Measurement system and measurement method for carrying out measurement task

By introducing voice recognition technology into the laser measuring device, identifying voice signals and matching execution instructions, the problem of inconvenient operation of traditional laser measuring devices is solved, and the ease of use and user-friendliness of the device is improved.

CN120108393APending Publication Date: 2025-06-06NORTHWEST TECHNOLOGIES (KUNSHAN) CO LTD

Patent Information

Application Number
CN202510251784.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

Traditional laser measuring devices are inconvenient to operate, require professional knowledge, and are poorly user-friendly.

Method used

The laser measuring device is improved by using voice recognition technology, and the voice signal is recognized through the voice recognition unit, converted into text information, and matched corresponding execution instructions through the instruction matching module to realize operation control of the laser measuring device.

Benefits of technology

The ease of use of the laser measuring device is improved, and the operator can use the voice control device without stopping to work, enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure relates to a measurement system for performing a measurement task and a measurement method for performing a measurement task, the measurement system for performing a measurement task comprising: a laser measurement device; a voice recognition unit configured to recognize the input voice signal and convert the voice signal into text information; the instruction matching module is configured to match an execution instruction which corresponds to the character information and is used for being executed by the laser measurement device based on the character information, and the laser measurement device is further configured to implement a measurement task based on the execution instruction. In this way, when the measuring system is specifically used, an operator of the measuring system can easily operate and control the laser measuring device through the voice recognition technology without stopping the work in the hand, and the usability of the laser measuring device is improved.
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Description

Technical Field

[0001] The present disclosure relates to the field of surveying and mapping technology, and more specifically to a measuring system and a measuring method for implementing a measuring task. Background Art

[0002] In the prior art, no matter which of the above-mentioned surveying and mapping instruments is used, when construction workers need to operate the equipment, they need to interrupt the current work and turn to the instrument button panel or mobile phone application interface, so they have to interrupt the current work when they need to use the surveying and mapping equipment.

[0003] Before operation, the operator needs to be familiar with the instrument being operated. Specifically, the operator needs to have operating instructions or master the operating methods. If you are not familiar with the surveying and mapping instrument, you need to learn the operating instructions first. When paper instructions are not available, you need to obtain them through the Internet. The information obtained through the Internet is complicated and needs to be manually filtered and confirmed.

[0004] For operations that require measurement data, construction workers often need to walk up to the device to view its screen or take out their phones to open the corresponding application to view the results. When the measurement results obtained by the measuring device are completed, they need to be manually recorded or confirmed on the mobile application. Then, for further operations or calculations on the measured information, the operator needs to perform calculations manually. Summary of the invention

[0005] In order to solve the technical problems existing in the prior art, namely, the traditional laser measuring device is inconvenient to operate, requires professional knowledge, and is less user-friendly, the inventor of the present disclosure has thought of improving the laser measuring device by using speech recognition technology, thereby improving its usability.

[0006] In order to achieve the above technical effects, the present disclosure proposes a measurement system for implementing a measurement task, and the measurement system for implementing a measurement task includes:

[0007] Laser measuring device;

[0008] A speech recognition unit, the speech recognition unit being configured to recognize an input speech signal and convert it into text information;

[0009] an instruction matching module, wherein the instruction matching module is configured to match the corresponding execution instruction for execution by the laser measuring device based on the text information,

[0010] Wherein, the laser measurement device is further configured to implement the measurement task based on the execution instruction.

[0011] In this way, when the measuring system according to the present disclosure is used, the operator of the measuring system can easily operate and control the laser measuring device through voice recognition technology without having to stop the work in hand, thereby improving the usability of the laser measuring device.

[0012] In the technical solution according to the present disclosure, the laser measuring device includes at least one of a rangefinder, a line projector, a leveler and / or a total station. In this way, the measuring system according to the present disclosure can improve the usability of different types of laser measuring devices when used, thereby enhancing its user-friendliness.

[0013] In the technical solution according to the present disclosure, the measurement system further includes:

[0014] An interaction unit is configured to interact with an operator of the measurement system based on the text information. In this way, the measurement system according to the present disclosure can not only directly implement the measurement task, but also interact with the operator by means of the interaction unit when the operator's language expression is not very clear or there is a problem, thereby obtaining accurate information such as the operator's intention.

[0015] In the technical solution according to the present disclosure, a preset interaction database is stored in the interaction unit. In this way, foreseeable unclear language expression problems of the operator or help information associated with the predetermined measurement task can be preset and stored, and the interaction database can be directly called when needed to complete the guidance for the operator.

[0016] In the technical solution according to the present disclosure, the instruction matching module stores preset execution instructions. In this way, the functions of the laser measuring device can be associated with the preset execution instructions, thereby maximizing the convenience for the operator to use the laser measuring device.

[0017] In the technical solution according to the present disclosure, the speech recognition unit is configured as a speech recognition unit in an intelligent device. In this way, it is not necessary to equip the laser measurement device with a separate speech recognition unit, but for example, the speech recognition unit in the existing intelligent device can be reused, which can further reduce the cost of the measurement system proposed according to the present disclosure and increase the possibility of its acceptance by the operator.

[0018] Optionally, in the technical solution according to the present disclosure, the smart device and the laser measuring device are connected to each other via wired or wireless communication. Preferably, in the technical solution according to the present disclosure, the wireless communication connection includes a Bluetooth connection and / or a WiFi connection. In this way, the smart device and the laser measuring device can communicate more easily, thereby improving the availability of the measurement system according to the present disclosure.

[0019] More preferably, in the technical solution according to the present disclosure, the smart device includes a smart phone, a portable tablet computer or other portable smart terminal. Optionally, in the technical solution according to the present disclosure, the instruction matching module is configured as application software in the smart device.

[0020] In addition, the present disclosure also discloses a measurement method for implementing a measurement task, the measurement method comprising:

[0021] Receiving voice input commands;

[0022] Recognize the voice input command based on voice recognition technology to obtain converted text information;

[0023] Matching the corresponding execution instruction for the laser measuring device to execute based on the text information; and

[0024] The laser measuring device performs the measuring task based on the execution instruction.

[0025] In this way, when the measuring method according to the contents of the present disclosure is used, the operator of the measuring method can easily operate and control the laser measuring device through voice recognition technology without having to stop the work in hand, thereby improving the usability of the laser measuring device.

[0026] Preferably, in the technical solution according to the present disclosure, the measurement method further includes: interacting with the implementer of the measurement task based on the text information. More preferably, in the technical solution according to the present disclosure, interacting with the implementer of the measurement task based on the text information further includes: interacting with the implementer of the measurement task based on a preset interaction database and the text information; and when the text information can directly match the execution instruction and the execution instruction matching the text information is determined as the execution instruction, or when the text information cannot directly match the execution instruction, the text information is matched with the execution instruction after semantic conversion or decomposition and one or more execution instructions matching the text information are determined as the execution instruction. In this way, the measurement method according to the present disclosure can not only directly implement the measurement task, but also can interact with the operator with the help of the interaction unit when the operator's language expression is not very clear or there is a problem, thereby obtaining accurate information such as the operator's intention.

[0027] In the technical solution according to the present disclosure, matching the execution instruction corresponding to the laser measuring device based on the text information further includes: matching the execution instruction corresponding to the laser measuring device based on the text information and the stored preset execution instruction. In this way, the function of the laser measuring device can be associated with the preset execution instruction, thereby maximizing the convenience for the operator to use the laser measuring device.

[0028] In the technical solution according to the present disclosure, the measuring method further includes: establishing a communication connection between the laser measuring device and the smart device. In this way, the smart device and the laser measuring device can communicate more easily, thereby improving the usability of the measuring system according to the present disclosure.

[0029] To sum up, in the technical solution according to the contents of the present disclosure, when the measuring system according to the contents of the present disclosure is used, the operator of the measuring system can easily operate and control the laser measuring device through voice recognition technology without having to stop the work in hand, thereby improving the usability of the laser measuring device. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The features, advantages and other aspects of the embodiments of the present disclosure will become more apparent with reference to the following detailed description in conjunction with the accompanying drawings, in which several embodiments of the present disclosure are shown in an exemplary and non-limiting manner. In the accompanying drawings:

[0031] Figure 1A system block diagram of a measurement system 100 for performing a measurement task according to an embodiment of the present disclosure is shown; and

[0032] Figure 2 A flow chart of a measurement method 200 for performing a measurement task according to an embodiment of the present disclosure is shown. DETAILED DESCRIPTION

[0033] The various exemplary embodiments of the present disclosure are described in detail below with reference to the accompanying drawings. Although the exemplary methods and devices described below include software and / or firmware executed on hardware among other components, it should be noted that these examples are merely illustrative and should not be considered restrictive. For example, it is considered that any or all hardware, software, and firmware components can be implemented exclusively in hardware, exclusively in software, or in any combination of hardware and software. Therefore, although exemplary methods and devices have been described below, it should be readily understood by those skilled in the art that the examples provided are not intended to limit the manner in which these methods and devices are implemented.

[0034] In addition, the flowcharts and block diagrams in the accompanying drawings illustrate the possible architectures, functions and operations of the methods and systems according to various embodiments of the present disclosure. It should be noted that the functions marked in the boxes may also occur in an order different from that marked in the accompanying drawings. For example, two boxes represented in succession may actually be executed substantially in parallel, or they may sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the flowchart and / or block diagram, and the combination of boxes in the flowchart and / or block diagram, may be implemented using a dedicated hardware-based system that performs a specified function or operation, or may be implemented using a combination of dedicated hardware and computer instructions.

[0035] As mentioned above, the prior art has the following technical problems, that is, the operation of the traditional laser measuring device is inconvenient, and requires professional knowledge, and is less user-friendly. In order to solve the technical problems existing in the prior art, the inventor of the present disclosure thinks of using voice recognition technology to improve the laser measuring device, thereby improving its ease of use. In summary, the inventor of the present disclosure innovatively proposes a measuring system for implementing a measuring task, the measuring system for implementing a measuring task includes: a laser measuring device; a voice recognition unit, the voice recognition unit is configured to recognize the input voice signal and convert it into text information; an instruction matching module, the instruction matching module is configured to match the corresponding execution instruction for the laser measuring device to be executed based on the text information, wherein the laser measuring device is also configured to implement the measuring task based on the execution instruction. In this way, when the measuring system according to the present disclosure is used in a specific manner, the operator of the measuring system does not have to stop the work in hand, and can easily operate and control the laser measuring device through voice recognition technology, thereby improving the ease of use of the laser measuring device.

[0036] The following will be combined Figure 1 and Figure 2 To describe the information processing method for intelligent augmented reality device disclosed in the present disclosure. Figure 1 1 shows a system block diagram of a measurement system 100 for implementing a measurement task according to an embodiment of the present disclosure. Figure 2 A flow chart of a measurement method 200 for performing a measurement task according to an embodiment of the present disclosure is shown.

[0037] from Figure 1It can be seen that the measurement system 100 for implementing the measurement task according to the present disclosure includes at least the following three components, namely, a laser measurement device 110, a voice recognition unit 120 and an instruction matching module 130, wherein the laser measurement device 110 can be a rangefinder, a linecaster, a leveler and / or a total station. In this way, the measurement system according to the present disclosure can improve the usability of different types of laser measurement devices when used in practice, thereby enhancing its user-friendliness. In addition, the measurement system 100 for implementing the measurement task according to the present disclosure also includes a voice recognition unit 120, which is configured to recognize the input voice signal and convert it into text information. For example, in specific use, a dedicated voice recognition unit 120 can be configured for a certain laser measurement device 110, or the voice recognition unit 120 can be integrated into the laser measurement device 110, or the voice recognition unit in the existing smart device can be directly reused. Furthermore, the measurement system 100 for implementing the measurement task according to the present disclosure also includes an instruction matching module 130, and the instruction matching module 130 is configured to match the corresponding execution instruction for the laser measurement device 110 to execute based on the text information. For example, the instruction matching module 130 can extract keywords based on the text information recognized by the voice recognition unit 120 and find the corresponding execution instruction of the task to be executed. Of course, the execution instruction can be preset in the laser measurement device 110, or it can be obtained from a network location, for example, through networking. Then, after determining the execution instruction to be executed, the laser measurement device 110 is also configured to implement the measurement task based on the execution instruction.

[0038] Here, those skilled in the art should understand that if the speech recognition unit 120 and the instruction matching module 130 are not integrated into the laser measuring device 110, then a communication connection needs to be proposed between them in order to exchange this information. Here, the communication connection 140 can be, for example, a communication connection via a wired cable, or a communication connection by a wireless method. Preferably, in the technical solution according to the present disclosure, the wireless communication connection includes a Bluetooth connection and / or a WiFi connection. In this way, the smart device and the laser measuring device can communicate more easily, thereby improving the availability of the measurement system according to the present disclosure. Here, if an existing smart device is reused, the smart device can be a head-mounted glasses, a wearable device with a display, a smart watch, a smart phone, a tablet computer, or even a smart projector. Optionally, in the technical solution according to the present disclosure, the instruction matching module 130 is configured as an application software in the smart device. The laser measuring device 110 can be a measuring wheel or other measuring equipment based on laser technology, such as a level or a line projection instrument; and the communication connection 140 can be a network connection based on a WiFi protocol or a network connection based on other bus protocols, such as RJ45, ZigBee, Bluetooth, ProfiBus, etc., as long as the communication connection between the intelligent device including the voice recognition unit 120 and the instruction matching module 130 and the laser measuring device 110 can be achieved. In this way, when the measuring system according to the present disclosure is used, the operator of the measuring system can easily operate and control the laser measuring device through voice recognition technology without stopping the work in hand, thereby improving the ease of use of the laser measuring device.

[0039] Of course, not every time the text information recognized by the speech recognition unit 120 can be accurately matched, when it is not possible to directly accurately match, preferably, the measurement system 100 can also include, for example, an interaction unit (not shown in the figure), which is configured to interact with the operator of the measurement system based on the text information. In this way, the measurement system 100 according to the present disclosure can not only directly implement the measurement task, but also interact with the operator with the help of the interaction unit when the operator's language expression is not very clear or there is a problem, so as to obtain accurate information such as the operator's intention. For example, if the operator's pronunciation is not clear and accurate enough, the operator can be prompted to say it again through the interaction unit. If the voice issued by the operator may point to more than one measurement task, the operator can be allowed to select or sort multiple measurement tasks, that is, further confirmation can be made with the operator to ensure the accuracy of the measurement task performed.

[0040] Optionally, in the technical solution according to the present disclosure, a preset interaction database is stored in the interaction unit. In this way, the operator's unclear language expression problems or help information associated with the predetermined measurement task that can be anticipated can be preset and stored, and the interaction database can be directly called when needed to complete the guidance for the operator. For example, the interaction unit can be designed based on the designer's understanding, anticipating possible problems, and thus be tailored for the operator in advance to improve the operator's user experience when using it. Of course, the preset interaction database does not necessarily have to be stored locally, and can also be, for example, updated in real time, or obtained online from a predetermined network location when needed.

[0041] Of course, in a preferred technical solution according to the present disclosure, preset execution instructions are stored in the instruction matching module 130. In this way, the functions of the laser measuring device 110 can be associated with the preset execution instructions, thereby maximizing the convenience for the operator to use the laser measuring device 110. For example, for a rangefinder, its preset execution instructions are, for example, measuring the length of an object, measuring the area of ​​a regular figure, and when the figure to be measured is not a regular figure, for example, prompting the user to split it into a regular figure and then measure it, etc.

[0042] More preferably, in the technical solution according to the present disclosure, the speech recognition unit 120 is configured as a speech recognition unit 120 in an intelligent device. In this way, it is not necessary to equip the laser measurement device 110 with an independent speech recognition unit 120, but for example, the speech recognition unit 120 in an existing intelligent device can be reused, which can further reduce the cost of the measurement system 100 proposed according to the present disclosure and increase the possibility of its acceptance by the operator.

[0043] During specific operation, for example, the laser measuring device 110 can be connected to the application installed in the matching smart phone via Bluetooth. Then the operator issues a wake-up command, for example, by using the voice assistant of the smart phone to wake up the application. After the operator verbally expresses the measurement task that the laser measuring device 110 needs to complete, the application software recognizes it through voice recognition technology, analyzes the operator's language expression content and converts the operator's language into text information, and then converts the converted text information into Bluetooth instructions through the instruction matching module 130. Then, the Bluetooth instruction is sent to the laser measuring device 110 through the application of the smart phone to complete the relevant measurement task. Of course, the measurement task is not necessarily a single measurement task, it can be a series of measurement tasks, and the above steps can be repeated to complete a series of measurement tasks.

[0044] If the operator's voice has obvious dialect characteristics, or the operator is unclear, or the operator's intention is not clear, the application software can also provide an artificial intelligence (AI) assistant dialogue function, call the corresponding artificial intelligence interface, and help solve the problem in a conversational way. In this way, for instruments that do not need to be carried with them (such as leveling instruments), construction workers can use their surveying or marking functions without interrupting the current operation. For equipment with matching remote controls or mobile phone application software, construction workers do not need to carry remote controls and mobile phones with them to avoid the possibility of remote controls or mobile phones falling due to carrying them with them.

[0045] When construction workers have questions about operations, they can communicate with the application software to obtain help, which includes operating tips, precautions, or the application software can operate on their behalf.

[0046] Two specific application scenario examples are given below. One is to use a leveling instrument and an intelligent mobile communication device such as a smart phone. In this case, the intelligent mobile communication device can be installed with application software used in conjunction with the leveling instrument. In this case, in this embodiment, it is necessary to establish a wireless communication connection such as Bluetooth between the application software of the intelligent mobile communication device and the leveling instrument, so as to complete the measurement task of finding different slopes through the leveling instrument. In this case, the specific implementation steps are as follows:

[0047] First, place the leveling instrument on a suitable ground (depending on the specific construction scenario), and then turn on the power and Bluetooth. Next, the corresponding application software on a smart device such as a smartphone will be opened, and the Bluetooth device list will be searched in the application software to find the leveling instrument and establish a communication connection. Then, the operator can do other work (such as making other construction preparations, walking to the location where construction is required to start construction, etc.). During the construction process, if the laser needs to be shot with a certain slope, the operator can call up the application software installed in the smartphone, for example, saying: "Hey Siri, open the PLOTT application software (an application software that matches the laser measurement device of Northwest Instruments in the United States)". After calling up the application, verbally state the intention, such as "the leveling instrument reaches 10 degrees", and the application software converts it into text through voice recognition and matches the preset Bluetooth command for changing the slope. The Bluetooth command sent by the application software is sent to the leveling instrument. During the execution of the command, the application software continuously polls the status of the leveling instrument. After the application software polling is completed / timeout, the application software voice broadcasts "adjustment completed / failed", and when it fails, it can broadcast the specific reason according to the pre-set setting. When the slope needs to be adjusted again, repeat the above steps. After the construction is completed, similar to the above steps, the operator can verbally give a shutdown command, such as "turn off the leveler", to shut down the leveler.

[0048] In another measurement task, the laser measuring device used may be, for example, a laser measuring ruler, or an intelligent mobile communication device such as a smart phone. Of course, those skilled in the art should understand that the functions of the above-mentioned voice recognition unit 120 and the instruction matching module 130 may also be directly integrated into the laser measuring ruler. In such an application scenario, the intelligent mobile communication device also needs to be installed with an application software used in conjunction with the laser measuring ruler. In the specific operation process, this embodiment completes the operation of measuring a house by connecting the intelligent mobile communication device and the laser measuring ruler via Bluetooth. First, it is necessary to turn on the power of the leveling instrument and its Bluetooth connection. Then open the application software, search the Bluetooth device list in the application software, find the laser measuring ruler and make a communication connection. Next, assuming that the operator does not know how to calculate the perimeter and area, the current demand can be orally stated to the application software, such as "I want to measure the area and perimeter of the house, but I don't know how to measure and calculate, please give me some solutions". At this time, the application software on the smart phone can call the artificial intelligence interface to analyze the operator's intention and display optional results. The operator selects a solution and tells the application software his choice. For example, he can say to the smartphone: "I choose the method of dividing triangles. Next, I will tell you several groups of triangles. Each group of triangles is represented by 2 sides and their angles." The application software recognizes the voice, hits the preset calculation method (because the calculation methods of polygons are limited, they can be pre-coded. When the user's selected solution is hit, the application software can enter the specified calculation logic) and enters the recording state. The operator measures the length of 2 sides and the angle Tell the application to record, the application uses voice recognition to extract key information, calculates the area of ​​the triangle, and records the length of the left side and the length of the side opposite the angle. Repeat the above steps until all triangles are measured, and then the operator tells the application to calculate the result. The application will announce the perimeter and area by voice (the calculation method is more commonly used, so it will not be repeated here), and the results will be saved in the application for the operator to view or retrieve at any time.

[0049] In addition, a second aspect of the present disclosure further proposes a measurement method for performing a measurement task. Figure 2 FIG. 2 shows a flow chart of a measurement method 200 for implementing a measurement task according to an embodiment of the present disclosure. Figure 2It can be seen that the measurement method 200 according to the present disclosure includes at least the following four steps: first, receiving a voice input instruction in method step 210; then, recognizing the voice input instruction based on voice recognition technology in method step 220 to obtain converted text information; next, matching the corresponding execution instruction for the laser measurement device to execute based on the text information in method step 230; and finally, the laser measurement device implements the measurement task based on the execution instruction in method step 240. In this way, when the measurement method according to the present disclosure is used in practice, the operator of the measurement method can easily operate and control the laser measurement device through voice recognition technology without stopping the work in hand, thereby improving the usability of the laser measurement device.

[0050] Preferably, in the technical solution according to the present disclosure, the measurement method 200 further includes: interacting with the implementer of the measurement task based on the text information. More preferably, in the technical solution according to the present disclosure, interacting with the implementer of the measurement task based on the text information further includes: interacting with the implementer of the measurement task based on a preset interaction database and the text information; and when the text information can directly match the execution instruction and the execution instruction matching the text information is determined as the execution instruction, or when the text information cannot directly match the execution instruction, the text information is matched with the execution instruction after semantic conversion or decomposition and one or more execution instructions matching the text information are determined as the execution instruction. In this way, the measurement method according to the present disclosure can not only directly implement the measurement task, but also can interact with the operator with the help of the interaction unit when the operator's language expression is not very clear or there is a problem, so as to obtain accurate information such as the operator's intention.

[0051] In the technical solution according to the present disclosure, matching the execution instruction corresponding to the laser measuring device based on the text information further includes: matching the execution instruction corresponding to the laser measuring device based on the text information and the stored preset execution instruction. In this way, the function of the laser measuring device can be associated with the preset execution instruction, thereby maximizing the convenience for the operator to use the laser measuring device.

[0052] In the technical solution according to the present disclosure, the measuring method further includes: establishing a communication connection between the laser measuring device and the smart device. In this way, the smart device and the laser measuring device can communicate more easily, thereby improving the usability of the measuring system according to the present disclosure.

[0053] To sum up, in the technical solution according to the contents of the present disclosure, when the measuring system according to the contents of the present disclosure is used, the operator of the measuring system can easily operate and control the laser measuring device through voice recognition technology without having to stop the work in hand, thereby improving the usability of the laser measuring device.

[0054] The above is only an optional embodiment of the embodiment of the present disclosure, and is not intended to limit the embodiment of the present disclosure. For those skilled in the art, the embodiment of the present disclosure may have various changes and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the embodiment of the present disclosure shall be included in the protection scope of the embodiment of the present disclosure.

[0055] Although the embodiments of the present disclosure have been described with reference to several specific embodiments, it should be understood that the embodiments of the present disclosure are not limited to the specific embodiments disclosed. The embodiments of the present disclosure are intended to cover various modifications and equivalent arrangements included in the spirit and scope of the appended claims. The scope of the claims is consistent with the broadest interpretation, thereby including all such modifications and equivalent structures and functions.

Claims

1. A measuring system for carrying out a measuring task, characterized in that The measuring system comprises: Laser measuring device; A speech recognition unit, the speech recognition unit being configured to recognize an input speech signal and convert it into text information; an instruction matching module, wherein the instruction matching module is configured to match the corresponding execution instruction for execution by the laser measuring device based on the text information, Wherein, the laser measurement device is further configured to implement the measurement task based on the execution instruction.

2. The measuring system according to claim 1, characterized in that The measuring system further comprises: An interaction unit is configured to interact with an operator of the measurement system based on the text information, wherein a preset interaction database is stored in the interaction unit.

3. The measuring system according to claim 1, characterized in that The instruction matching module stores preset execution instructions, and the speech recognition unit is configured as a speech recognition unit in a smart device.

4. The measuring system according to claim 3, characterized in that The smart device is connected to the laser measuring device via wired or wireless communication.

5. The measuring system according to claim 3, characterized in that The instruction matching module is configured as application software in the smart device.

6. A measuring method for carrying out a measuring task, characterized in that: The measuring method comprises: Receiving voice input commands; Recognize the voice input command based on voice recognition technology to obtain converted text information; Matching the corresponding execution instruction for the laser measuring device to execute based on the text information; and The laser measuring device performs the measuring task based on the execution instruction.

7. The measuring method according to claim 6, characterized in that: The measuring method further comprises: Interact with an implementer of the measurement task based on the text information.

8. The measuring method according to claim 7, characterized in that: Interacting with the implementer of the measurement task based on the text information further includes: interacting with an implementer of the measurement task based on a preset interaction database and the text information; and When the text information can be directly matched with the execution instruction and the execution instruction matching the text information is determined as the execution instruction, or when the text information cannot be directly matched with the execution instruction, the text information is matched with the execution instruction after semantic conversion or decomposition and one or more execution instructions matching the text information are determined as the execution instruction.

9. The measuring method according to claim 6, characterized in that: The execution instruction corresponding to the text information and used for the laser measuring device to execute further includes: Based on the text information and the stored preset execution instructions, the corresponding execution instructions for execution by the laser measuring device are matched.

10. The measuring method according to claim 6, characterized in that: The measuring method further comprises: Establish a communication link between the laser measurement device and the smart device.

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