸單 元13以一網路(Ethernet)傳輸單元(如:無線網路介面)取代,該網路傳輸單元接收載有該控制指令的網路信號予該控制單元10,亦屬於本發明的範疇。 The wireless transmission unit 13 is electrically connected to the control unit 10, and can receive the wireless signal from the remote controller 8 to the control unit 10. The wireless signal carries a control command, and the control unit 10 forms a power line communication carrier 203 according to the control command, and The coupling unit 12 couples and transmits the power line communication carrier 203 to the load 3. In other embodiments, the wireless transmission list can also be The element 13 is replaced by an Ethernet transmission unit (e.g., a wireless network interface), and the network transmission unit receives the network signal carrying the control command to the control unit 10, which is also within the scope of the present invention.
參閱圖5,並配合圖4,控制單元10可控制隔離元件11交替於一截止期間t1關閉及一導通期間t2開啟,而使得交流電信號201於導通期間t2導通形成交流電壓載波202而輸出予負載3,並於截止期間t1使得交流電信號201不導通且傳輸電力線通訊載波203予負載3;因此,負載3可收到交流電壓載波202及電力線通訊載波203的整合信號,且整合信號中的電力線通訊載波203的傳輸時間是在交流電壓載波202的零交越(zero crossing)點附近,負載3收到的輸入電流204。 Referring to FIG. 5, and in conjunction with FIG. 4, the control unit 10 can control the isolation element 11 to be turned off alternately during an off period t1 and during an on period t2, so that the alternating current signal 201 is turned on during the on period t2 to form an alternating voltage carrier 202 for output. The load 3 is such that the alternating current signal 201 is not turned on during the off period t1 and the power line communication carrier 203 is transmitted to the load 3; therefore, the load 3 can receive the integrated signal of the alternating voltage carrier 202 and the power line communication carrier 203, and the integrated signal The transmission time of the power line communication carrier 203 is the input current 204 received by the load 3 near the zero crossing point of the AC voltage carrier 202.
參閱圖6,本發明的又一實施例中,電力線通訊控制系統500耦接於一電力線501及一負載7之間,且可接收一遙控器8的一無線信號以調控負載7的開關動作。電力線501包括一火線(L)及一地線(N),且火線載有一來自市電的交流電信號,負載7是一可受電力線通訊載波控制的電器裝置。電力線通訊控制系統500包含一主控制模組5及一副控制模組6,介紹各元件原理如下。 Referring to FIG. 6, in another embodiment of the present invention, the power line communication control system 500 is coupled between a power line 501 and a load 7, and can receive a wireless signal of a remote controller 8 to regulate the switching action of the load 7. The power line 501 includes a live line (L) and a ground line (N), and the live line carries an alternating current signal from the mains, and the load 7 is an electrical device that can be controlled by the power line communication carrier. The power line communication control system 500 includes a main control module 5 and a sub-control module 6. The principle of each component is as follows.
主控制模組5具有一第一控制單元50、一隔離元件51、一第一耦合單元52及一無線傳輸單元53;隔離元件51電性連接於電力線501及副控制模組6之間,交流電信號可受第一控制單元50的調控而產生一交流電壓載波401;無線傳輸單元53電性連接第一控制單元50並接收含 有控制指令的無線信號予第一控制單元50,令第一控制單元50依據控制指令形成一電力線通訊載波402;因此,副控制模組6可收到一含有該交流電壓載波401及電力線通訊載波402的整合信號400。 The main control module 5 has a first control unit 50, an isolation component 51, a first coupling unit 52 and a wireless transmission unit 53. The isolation component 51 is electrically connected between the power line 501 and the sub-control module 6, and communicates. The electrical signal can be controlled by the first control unit 50 to generate an AC voltage carrier 401; the wireless transmission unit 53 is electrically connected to the first control unit 50 and receives the The wireless signal having the control command is sent to the first control unit 50, so that the first control unit 50 forms a power line communication carrier 402 according to the control command; therefore, the secondary control module 6 can receive the AC voltage carrier 401 and the power line communication carrier. The integrated signal 400 of 402.
副控制模組6包括一第二控制單元60、一第二耦合電路61及一轉換電路62;第二耦合電路61及轉換電路62分別接收整合信號400;轉換電路62是一整流電路,利用該整合信號的交流電壓載波401轉換出負載7所需的轉換電壓403(如:將交流電源整流為直流電源)並供應給負載7;第二耦合電路61自整合信號400耦合出電力線通訊載波402予第二控制單元60以控制負載7的相關運作;例如:自動定時開啟或自動定時關閉。 The sub-control module 6 includes a second control unit 60, a second coupling circuit 61 and a conversion circuit 62. The second coupling circuit 61 and the conversion circuit 62 respectively receive the integrated signal 400. The conversion circuit 62 is a rectifier circuit. The AC voltage carrier 401 of the integrated signal converts the conversion voltage 403 required by the load 7 (eg, rectifies the AC power to a DC power supply) and supplies it to the load 7; the second coupling circuit 61 couples the power line communication carrier 402 from the integrated signal 400. The second control unit 60 controls the related operation of the load 7; for example, automatic timing on or automatic timing off.
參閱圖7,並配合圖6,第一控制單元50可控制隔離元件51交替於一截止期間t1關閉及一導通期間t2開啟,使得交流電信號於導通期間t2導通輸出交流電壓載波401,以及於該截止期間t1不導通交流電信號但輸出電力線通訊載波402,然後,藉由第一耦合單元52輸出一包含交流電壓載波401及電力線通訊載波402的整合信號400給副控制模組6。 Referring to FIG. 7 and in conjunction with FIG. 6, the first control unit 50 can control the isolation element 51 to be turned off alternately during an off period t1 and during an on period t2, so that the alternating current signal turns on the output AC voltage carrier 401 during the on period t2, and The off-period t1 does not conduct the AC signal but outputs the power line communication carrier 402. Then, the first coupling unit 52 outputs an integrated signal 400 including the AC voltage carrier 401 and the power line communication carrier 402 to the sub-control module 6.
參閱圖8,本發明的再一實施例的電力線通訊控制系統700包括一主控制電路4及受該主控制電路4控制的一副控制電路81,該副控制電路81用來調控一受控裝置82的開關功能,且副控制電路81及受控裝置82的數量可以是多數個。 Referring to FIG. 8, a power line communication control system 700 according to still another embodiment of the present invention includes a main control circuit 4 and a sub-control circuit 81 controlled by the main control circuit 4, the sub-control circuit 81 for regulating a controlled device. The switching function of 82, and the number of sub-control circuits 81 and controlled devices 82 may be a plurality.
電力線101的火線載有來自市電的交流電信號以供電給主控制電路4、副控制電路81及受控裝置82,受控裝置82是可受電力線通訊載波控制的燈類或非燈類的電器。 The live line of the power line 101 carries an alternating current signal from the mains to supply power to the main control circuit 4, the sub-control circuit 81 and the controlled device 82. The controlled device 82 is a lamp or non-light-type electric appliance that can be controlled by the power line communication carrier. .
主控制電路4包括一主控制器41及一耦合電路42,主控制器41依據一控制指令形成一電力線通訊載波,且由耦合單元42耦合及傳輸該電力線通訊載波予電力線101;副控制電路81包括一副控制器811、一輸入側耦合電路812、一輸出側耦合電路813及一隔離元件814,副控制器811藉由輸入側耦合電路812及輸出側耦合電路813電性連接於電力線101及受控裝置82之間,且隔離元件814電性連接於電力線101及受控裝置82之間,副控制器811控制隔離元件814交替於一截止期間關閉及一導通期間開啟,而使得交流電信號於導通期間導通形成交流電壓載波而輸出予受控裝置82,並於截止期間使得交流電信號不導通且傳輸電力線通訊載波予受控裝置82。 The main control circuit 4 includes a main controller 41 and a coupling circuit 42. The main controller 41 forms a power line communication carrier according to a control command, and the coupling unit 42 couples and transmits the power line communication carrier to the power line 101. The sub control circuit 81 The controller 811 includes an input side coupling circuit 812, an output side coupling circuit 813, and an isolation component 814. The sub controller 811 is electrically connected to the power line 101 by the input side coupling circuit 812 and the output side coupling circuit 813. Between the controlled devices 82, and the isolation device 814 is electrically connected between the power line 101 and the controlled device 82, the sub-controller 811 controls the isolation device 814 to be turned on alternately during an off period and during an on period to enable an alternating current signal. During the conduction period, the AC voltage carrier is turned on to output to the controlled device 82, and the AC signal is not turned on during the OFF period and the power line communication carrier is transmitted to the controlled device 82.
另外,電力控制設備700還可包含一主開關電路51及一電性連接該主開關電路51的電力量測儀表65,電力量測儀表65配合主開關電路51的切換電力,如果電力線101電連接多個受控裝置82,電力量測儀表65可藉由本發明的電力線通訊控制方式監控各個受控裝置81的用電量,並轉換為數據給用戶參考,所以也能達到監控用電量的效用。 In addition, the power control device 700 may further include a main switch circuit 51 and a power measuring instrument 65 electrically connected to the main switch circuit 51. The power measuring instrument 65 cooperates with the switching power of the main switch circuit 51, if the power line 101 is electrically connected. The plurality of controlled devices 82, the power measuring instrument 65 can monitor the power consumption of each controlled device 81 by the power line communication control method of the present invention, and convert the data into a reference for the user, so that the utility of monitoring the power consumption can also be achieved. .
綜上所述,本發明的電力線通訊控制系統100、 200、500、700具有下列優點: In summary, the power line communication control system 100 of the present invention, 200, 500, 700 have the following advantages:
1.與現有電器設備相容性佳:一般電器設備可利用本發明的電力線通訊控制系統100、200、500、700,在使用市電交流電的同時,傳輸電力線通訊載波給予電器設備的負載3、7或受控裝置82,整體功率因素也不會有太大的影響,因此對於現有的電器設備的控制電路有很好的相容性。 1. Compatibility with existing electrical equipment: General electrical equipment can utilize the power line communication control system 100, 200, 500, 700 of the present invention, and transmit power line communication carrier to the load of the electrical equipment 3, 7 while using the commercial alternating current. Or the controlled device 82, the overall power factor does not have much influence, so it has good compatibility with the control circuit of the existing electrical equipment.
2.抗干擾能力強:本發明的電力線通訊控制系統100的隔離元件11不通過電力線通訊載波203但通過交流電信號201以供給負載3;電力線通訊控制系統200、500、700的隔離元件11是在市電交流電斷開的截止期間傳送電力線通訊載波,因此電力線通訊載波只被侷限在隔離元件11、51、814跟電器的負載3、7或受控裝置82的之間,電磁干擾可以降到最低,同時避免此電力線通訊載波訊號干擾其他通訊設備。 2. Strong anti-interference ability: the isolation element 11 of the power line communication control system 100 of the present invention does not pass the power line communication carrier 203 but is supplied to the load 3 through the alternating current signal 201; the isolation element 11 of the power line communication control system 200, 500, 700 is The power line communication carrier is transmitted during the cutoff period of the mains AC disconnection, so the power line communication carrier is limited only between the isolation elements 11, 51, 814 and the load 3, 7 of the appliance or the controlled device 82, and the electromagnetic interference can be minimized. At the same time, avoid the power line communication carrier signal from interfering with other communication devices.
3.節能效果佳:本發明的電力線通訊控制系統100、200、500、700在傳輸電力線通訊載波時對交流電系統產生之干擾具有免疫力,因此可以降低整體通訊功耗,對於節省能源是一大助益,故確實能達到本發明的目的。 3. The energy saving effect is good: the power line communication control system 100, 200, 500, 700 of the present invention is immune to the interference generated by the alternating current system when transmitting the power line communication carrier, thereby reducing the overall communication power consumption, which is a great help for saving energy. It is beneficial to achieve the object of the present invention.
惟以上所述者,僅為本發明之較佳實施例而已,當不能以此限定本發明實施之範圍,即大凡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。 The above is only the preferred embodiment of the present invention, and the scope of the present invention is not limited thereto, that is, the simple equivalent changes and modifications made by the patent application scope and patent specification content of the present invention, All remain within the scope of the invention patent.
100‧‧‧電力線通訊控制系統 100‧‧‧Power Line Communication Control System
101‧‧‧電力線 101‧‧‧Power line
1‧‧‧基本控制器 1‧‧‧Basic controller
10‧‧‧控制單元 10‧‧‧Control unit
12‧‧‧耦合電路 12‧‧‧Coupling circuit
11‧‧‧隔離元件 11‧‧‧Isolation components
3‧‧‧負載 3‧‧‧load
Claims (13)
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2012101803484A CN103457634A (en) | 2012-06-04 | 2012-06-04 | Power line communication control system |
Publications (2)
Publication Number | Publication Date |
---|---|
TW201351903A true TW201351903A (en) | 2013-12-16 |
TWI477100B TWI477100B (en) | 2015-03-11 |
Family
ID=49739656
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
TW102117760A TW201351903A (en) | 2012-06-04 | 2013-05-20 | Power line communication control system |
Country Status (2)
Country | Link |
---|---|
CN (1) | CN103457634A (en) |
TW (1) | TW201351903A (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI552540B (en) * | 2015-04-02 | 2016-10-01 | 光壽科技有限公司 | Electric wire and communication control system |
TWI565250B (en) * | 2015-08-31 | 2017-01-01 | Amtb Tech | Method and device for maintaining the quality of power line communication carrier |
EP3399654A1 (en) * | 2017-05-02 | 2018-11-07 | AMTB Technology | Method for signal transmission via an electrical power transmission pathway, and signal transmission system using the same |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104360661A (en) * | 2014-11-19 | 2015-02-18 | 安徽省德诺电子科技有限公司 | Energy consumption monitoring terminal controller with wireless function |
CN106506040B (en) * | 2015-09-07 | 2019-05-10 | 光寿科技有限公司 | Keep the method and device of power line communication carrier-quality |
CN107994926B (en) * | 2017-12-29 | 2024-06-07 | 欧普照明股份有限公司 | Circuit and communication system for realizing signal transmission based on power carrier |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6441723B1 (en) * | 1999-11-15 | 2002-08-27 | General Electric Company | Highly reliable power line communications system |
TW200826529A (en) * | 2006-12-04 | 2008-06-16 | Tatung Co Ltd | Power line communication module and power system with a common group |
CN201589946U (en) * | 2009-07-31 | 2010-09-22 | 宁波家天下智能系统有限公司 | Household equipment control terminal |
CN101741428B (en) * | 2010-01-12 | 2013-09-11 | 国电龙源电气有限公司 | Electric line carrier communication circuit and modulating and demodulating methods thereof |
CN201966905U (en) * | 2010-08-09 | 2011-09-07 | 上海中朗通信技术有限公司 | Power line carrier communication module with optical fiber port |
CN202135124U (en) * | 2011-04-02 | 2012-02-01 | 辽宁电能发展股份有限公司 | Low pressure power line communication system and apparatus |
-
2012
- 2012-06-04 CN CN2012101803484A patent/CN103457634A/en active Pending
-
2013
- 2013-05-20 TW TW102117760A patent/TW201351903A/en unknown
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TWI552540B (en) * | 2015-04-02 | 2016-10-01 | 光壽科技有限公司 | Electric wire and communication control system |
TWI565250B (en) * | 2015-08-31 | 2017-01-01 | Amtb Tech | Method and device for maintaining the quality of power line communication carrier |
US10153756B2 (en) | 2015-08-31 | 2018-12-11 | AMTB Technology | Method for signal transmissions via a path through which electrical power is transmitted, and signal transmission system |
EP3399654A1 (en) * | 2017-05-02 | 2018-11-07 | AMTB Technology | Method for signal transmission via an electrical power transmission pathway, and signal transmission system using the same |
Also Published As
Publication number | Publication date |
---|---|
CN103457634A (en) | 2013-12-18 |
TWI477100B (en) | 2015-03-11 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US9071339B2 (en) | Closed-circuit power line communication | |
TW201351903A (en) | Power line communication control system | |
CN105122661B (en) | The light adjusting and controlling device and method of the amplitude variations for commonly using power supply are utilized in power line communication | |
CA2541323A1 (en) | Distributed floating series active impedances for power transmission systems | |
CN104467437A (en) | Low stand-by power consumption switching power supply | |
TWI565250B (en) | Method and device for maintaining the quality of power line communication carrier | |
CN201584818U (en) | Electric equipment control device | |
CN104124764B (en) | Wireless power transmission receiving terminal, system and method for reseptance | |
CN203466837U (en) | Network camera power supply device | |
WO2014176856A1 (en) | Method and system for wireless electric energy transmission | |
CN110120827A (en) | A kind of smart home Internet of Things bridge based on power carrier | |
JP2011234051A (en) | Power line communication system | |
CN203984262U (en) | A kind of power supply adaptor | |
CN108322051A (en) | A kind of inverse-excitation type switch power-supply | |
CN101556459B (en) | Intelligent electrical controller | |
CN209488581U (en) | A kind of data communication module | |
CN204290507U (en) | A kind of electricity getting device of ultra-high-tension power transmission line | |
CN203119759U (en) | Boost DC-DC converter | |
CN210626933U (en) | Blind wiring system | |
CN208782738U (en) | It is a kind of based on magnetic switch control distributed electrical source device, charging pile, charger, protection circuit device | |
CN206712663U (en) | Electric power system based on coaxial cable as power inverter loop long-distance transmissions line | |
CN204425056U (en) | wireless docking bathtub lamp system | |
CN101106332B (en) | A switch power device | |
CN204119015U (en) | The gate drive circuit of mesohigh power semiconductor convertor equipment | |
CN202444485U (en) | Power line network device |