CN111951538A - Series frequency protection system of laser wall-mounted instrument and operation method thereof - Google Patents

Series frequency protection system of laser wall-mounted instrument and operation method thereof Download PDF

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Publication number
CN111951538A
CN111951538A CN202010971372.4A CN202010971372A CN111951538A CN 111951538 A CN111951538 A CN 111951538A CN 202010971372 A CN202010971372 A CN 202010971372A CN 111951538 A CN111951538 A CN 111951538A
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CN
China
Prior art keywords
signal
remote controller
signal receiver
receiver
protection system
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Pending
Application number
CN202010971372.4A
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Chinese (zh)
Inventor
钱傅霞
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Jiangsu Saipu Photoelectric Technology Co Ltd
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Jiangsu Saipu Photoelectric Technology Co Ltd
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Publication date
Application filed by Jiangsu Saipu Photoelectric Technology Co Ltd filed Critical Jiangsu Saipu Photoelectric Technology Co Ltd
Priority to CN202010971372.4A priority Critical patent/CN111951538A/en
Publication of CN111951538A publication Critical patent/CN111951538A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/14Direct-mode setup

Abstract

The invention discloses a serial frequency protection system of a laser wall-mounted instrument and an operation method thereof, wherein the serial frequency protection system comprises a plurality of groups of signal transmitters, signal receivers and working carriers which are sequentially numbered, the signal transmitters, the signal receivers and the working carriers are correspondingly arranged, information is transmitted between the signal transmitters and the signal receivers through wireless signals, and the signal receivers comprise 2.4GHz wireless signal modules. According to the wireless signal serial frequency protection system provided by the invention, through a pairing mechanism of a 2.4GHz wireless signal module, a one-to-one correspondence relationship can be generated between the laser wall-mounted instruments of each remote controller, so that the remote controllers can control and operate the corresponding laser wall-mounted instruments, and can not control and operate other laser wall-mounted instruments in a serial frequency manner.

Description

Series frequency protection system of laser wall-mounted instrument and operation method thereof
Technical Field
The invention relates to the technical field of laser wall-mounted instrument equipment, in particular to a series frequency protection system of a laser wall-mounted instrument and an operation method thereof.
Background
The laser head wall-mounted instrument that uses at present all adjusts the trend of laser through controlling the button on the wall-mounted instrument, it wastes time and energy, and when the wall-mounted instrument is in some special position, it can not very conveniently carry out button operation, the way of its solution can come to go on the laser wall-mounted instrument through the remote controller, the product that carries out remote control operation to the wall-mounted instrument through the remote controller at present, when many instruments appear in the scene, the phenomenon of cluster frequently then can appear, a remote controller can operate many laser instruments of opening, so, the laser wall-mounted instrument of the required adjustment of control that then can not be fine, increase the degree of difficulty of operation.
Disclosure of Invention
It is an object of the present invention to provide a wireless signal series frequency protection system that solves one or more of the above mentioned problems of the prior art.
The wireless signal serial frequency protection system comprises a plurality of groups of sequentially numbered signal transmitters, signal receivers and working carriers, wherein the signal transmitters, the signal receivers and the working carriers are correspondingly arranged, information is transmitted between the signal transmitters and the signal receivers through wireless signals, and the signal receivers comprise 2.4GHz wireless signal modules.
According to the wireless signal serial frequency protection system provided by the invention, through a pairing mechanism of a 2.4GHz wireless signal module, a one-to-one correspondence relationship can be generated between the laser wall-mounted instruments of each remote controller, so that the remote controllers can control and operate the corresponding laser wall-mounted instruments, and can not control and operate other laser wall-mounted instruments in a serial frequency manner.
In some embodiments, the signal generator is a remote controller, the work carrier is a laser wall-mounted instrument, the 2.4GHz wireless signal module is arranged in the laser wall-mounted instrument, and the remote controller can control the laser on-off of the laser wall-mounted instrument.
In some embodiments, a 2.4GHz GFSK transmitting module is arranged in the remote controller, the 2.4GHz wireless signal module includes a 2.4GHz GFSK receiving module, and the 2.4GHz GFSK transmitting module and the 2.4GHz GFSK receiving module are connected by a 2.4GHz wifi through wireless signals.
An operation method of a wireless signal serial frequency protection system comprises the following steps:
step 1, opening any one remote controller A, judging whether a signal receiver corresponding to the remote controller is opened or not, opening the corresponding signal receiver, forming signal matching between the remote controller A and the signal receiver, finishing frequency-matching operation, and controlling the signal receiver matched with the signal by the remote controller A in a one-to-one way; if the corresponding signal receiver is not turned on, step 2 is performed;
and 2, judging whether other opened signal receivers are in an occupied state, if the signal receivers are not in the occupied state, establishing signal connection between the remote controller and the signal receivers, and controlling the signal receivers by the remote controller.
In some embodiments, any one of the remote controllers B is turned on, the corresponding signal receiver is turned on, signal matching is formed between the remote controller B and the signal receiver, and the frequency-pair operation is completed, so that the signal receiver of the remote controller B matched with the signal is controlled in a one-to-one manner, and the frequency-pair operation is also completed; a unique channel ID formed between the remote controller a and the signal receiver to which the signal matches, and a unique channel ID formed between the remote controller B and the signal receiver to which the signal matches.
In some embodiments, whether the signal receiver is in an occupied state is determined by the time of establishing the signal connection and the condition of signal matching, wherein the signal matching is prior to the time of establishing the signal connection.
In some embodiments, the method of determining whether the signal receiver is in the occupied state comprises the steps of:
step a, judging whether the signal receiver is matched with a corresponding remote controller or not, if so, indicating that the signal receiver is in an occupied state, otherwise, entering the step b;
and b, before the signal connection is established between the remote controller A and the signal receiver, if the connection is established between other remote controllers which do not correspond to the signal receiver, the signal receiver is in an occupied state, otherwise, the signal receiver is not in the occupied state.
Drawings
Fig. 1 is a schematic structural diagram of a wireless signal serial frequency protection system according to an embodiment of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1, a wireless signal series frequency protection system includes a plurality of groups of signal transmitters 1, signal receivers 2 and work carriers 3 which are numbered in sequence, the signal transmitters 1, the signal receivers 2 and the work carriers 3 are correspondingly arranged, information is transmitted between the signal transmitters 1 and the signal receivers 2 through wireless signals, and the signal receivers include 2.4GHz wireless signal modules.
According to the wireless signal serial frequency protection system provided by the invention, through a pairing mechanism of a 2.4GHz wireless signal module, a one-to-one correspondence relationship can be generated between the laser wall-mounted instruments of each remote controller, so that the remote controllers can control and operate the corresponding laser wall-mounted instruments, and can not control and operate other laser wall-mounted instruments in a serial frequency manner.
Wherein, signal generator 1 is the remote controller, and work carrier 3 is laser wall appearance, and 2.4GHz wireless signal module sets up in laser wall appearance, and the laser switching of the steerable laser wall appearance of remote controller.
Be equipped with 2.4GHz GFSK transmitting module in the remote controller, 2.4GHz wireless signal module includes 2.4GHz GFSK receiving module, carries out wireless signal connection through 2.4GHz wifi between 2.4GHz GFSK transmitting module and the 2.4GHz GFSK receiving module.
The signal transmitter and the signal receiver can only be paired one at a time, namely, the signal transmitter can only be paired with one signal receiver at a time, and the signal transmitter paired last time by the signal receiver can be disabled by re-pairing.
An operation method of a wireless signal serial frequency protection system comprises the following steps:
step 1, opening any one remote controller A, judging whether a signal receiver corresponding to the remote controller is opened or not, opening the corresponding signal receiver, forming signal matching between the remote controller A and the signal receiver, finishing frequency-matching operation, and controlling the signal receiver matched with the signal by the remote controller A in a one-to-one way; if the corresponding signal receiver is not turned on, step 2 is performed;
and 2, judging whether other opened signal receivers are in an occupied state, if the signal receivers are not in the occupied state, establishing signal connection between the remote controller and the signal receivers, and controlling the signal receivers by the remote controller.
Opening any one remote controller B, opening a corresponding signal receiver, forming signal matching between the remote controller B and the signal receiver, and completing frequency-pair operation, wherein the signal receiver matched with the remote controller B is controlled in a one-to-one manner, and the frequency-pair operation is also completed; a unique channel ID formed between the remote controller a and the signal receiver to which the signal matches, and a unique channel ID formed between the remote controller B and the signal receiver to which the signal matches.
And judging whether the signal receiver is in an occupied state or not by the time for establishing signal connection and the condition of signal matching, wherein the signal matching is prior to the time for establishing signal connection.
The method for judging whether the signal receiver is in the occupied state comprises the following steps:
step a, judging whether the signal receiver is matched with a corresponding remote controller or not, if so, indicating that the signal receiver is in an occupied state, otherwise, entering the step b;
and b, before the signal connection is established between the remote controller A and the signal receiver, if the connection is established between other remote controllers which do not correspond to the signal receiver, the signal receiver is in an occupied state, otherwise, the signal receiver is not in the occupied state.
The signal generator is a remote controller, the working carrier is a laser wall-mounted instrument, the 2.4GHz wireless signal module is arranged in the laser wall-mounted instrument, and the remote controller can control the laser opening and closing of the laser wall-mounted instrument;
the operation steps are as follows:
1. the system is provided with n laser wall stickers and n remote controllers, wherein each laser wall sticker is provided with one remote controller;
2. opening the first laser wall-mounted instrument, starting a first remote controller at the same time, forming signal matching between a signal generated by the first remote controller and the first laser wall-mounted instrument, and controlling the first laser wall-mounted instrument by matching the first remote controller;
3. opening a second laser wall-mounted instrument, starting a second remote controller at the same time, and controlling the second laser wall-mounted instrument by matching a signal generated by the second remote controller with a signal generated by the second laser wall-mounted instrument;
4. opening the nth laser wall-mounted instrument, starting the nth remote controller simultaneously, and controlling the nth laser wall-mounted instrument by matching the signal generated by the nth remote controller with the signal generated by the nth laser wall-mounted instrument;
5. each remote controller can only pair and control the laser wall-mounted instrument matched with the remote controller signal, and the signals cannot be subjected to cross frequency.
The remote controller can be matched with a plurality of laser wall-mounted instruments, and when the remote controller is matched with the next laser wall-mounted instrument, the remote controller needs to be powered off and restarted.
That is, the remote controller can be used in a matching way on a plurality of laser wall-attached instruments.
A wireless signal series frequency protection operation method is characterized in that n laser wall stickers are opened, n is larger than or equal to 2, one remote controller is started, and the remote controller can be matched to control any opened laser wall stickers.
The foregoing is only a preferred form of the invention and it should be noted that numerous similar variations and modifications could be made by those skilled in the art without departing from the inventive concept herein, which shall be considered to be within the scope of the appended claims.

Claims (7)

1. The utility model provides a laser wall-mounted instrument cluster frequency protection system, wherein, includes signal transmitter, signal receiver and the work carrier of a plurality of groups serial numbers in proper order, signal transmitter, signal receiver and work carrier correspond the setting, carry out the transmission information through wireless signal between signal transmitter and the signal receiver, and signal receiver includes 2.4GHz wireless signal module.
2. The serial frequency protection system of claim 2, wherein the signal generator is a remote controller, the work carrier is a laser wall-mounted instrument, the 2.4GHz wireless signal module is arranged in the laser wall-mounted instrument, and the remote controller can control the laser on/off of the laser wall-mounted instrument.
3. The serial frequency protection system of the laser wall-mounted instrument according to claim 3, wherein a 2.4GHz GFSK transmitting module is arranged in the remote controller, the 2.4GHz wireless signal module comprises a 2.4GHz GFSK receiving module, and the 2.4GHz GFSK transmitting module and the 2.4GHz GFSK receiving module are in wireless signal connection through 2.4GHz wifi.
4. A method of operating a radio signal series frequency protection system according to claims 1-3, comprising the steps of:
step 1, opening any one remote controller A, judging whether a signal receiver corresponding to the remote controller is opened or not, opening the corresponding signal receiver, forming signal matching between the remote controller A and the signal receiver, finishing frequency-matching operation, and controlling the signal receiver matched with the signal by the remote controller A in a one-to-one way; if the corresponding signal receiver is not turned on, step 2 is performed;
and 2, judging whether other opened signal receivers are in an occupied state, if the signal receivers are not in the occupied state, establishing signal connection between the remote controller and the signal receivers, and controlling the signal receivers by the remote controller.
5. The operation method of a wireless signal serial frequency protection system according to claim 4, wherein any one remote controller B is turned on, the corresponding signal receiver is turned on, signal matching is formed between the remote controller B and the signal receiver, and if the frequency-matching operation is completed, the signal receiver of the remote controller B matched with the signal is controlled in a one-to-one manner, and the frequency-matching operation is also completed; a unique channel ID formed between the remote controller a and the signal receiver to which the signal matches, and a unique channel ID formed between the remote controller B and the signal receiver to which the signal matches.
6. The method according to claim 6, wherein the signal receiver is in an occupied state, and the determination is made according to the time for establishing the signal connection and the condition of signal matching, and the signal matching is prior to the time for establishing the signal connection.
7. The method of claim 4, wherein the method of determining whether the signal receiver is in the occupied state comprises the steps of:
step a, judging whether the signal receiver is matched with a corresponding remote controller or not, if so, indicating that the signal receiver is in an occupied state, otherwise, entering the step b;
and b, before the signal connection is established between the remote controller A and the signal receiver, if the connection is established between other remote controllers which do not correspond to the signal receiver, the signal receiver is in an occupied state, otherwise, the signal receiver is not in the occupied state.
CN202010971372.4A 2020-09-16 2020-09-16 Series frequency protection system of laser wall-mounted instrument and operation method thereof Pending CN111951538A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010971372.4A CN111951538A (en) 2020-09-16 2020-09-16 Series frequency protection system of laser wall-mounted instrument and operation method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010971372.4A CN111951538A (en) 2020-09-16 2020-09-16 Series frequency protection system of laser wall-mounted instrument and operation method thereof

Publications (1)

Publication Number Publication Date
CN111951538A true CN111951538A (en) 2020-11-17

Family

ID=73357303

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202010971372.4A Pending CN111951538A (en) 2020-09-16 2020-09-16 Series frequency protection system of laser wall-mounted instrument and operation method thereof

Country Status (1)

Country Link
CN (1) CN111951538A (en)

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