CN203405948U - 360-degree study type infrared forwarding system based on carrier communication - Google Patents

360-degree study type infrared forwarding system based on carrier communication Download PDF

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Publication number
CN203405948U
CN203405948U CN201320386544.7U CN201320386544U CN203405948U CN 203405948 U CN203405948 U CN 203405948U CN 201320386544 U CN201320386544 U CN 201320386544U CN 203405948 U CN203405948 U CN 203405948U
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China
Prior art keywords
infrared
transponder
learning
module
repeater system
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Withdrawn - After Issue
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CN201320386544.7U
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Chinese (zh)
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崔健
胡云
闫建国
夏纯全
韩涛
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Qingdao Eastsoft Communication Technology Co Ltd
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Qingdao Eastsoft Communication Technology Co Ltd
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Abstract

The utility model relates to a 360-degree study type infrared forwarding system based on carrier communication. The 360-degree study type infrared forwarding system utilizes power line carrier communication as a communication manner, has the superiorities that the system can penetrate through walls and does not need to be wired and the like and simplifies the system integration of the infrared forwarding system. The 360-degree study type infrared forwarding system based on the carrier communication comprises infrared forwarding devices, a control terminal, a gateway and a server, wherein the infrared forwarding devices comprise infrared forwarding device circuit boards, studying/forwarding systems are arranged on the infrared forwarding device circuit boards, the studying/forwarding systems comprise singlechips which are connected with indicator light circuits, power supplies, power line carrier modules and infrared studying/emitting modules, both the power line carrier modules and the infrared studying/emitting modules can carry out bidirectional communication with the singlechips, and the power line carrier modules and the singlechips are connected through serial communication circuits.

Description

The learning-oriented infrared repeater system of 360 degree based on carrier communication
Technical field
The utility model belongs to communication technical field, specifically, relates to a kind of learning-oriented infrared repeater system of 360 degree based on carrier communication.
Background technology
At present, in family, the electrical equipment facility such as air-conditioning, TV, water heater, Set Top Box all can be controlled by Infrared remote controller, but because producer's model of various electrical equipment is different, the Infrared Transmission stipulations that different electrical equipment is followed are also not quite similar, and cause the telepilot of different electrical equipment incompatible.Consequent problem is along with the increasing of electric equipment in family, in family telepilot quantity also straight line rise, to user, bring inconvenience.Learning-oriented infrared transponder is the optimal path addressing this problem.
Traditional learning-oriented transponder adopts the mode of serial ports wired connection or radio communication mostly, but wired connection need to increase wiring, and line is difficult to hide; Radio communication is can not transmission range less, ability through walls, and be accompanied by electromagnetic radiation, affect people's health.Power line carrier, PLC is the distinctive communication mode of electric system, utilize line of electric force, by carrier system, digital signal is carried out to transmission at a high speed, its maximum feature is not need again to set up network, as long as live wire, just can carry out data transmission, and the impact that not hindered by wall, both without extra wiring, radiationless again, be suitable for family and use.Adopt power line carrier, PLC mode to carry out structure and the efficiency that switch design can improve infrared repeater system greatly.
Existing study infrared transponder system mostly is self learning system, its principle is for arranging storer in transponder inside, for storing the infrared frequency of learning, when learning-oriented infrared transponder receives after order, in storer, searching whether there is the frequency of learning.Because the working range of learning-oriented infrared transponder is limited, when transponder applications is during in large scale systems such as large-scale intelligent building systems, the equipment of controlling due to needs is numerous, when control terminal is during to Remote Device Control signal, if there is no corresponding infrared frequency in the infrared transponder storer in equipment range of control, need to relearn.
Utility model content
The purpose of this utility model is for the deficiencies in the prior art, provides a kind of and adopts carrier communication as the infrared repeater system with learning functionality of communication means.
The technical solution of the utility model is: a kind of learning-oriented infrared repeater system of 360 degree based on carrier communication, and this infrared repeater system comprises infrared transponder, control terminal, gateway and server;
Infrared transponder has a plurality of, and each infrared transponder works alone, and a plurality of infrared transponders are all connected with control terminal with server respectively by gateway, and each infrared transponder is according to rule numbers, and by number record to control terminal;
Infrared transponder comprises infrared transponder circuit board, on infrared transponder circuit board, be provided with study/repeater system, study/repeater system comprises single-chip microcomputer, single-chip microcomputer is connected with indicator light circuit, power supply, power carrier module and infrared learning/transmitter module, described power carrier module and infrared learning/transmitter module all can carry out two-way communication with single-chip microcomputer, between power carrier module and single-chip microcomputer, through serial communication circuit, are connected;
Infrared learning/transmitter module comprises infrared receiving module and infrared transmission module, infrared receiving module receives infrared waveform, the storer of single-chip microcomputer will be stored into after the waveform demodulation receiving, infrared transmission module is connected with a plurality of infrared transmitting tubes, and infrared transmitting tube is for outwards sending infrared remote control information;
Power carrier module is connected with server through gateway, infrared transponder can by study to infrared signal information upload onto the server, also can in server, inquire about required infrared signal information, and download; Carrier communication module is also connected with control terminal by gateway, and infrared transponder is carried out the action of control terminal, and control signal is through gateway passes to power carrier module, and single-chip microcomputer identification control signal also passes the signal along to infrared learning/transmitter module.
Preferably: infrared transponder also comprises upper shell and lower house, the connecting end surface of upper shell and lower house is circle, the two can be by buckle card and, the study/repeater system of infrared transponder is fixed on upper shell; On the lower house same circumference parallel with connecting end surface, be evenly distributed with a plurality of infrared transmitting windows, infrared transmitting windows is spherical, infrared transmitting tube is evenly distributed on the same circumference at infrared transmitting windows place, each infrared transmitting windows is adjacent infrared transmitting tube, and transmitting terminal and the infrared transmitting windows of infrared transmitting tube are tangent, and the center of lower house is provided with infrared receiving window mouth.
Preferably: lower house is curve housing, and infrared transmitting windows is arranged on curve housing, and the angle that arranges in the horizontal direction of infrared transmitting windows for from surface level upwards horizontal by 60 degree angles.
Preferably: what the control terminal of infrared repeater system can be for mobile phone, PC or panel computer is a kind of, on control terminal, dispose the control software of infrared repeater system, can be by controlling software output steering order.
The beneficial effects of the utility model are: (1) the utility model adopts the mode of power line carrier, PLC to replace traditional serial ports wire communication and the mode of radio communication, have and can through wallsly get over wall, without advantages such as wirings, simplified the system integration of infrared repeater system, (2) system that this infrared repeater system is comprised of a plurality of infrared transponders and server, it is the system of setting up based on modular, can increase or reduce infrared transponder functional module, each infrared transponder works alone, be independent of each other, thereby reduced the abnormal probability of equipment, guarantee that device security moves reliably.(3) conventional infrared transponder structure mostly is a launch window is set on a housing, because the angle of coverage of infrared transmitting tube is limited, the coverage of infrared transponder is very limited, the infrared repeater system that the utility model provides is provided with a plurality of infrared transmitting windows along even circumferential on housing, transponder enclosure interior is also evenly provided with a plurality of infrared transmitting tubes, infrared transmitting tube and infrared transmitting windows inwall sphere are tangent, this structure has realized 360 coverages of infrared transponder on the one hand, also avoided on the other hand the reflection of infrared light in launch window inside, make infrared emittance maintain highest level, reduced transmitting power consumption.
Accompanying drawing explanation
Accompanying drawing 1 is study/repeater system structural representation of the utility model infrared transponder.
Accompanying drawing 2 is the utility model infrared transponder external structure schematic diagram.
Embodiment
Below in conjunction with accompanying drawing, the utility model is described in more detail.
As illustrated in fig. 1 and 2,
The learning-oriented infrared repeater system of 360 degree of carrier communication, this infrared repeater system comprises infrared transponder, control terminal, gateway and server; Infrared transponder has a plurality of, and each infrared transponder works alone, and a plurality of infrared transponders are all connected with control terminal with server respectively by gateway, and each infrared transponder is according to rule numbers, and by number record to control terminal;
Infrared transponder comprises study/repeater system, described study/repeater system comprises single-chip microcomputer, single-chip microcomputer is connected with indicator light circuit, power supply, power carrier module and infrared learning/transmitter module, described power carrier module and infrared learning/transmitter module all can carry out two-way communication with single-chip microcomputer, between power carrier module and single-chip microcomputer, through serial communication circuit, are connected;
Infrared learning/transmitter module comprises infrared receiving module and infrared transmission module, infrared receiving module receives infrared waveform, the storer of single-chip microcomputer will be stored into after the waveform demodulation receiving, infrared transmission module is connected with a plurality of infrared transmitting tubes, and infrared transmitting tube is for outwards sending infrared remote control information;
Power carrier module is connected with server through gateway, infrared transponder can by study to infrared signal information upload onto the server, also can in server, inquire about required infrared signal information, and download; Carrier communication module is also connected with control terminal by gateway, and infrared transponder is carried out the action of control terminal, and control signal is through gateway passes to power carrier module, and single-chip microcomputer identification control signal also passes the signal along to infrared learning/transmitter module.
Infrared transponder also comprises upper shell 1 and lower house 2, on upper shell 1, be provided with screw hole, can infrared transponder be fixed on ceiling by screw hole, the connecting end surface of upper shell 1 and lower house 2 is circle, the two can be by buckle card and, the study/repeater system of infrared transponder is fixed on upper shell 1; On lower house 2, on the same circumference parallel with the connecting end surface of upper shell 1 and lower house 2, be evenly distributed with a plurality of infrared transmitting windows 4, infrared transmitting windows 4 is spherical, infrared transmitting tube is evenly distributed on the same circumference at infrared transmitting windows 4 places, each infrared transmitting windows 4 is adjacent infrared transmitting tube, and the transmitting terminal of infrared transmitting tube and infrared transmitting windows 4 are tangent, and the center of lower house 2 is provided with infrared receiving window mouth 3.Lower house 2 is curve housing, infrared transmitting windows 4 is arranged on curve housing, and the angle that infrared transmitting windows 4 arranges is in the horizontal direction upwards horizontal by 60 ° of angles from surface level, when infrared transponder is fixed on ceiling, take infrared receiving window mouth 3 places places is surface level benchmark, and infrared transmitting windows 4 becomes 60 ° of angles with surface level.
The control terminal of infrared repeater system can be for mobile phone, PC or panel computer a kind of, on control terminal, dispose the control software of infrared repeater system, can be by controlling software output learn command or the instructions such as steering order to electrical equipment.
The realization of whole system is initiated by carrier communication order all the time, mainly comprises two kinds of orders: learn infrared waveform order and the order of transmitting infrared control.
First user sets up exclusive account on server by control terminal, for the management of infrared signal;
Control terminal finds the infrared transponder that needs control by number, sends control signal, and control signal to power carrier module, is passed to single-chip microcomputer through serial communication circuit through gateway passes, and single-chip microcomputer is resolved the control signal content that power carrier module sends;
Infrared transponder, before electrical equipment is controlled, first needs the infrared waveform being matched by control apparatus to be stored in the internal storage of single-chip microcomputer.Storing infrared waveform has two kinds of modes, and first kind of way is after knowing by the model of control apparatus, searches the infrared waveform of the respective model of having stored in server by gateway, infrared waveform is downloaded in the single-chip microcomputer of infrared transponder and stores; The second way is the infrared learning function that relies on infrared transponder, by learning with the specific waveforms being matched by control apparatus, stores in single-chip microcomputer.
Infrared learning process: if the order for the new infrared waveform of study that single-chip microcomputer receives, single-chip microcomputer output electrical signals, open the learning functionality of infrared learning/transmitter module, infrared receiving module receives new infrared waveform, resolve this waveform and be stored to the memory block of single-chip microcomputer, the complete rear single-chip microcomputer of one frame waveshape learning finishes infrared learning automatically, this infrared shape information is uploaded onto the server through power carrier module and gateway simultaneously;
Infrared emission process: if receive for infrared emission control command, single-chip microcomputer is searched the infrared shape information corresponding with control command in self memory block, modulation is sent by infrared transmission module, realizes the control to electrical equipment.
The learning-oriented infrared repeater system of 360 degree based on carrier communication that the utility model provides can be controlled by multiple terminal equipment, can configure and manage infrared shape information by PC, panel computer, mobile phone, WIFI, GSM network signal can be modulated to carrier wave frequency range through power carrier module, communicate with infrared transponder single-chip microcomputer again, met the requirement of people to high-quality life.
The learning-oriented infrared repeater system of 360 degree based on carrier communication that the utility model provides designs repeater structures, can realize the comprehensive control of 360 degree to electrical equipment.This repeater system can be applicable to family, can be applicable to again large-scale intelligent building, by gateway configuration transponder information, user can carry out Remote to infrared transponder, the control software of the infrared repeater system that user can also configure by control terminal to electrical equipment in family control in real time, timing controlled, and can scene set pattern realize the interlock of multiple electrical equipment in family.

Claims (4)

1. the learning-oriented infrared repeater system of 360 degree based on carrier communication, is characterized in that: this infrared repeater system comprises infrared transponder, control terminal, gateway and server; Described infrared transponder has a plurality of, and each infrared transponder works alone, and a plurality of infrared transponders are all connected with control terminal with server respectively by gateway, and each infrared transponder is according to rule numbers, and by number record to control terminal;
Described infrared transponder comprises infrared transponder circuit board, on infrared transponder circuit board, be provided with study/repeater system, described study/repeater system comprises single-chip microcomputer, single-chip microcomputer is connected with indicator light circuit, power supply, power carrier module and infrared learning/transmitter module, described power carrier module and infrared learning/transmitter module all can carry out two-way communication with single-chip microcomputer, between power carrier module and single-chip microcomputer, through serial communication circuit, are connected;
Described infrared learning/transmitter module comprises infrared receiving module and infrared transmission module, infrared receiving module receives infrared waveform, the storer of single-chip microcomputer will be stored into after the waveform demodulation receiving, infrared transmission module is connected with a plurality of infrared transmitting tubes, and infrared transmitting tube is for outwards sending infrared remote control information;
Described power carrier module is connected with server through gateway, infrared transponder can by study to infrared signal information upload onto the server, also can in server, inquire about required infrared signal information, and download; Carrier communication module is also connected with control terminal by gateway, and infrared transponder is carried out the action of control terminal, and control signal is through gateway passes to power carrier module, and single-chip microcomputer identification control signal also passes the signal along to infrared learning/transmitter module.
As claimed in claim 1 based on carrier communication 360 degree learning-oriented infrared repeater system, it is characterized in that: described infrared transponder also comprises upper shell and lower house, the connecting end surface of upper shell and lower house is circle, the two can be by buckle card and, infrared transponder circuit board is fixed on upper shell; On the lower house same circumference parallel with connecting end surface, be evenly distributed with a plurality of infrared transmitting windows, infrared transmitting windows is spherical, infrared transmitting tube is evenly distributed on the same circumference at infrared transmitting windows place, each infrared transmitting windows is adjacent infrared transmitting tube, and transmitting terminal and the infrared transmitting windows of infrared transmitting tube are tangent, and the center of lower house is provided with infrared receiving window mouth.
As claimed in claim 2 based on carrier communication 360 degree learning-oriented infrared repeater system, it is characterized in that: described lower house is curve housing, infrared transmitting windows is arranged on curve housing, and the angle that infrared transmitting windows arranges is in the horizontal direction for making progress horizontal by 60 degree angles from surface level.
4. the learning-oriented infrared repeater system of 360 degree based on carrier communication as claimed in claim 1, is characterized in that: what described control terminal can be for mobile phone, PC or panel computer is a kind of.
CN201320386544.7U 2013-06-29 2013-06-29 360-degree study type infrared forwarding system based on carrier communication Withdrawn - After Issue CN203405948U (en)

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Application Number Priority Date Filing Date Title
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103383808A (en) * 2013-06-29 2013-11-06 青岛东软载波科技股份有限公司 360-degree learning infrared forwarding system based on carrier communication and method thereof
CN104299406A (en) * 2014-10-29 2015-01-21 湖州高鼎智能科技有限公司 Device for converting RF into infrared

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103383808A (en) * 2013-06-29 2013-11-06 青岛东软载波科技股份有限公司 360-degree learning infrared forwarding system based on carrier communication and method thereof
CN103383808B (en) * 2013-06-29 2016-01-27 青岛东软载波科技股份有限公司 Based on 360 degree of learning-oriented infrared repeater systems and the method for carrier communication
CN104299406A (en) * 2014-10-29 2015-01-21 湖州高鼎智能科技有限公司 Device for converting RF into infrared

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140122

Effective date of abandoning: 20160127

C25 Abandonment of patent right or utility model to avoid double patenting