Control system for a rotary laser
09818292 ยท 2017-11-14
Assignee
Inventors
Cpc classification
H04W4/80
ELECTRICITY
H04N1/04
ELECTRICITY
G08C2201/40
PHYSICS
International classification
H04W4/00
ELECTRICITY
Abstract
A control system for a rotary laser receives control information transmitted by a communications terminal via a first repeater coupled to the communications terminal and transmits the control information to a controller via a second repeater disposed on a rotary laser. The controller regulates an operating state of the rotary laser based on the control information. The control system enables the communication terminal to wirelessly control and operating state of the rotary laser via cooperation between the first repeater and the second repeater so as to achieve a remote control and to avoid use of a dedicated remote control alone, reduce the system costs and be carried easily.
Claims
1. A control system to be applied to a rotary laser, comprising: a first repeater coupled to a communication terminal for receiving control information transmitted by the communication terminal; a second repeater coupled to the first repeater and disposed on the rotary laser for wirelessly receiving the control information transmitted by the first repeater; and a controller coupled to the second repeater for receiving the control information transmitted by the second repeater and regulating an operating state of the rotary laser based on the control information.
2. The control system according to claim 1, wherein the communication terminal has a first Bluetooth module built in, and the first repeater comprises: a second Bluetooth module for receiving and transmitting the control information transmitted by the communication terminal via the first Bluetooth module; a processor coupled to the second Bluetooth module for receiving the control information transmitted by the second Bluetooth module and transmitting control instructions based on the control information; and a wireless communication module coupled to the processor for opening a wireless transceiver function based on the control instructions transmitted by the processor and transmitting the control information contained in the control instructions.
3. The control system according to claim 2, wherein the wireless communication module is specifically a 915 MHz wireless module.
4. The control system according to claim 1, further comprising a third repeater, wherein the third repeater is coupled to the communication terminal and the controller, respectively, for receiving state information of the rotary laser transmitted by the controller via the second repeater and transmitting the state information to the communication terminal.
5. The control system according to claim 4, further comprising a rotary laser detector for detecting signals of the rotary laser, wherein the third repeater is disposed on the rotary laser detector.
6. The control system according to claim 4, wherein the third repeater and the first repeater are the same repeater.
7. The control system according to claim 1, further comprising a rotary laser detector for detecting signals of the rotary laser, wherein the first repeater is disposed on the rotary laser detector.
8. The control system according to claim 1, further comprising a rotary laser detector for detecting signals of the rotary laser and a tripod for supporting the rotary laser detector, wherein the first repeater is disposed on the tripod.
9. The control system according to claim 1, wherein the first repeater is disposed on a shell of the communication terminal.
10. The control system according to claim 1, wherein the first repeater is disposed on a key ring.
11. A wireless control system for an instrument, comprising: a first repeater that includes a wireless module connecting the instrument to a mobile communication terminal, the first repeater further including a processor controlling the wireless module; a second repeater disposed on the instrument and receiving control information from the first repeater; a controller disposed on the instrument and connected to the second repeater; wherein the instrument is operated by the controller based on the control information; wherein state information of the instrument is transmitted to the mobile communication terminal through the first repeater and the second repeater.
12. The wireless control system according to claim 11, wherein the wireless module is connected to the mobile communication terminal by Bluetooth.
13. The wireless control system according to claim 11, wherein the first repeater is disposed on an instrument detector for detecting light emitting from the instrument in a distant place.
14. The wireless control system according to claim 11, wherein the first repeater is disposed on a shell of the mobile communication terminal for detecting light emitting from the instrument in a distant place.
15. A control system for an instrument, comprising: a first repeater for receiving a control signal emitted wirelessly from a communication terminal and amplifying the control signal into an amplified signal; a second repeater set on the instrument for receiving the amplified signal; a controller disposed on the instrument and electrically connected to the second repeater; wherein the instrument is regulated by the controller based on the amplified signal.
16. The control system according to claim 15, wherein the controller is configured to transmit state information of the instrument to the communication terminal via the first repeater and the second repeater.
17. The control system according to claim 15, wherein the first repeater is separate from the communication terminal and the instrument.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to explain the technical solution in the embodiments of the present disclosure or the prior art more clearly, a brief introduction will be made below to the accompanying drawings that are to be used in the descriptions of the embodiments or the prior art. Obviously, the accompanying drawings in the following descriptions are only some embodiments of the present disclosure, and for those of ordinary skill in the art, other accompanying drawings can also be obtained based on these accompanying drawings on the premise of paying no creative work.
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DESCRIPTION OF PREFERRED EMBODIMENTS
(6) The technical solution in the embodiments of the present disclosure will be described clearly and completely below in conjunction with the accompanying drawings that schematically present embodiments of the present disclosure. Obviously, the described embodiments are only exemplary embodiments of the present disclosure, rather than all of the embodiments. Based on the embodiments in the present disclosure, all of the other embodiments obtained by those of ordinary skill in the art on the premise of paying no creative work fall into the protection scope of the present disclosure.
(7) An exemplary embodiment discloses a control system to be applied to a rotary laser, and the schematic diagram of its structure is shown in
(8) The mobile communication terminal 11 transmits control information to the first repeater 12 based on operation of a user, and the first repeater 12 receives the control information transmitted by the mobile communication terminal 11 and transmits the control information to the second repeater 13. The second repeater 13 wirelessly receives the control information and transmits the control information to the controller 14, and the controller 14 regulates an operating state of the rotary laser based on the received control information. The mobile communication terminal 11 specifically can be a mobile phone that has rotary laser APP software installed on it, and the user may transmit the control information based on the rotary laser APP software.
(9) The control system for a rotary laser disclosed by the embodiment schematically represented in
(10) Furthermore, in the control system for a rotary laser disclosed by the embodiment schematically represented in
(11) The present embodiment discloses a first repeater 12, and the schematic diagram of its structure is shown in
(12) The second Bluetooth module 21 is coupled to the first Bluetooth module to receive the control information transmitted by the mobile communication terminal 11 and transmit the received control information to the processor 22. The processor 22 receives the control information transmitted by the second Bluetooth module 21 and transmits control instructions to the wireless communication module 23 based on the control information, wherein the control instructions contain the control information and an instruction for opening the transceiver function of the wireless communication module.
(13) The wireless communication module 23 receives the control instructions transmitted by the processor 22 and opens the wireless transceiver function based on the control instructions, and meanwhile transmits the control information contained in the control instructions to the second repeater. Herein, the processor 22 communicates with the wireless communication module 23 via a SPI bus, and the processor 22 transmits the control information in the control instructions to a receive buffer of the wireless communication module 23. The wireless communication module 23 performs GMSK (Gaussian Filtered Minimum Shift Keying) modulation on the control information, and then transmits it to the second repeater. After receiving the GMSK modulated control information, the second repeater demodulates it to obtain the control information.
(14) Specifically, in the first repeater 12 disclosed by the embodiment schematically represented in
(15) The first repeater 12 disclosed by the embodiment schematically represented in
(16) Preferably, the second repeater 13 has the substantially same basic structure as the first repeater 12 disclosed by the embodiment schematically represented in
(17) Another embodiment discloses a control system to be applied to a rotary laser, and the schematic diagram of its basic structure is shown in
(18) In addition to the same structure as the first embodiment schematically represented in
(19) The control system for a rotary laser disclosed by the embodiment schematically represented in
(20) Preferably, the control system for a rotary laser disclosed by the embodiment schematically represented in
(21) Another embodiment discloses a control system to be applied to a rotary laser, and the schematic diagram of its structure is shown in
(22) The second repeater 43 is disposed on the rotary laser, and it receives the control information transmitted by the first repeater 421 and transmits the control information to the controller 44. The controller 44 receives the control information transmitted by the second repeater 43 and regulates operating state of the rotary laser based on the control information.
(23) The control system for a rotary laser disclosed by the embodiment schematically represented in
(24) Further, the first repeater 421 disclosed by the embodiment schematically represented in
(25) The first repeater 421 is disposed on a shell of the mobile communication terminal 41. When transmitting the control information, the control information is transmitted to the second Bluetooth module in the first repeater 421 by the first Bluetooth module inside the mobile communication terminal 41 and is then transmitted to the second repeater 43 from the first repeater 421.
(26) Further, in the control system disclosed by the embodiment schematically represented in
(27) In addition, when in the control system disclosed by the embodiment schematically represented in
(28) In addition, it should be noted that the third repeater in the embodiments can be disposed separately or be disposed on the rotary laser detector or the shell of the mobile communication terminal. Similarly, the third repeater can be disposed on a tripod for supporting the rotary laser detector, a shell of the mobile communication terminal, or other objects such as a scale, a key ring, etc., if it is dedicated to remote transmitting of the state information of the rotary laser.
(29) The first repeater disclosed by the embodiments not only can be disposed on the rotary laser detector or the shell of the mobile communication terminal, but also can be disposed separately, or disposed on a tripod for supporting the rotary laser detector or objects such as a scale or a key ring, etc., if it is dedicated to remote transmitting of the control information sent by the mobile communication terminal.
(30) Respective embodiments of the present specification are described in a progressive manner, and each embodiment is mainly explained by its difference from other embodiments, and thus the same or similar parts between respective embodiments may refer to each other.
(31) Those skilled in the art can also be further aware that respective exemplary units and algorithm steps as described in conjunction with the embodiments of the present application may be implemented as electronic hardware, computer software, or a combination of both. In order to clearly express such interchangeability between hardware and software, the respective exemplary components and steps have been depicted in general with regard to the functions in the above descriptions. As to whether the functions are implemented in hardware or software, it depends on a specific application and a design constraint condition applied on the technical solution. Those skilled in the art may implement the depicted functions in a different manner for each specific application. However, such an implementation should not be construed as departing from the protection scope of the present disclosure.
(32) The method or algorithm steps described in conjunction with embodiments of the present application can be implemented directly by hardware, software modules executed by the processor, or a combination of both. The software modules can be disposed in a random access memory (RAM), a memory, a read-only memory (ROM), an electrically programmable ROM, an electrically erasable programmable ROM, a register, a hard disk, a removable disk, CD-ROM, or any other form of storage medium known in the art.
(33) The above descriptions of the disclosed embodiments enable those skilled in the art to implement or use the present disclosure. Various modifications of these embodiments are obvious for those skilled in the art, and the general principle as defined herein may also be applied to other embodiments without departing from the spirit or scope of the present disclosure. Thus, the present disclosure is not limited to the embodiments as described herein, but is consistent with the broadest scope of the principle and novel characteristics of the present disclosure.