An engineered migrant housing survey device
The engineering resettlement housing survey equipment, which integrates distance measurement, azimuth, and positioning modules, solves the problems of time-consuming, labor-intensive, and data-inaccurate traditional manual measurement. It enables rapid, accurate, and automatic generation and signature confirmation of housing survey data, thereby improving the efficiency and accuracy of engineering resettlement housing surveys.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-05
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional methods of surveying housing for migrant workers rely on manual measurement and recording, which is time-consuming, labor-intensive, prone to data omissions and errors, cannot automatically generate house floor plans and survey forms, and cannot complete the survey process in one go, resulting in low efficiency.
Design an engineering resettlement housing survey device that integrates a distance measurement module, an azimuth measurement module, a positioning module, a data processing module, and an input module. It measures the house size, azimuth, and location data in real time, generates house floor plans and survey forms, and supports automatic generation and signature confirmation.
It enables rapid and accurate measurement and recording of housing surveys, automatically generates house floor plans and survey forms, improves survey efficiency and accuracy, reduces manual intervention, and supports the one-time completion of the survey process.
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Figure CN121254983B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of housing survey technology, and in particular to a housing survey device for engineering immigrants. Background Technology
[0002] Resettlement is a crucial aspect of the project's construction. Housing surveys are a vital component of this process. Traditional methods rely heavily on manual measurement and recording. While various methods exist, such as measuring tapes and laser rangefinders, the current practice involves manual measurement of dimensions using tape measures or rangefinders, followed by manual recording of these dimensions on paper. This manual approach, relying on single or multiple measurements, is time-consuming, labor-intensive, and prone to data omissions and errors, impacting the efficiency and accuracy of subsequent resettlement efforts. Furthermore, traditional methods only provide dimensions but cannot integrate them with floor plans, area information, or other relevant details (such as structure and use). They fail to automatically generate floor plans and survey forms, nor can they facilitate direct signature confirmation from resettled residents. This results in a cumbersome and inefficient process, making it impossible to complete the housing survey in one go. Summary of the Invention
[0003] The purpose of this application is to provide an engineering immigration housing survey device that can improve efficiency and accuracy.
[0004] To achieve the above objectives, this application provides the following solution.
[0005] This application provides a survey device for engineering resettlement housing, which includes: a device body and a ranging module, an azimuth measurement module, a positioning module, a data processing module, an input module, and a data transmission module installed on the device body;
[0006] The ranging module is used to measure the size of the house in real time when the investigator moves the engineering resettlement housing survey equipment in the house to be investigated, and obtain the house size data.
[0007] The azimuth measurement module is used to measure the azimuth of the house in real time when the investigator moves the engineering resettlement housing survey equipment in the house to be investigated, and obtain the house azimuth data.
[0008] The positioning module is used to locate the position of the investigator in real time and obtain the house location data when the investigator moves in the house to be investigated while holding the engineering resettlement housing survey equipment.
[0009] The data processing module is used to generate a floor plan of the house to be investigated based on the house size data, the house azimuth data and the house location data, and to calculate the house area of the house to be investigated based on the floor plan.
[0010] The input module is used to input relevant information about the houses to be investigated; the relevant information includes the land acquisition scope for the construction of resettlement households, administrative divisions, household head information, house structure, house use, and number of floors;
[0011] The data processing module is used to generate a housing survey form based on the house area and related information.
[0012] The data transmission module is communicatively connected to the data processing module; the data transmission module is used to transmit the house floor plan and the house survey form to the printer; the immigrant household is used to sign and confirm the printed house floor plan and house survey form.
[0013] Optionally, the ranging module is a laser rangefinder; the azimuth measurement module is a gyroscope; the positioning module is a BeiDou positioning module; the data processing module is a processor; and the input module is a touch screen.
[0014] Optionally, the positioning module is also used to locate the house to be investigated and determine the location information of the house to be investigated;
[0015] The data processing module is used to determine whether the location information of the house to be investigated is within the construction land acquisition area of the immigrant households. If so, it issues a start investigation command to control the ranging module, the azimuth measurement module and the positioning module to start working.
[0016] Optionally, the engineering resettlement housing survey equipment further includes: a camera module installed on the device body, wherein the camera module is a camera;
[0017] The camera module is used to take pictures of the houses to be investigated, thereby obtaining photos of the houses;
[0018] The data processing module is used to receive the house photos.
[0019] Optionally, the engineering resettlement housing survey equipment further includes: a storage module installed on the device body, the storage module being communicatively connected to the data processing module;
[0020] The storage module includes a memory for storing the house size data, the house azimuth data, the house location data, the house floor plan, the house area, the house related information, the house survey form, and the house photos.
[0021] Optionally, the data transmission module includes a wireless network card and a Bluetooth module. The wireless network card is used to upload the house size data, the house azimuth data, the house location data, the house floor plan, the house area, the house related information, the house survey form, and the house photos to the server. The Bluetooth module is used to transmit the house floor plan and the house survey form to the printer, and the printer is a Bluetooth printer.
[0022] Optionally, the device body is made of PVC; the input module is installed on the front of the device body, the camera module is installed on the back of the device body, the ranging module is installed on the top of the device body, the speaker and charging port are installed on the bottom of the device body, the power button and volume control buttons are installed on the side of the device body, and the azimuth measurement module, the positioning module, the data processing module, the data transmission module, the storage module and the battery are installed inside the device body.
[0023] Optionally, both the speaker and the volume control keys are communicatively connected to the data processing module; the data processing module is used to receive the adjustment signal generated by the volume control keys and adjust the sound of the speaker based on the adjustment signal; the speaker is used to play the house size data, the house azimuth data, the house location data, the house area, and related house information.
[0024] Optionally, the charging interface is used to connect to an external power source to charge the battery; the battery is used to power the engineering resettlement housing survey equipment.
[0025] The power button is communicatively connected to the data processing module; the data processing module is used to receive the power-on signal and power-off signal generated by the power button, and to power on the engineering resettlement housing survey equipment based on the power-on signal and to power off the engineering resettlement housing survey equipment based on the power-off signal.
[0026] Optionally, the land acquisition scope for the immigrant households' construction and the administrative division are imported through the data processing module.
[0027] According to the specific embodiments provided in this application, this application has the following technical effects:
[0028] This application provides a surveying device for resettlement housing, comprising a distance measuring module, an azimuth measurement module, and a positioning module. These modules are used to measure the dimensions and azimuth of the housing under investigation in real time while the surveyor moves within the housing, and to locate the surveyor's position in real time. This yields housing dimension data, azimuth data, and housing location data, enabling rapid and automatic measurement and recording of the housing under investigation. This eliminates the need for manual measurement and recording, solving the problems of time-consuming, labor-intensive methods and the potential for data omissions and errors. The data processing module generates a floor plan of the housing under investigation based on the housing dimension data, azimuth data, and housing location data, and then... The system calculates the area of the houses to be surveyed. The input module is used to input relevant information about the houses, including the land acquisition scope for resettlement households, administrative divisions, householder information, house structure, house use, and number of floors. The data processing module generates a house survey form based on the house area and related information. The data transmission module transmits the house floor plan and house survey form to the printer. The resettled households sign the printed house floor plan and house survey form to confirm their identity. This system automatically generates house floor plans and house survey forms and allows resettled households to sign for confirmation, completing the resettlement housing survey in one go. This solves the problems of cumbersome processes and low efficiency, and improves the efficiency and accuracy of the resettlement housing survey work. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0030] Figure 1 This is a front view of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0031] Figure 2 This is a rear view of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0032] Figure 3 This is a top view of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0033] Figure 4 This is a bottom view of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0034] Figure 5 The image shows a right view of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0035] Figure 6 An internal perspective view of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0036] Figure 7 This is a flowchart illustrating the use of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0037] Figure 8 This is a data processing flowchart of an engineering resettlement housing survey device provided in Embodiment 1 of this application.
[0038] Figure label:
[0039] 1-Equipment body; 11-Touch display screen; 12-Volume control buttons; 13-Power button; 14-Charging interface; 15-Speaker; 21-Distance measuring module; 22-Positioning module; 23-Camera module; 24-Data transmission module; 25-Storage module; 26-Azimuth angle measurement module; 27-Data processing module; 28-Battery. Detailed Implementation
[0040] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0041] Example 1.
[0042] This embodiment provides a housing survey device for engineering resettlement, such as... Figures 1-6 As shown, the engineering resettlement housing survey equipment includes: equipment body 1 and a ranging module 21, an azimuth measurement module 26, a positioning module 22, a data processing module 27, an input module, and a data transmission module 24 installed on the equipment body 1.
[0043] The ranging module 21 is used to measure the size of the house in real time when the investigator moves the handheld engineering resettlement housing survey equipment inside the house to be investigated, and obtain the house size data.
[0044] The azimuth measurement module 26 is used to measure the azimuth of the house under investigation in real time when the investigator moves the handheld engineering resettlement housing survey equipment inside the house to be investigated, and obtain the house azimuth data.
[0045] The positioning module 22 is used to locate the position of the investigator in real time and obtain the house location data when the investigator moves in the house under investigation with the handheld engineering resettlement housing survey equipment.
[0046] The data processing module 27 is communicatively connected to the ranging module 21, the azimuth measurement module 26 and the positioning module 22 respectively. The data processing module 27 is used to generate a floor plan of the house to be investigated based on the house size data, house azimuth data and house location data, and calculate the house area of the house to be investigated based on the floor plan.
[0047] The input module is used to input relevant information about the houses to be investigated. This information includes the land acquisition scope for the construction of resettlement households, administrative divisions, household head information, house structure, house use, and number of floors.
[0048] The data processing module 27 is communicatively connected to the input module. The data processing module 27 is used to generate a housing survey form based on the housing area and housing-related information.
[0049] The data transmission module 24 is communicatively connected to the data processing module 27. The data transmission module 24 is used to transmit the house floor plan and house survey form to the printer, which is used by the immigrant household to sign and confirm the printed house floor plan and house survey form.
[0050] The engineering resettlement housing survey equipment in this embodiment can quickly acquire relevant data for engineering resettlement housing surveys, namely, quickly acquire the house size data, house azimuth data, house location data, and related information of the house to be surveyed. Based on the house size data, house azimuth data, and house location data, it generates a house floor plan of the house to be surveyed, and calculates the house area based on the house floor plan. Based on the house area and related information, it generates a housing survey form. It can quickly and accurately generate house floor plans and housing survey forms. Subsequently, the house floor plans and housing survey forms are transmitted to a printer, and the resettled households use them to sign and confirm the printed house floor plans and housing survey forms. It can complete the entire process of engineering resettlement housing surveys in one go, improving efficiency.
[0051] The engineering resettlement in this embodiment can be reservoir engineering resettlement, but it can also be other types of engineering resettlement.
[0052] To address the shortcomings of traditional methods for surveying housing for relocated residents, this embodiment provides a housing survey device for relocated residents. By integrating multiple sensors and data processing technologies, it enables rapid and automatic measurement and recording of the houses to be surveyed for relocated households. This eliminates the need for manual measurement and recording, solving the problems of being time-consuming, labor-intensive, and prone to data omissions and errors. Based on the measurement data (i.e., house size data, house azimuth data, and house location data), it generates corresponding house floor plans and house areas. Furthermore, combined with the acquired house-related information, it generates corresponding house survey forms, providing necessary paper-based supporting documents for subsequent relocation indicator statistics and relocation signature confirmation. The device can also print house floor plans and house survey forms for relocated households to sign and confirm, achieving automatic generation of house floor plans and house survey forms while requiring relocated households to sign and confirm, completing the relocated housing survey in one go. This solves the problems of cumbersome processes and low efficiency, improving the efficiency and accuracy of the relocated housing survey work.
[0053] The engineering resettlement housing survey equipment in this embodiment also includes: a camera module 23 installed on the equipment body 1, the camera module 23 being communicatively connected to the data processing module 27, the camera module 23 being used to take pictures of the houses to be surveyed and obtain house photos, and the data processing module 27 being used to receive the house photos.
[0054] The engineering resettlement housing survey equipment in this embodiment also includes: a storage module 25 installed on the equipment body 1. The storage module 25 is communicatively connected to the data processing module 27. The storage module 25 includes a memory, which is used to store housing size data, housing azimuth data, housing location data, housing floor plan, housing area, housing related information, housing survey form and housing photos.
[0055] The following, combined with Figures 1-6 This document provides a detailed description of the engineering resettlement housing survey equipment used in this embodiment, including the following modules.
[0056] (1) Equipment body 1.
[0057] The engineering resettlement housing survey equipment in this embodiment includes an equipment body 1, which serves as a base for mounting other components of the equipment. The equipment body 1 can be made of PVC (Polyvinyl Chloride, a widely used synthetic plastic), meaning that the material of the equipment body 1 can be PVC, which is more lightweight. Of course, other materials can also be selected.
[0058] As an example, the mounting locations of other components of the engineering immigration housing survey equipment on the equipment body 1 can be as follows: Figure 1 As shown, an input module is installed on the front of the device body 1. The input module can be a touch screen display 11, such as... Figure 2 As shown, a camera module 23 is installed on the back of the device body 1. The camera module 23 can be a rear-facing camera, such as... Figure 3 As shown, a ranging module 21 is installed on the top of the device body 1. The ranging module 21 can be a laser ranging module, specifically a laser rangefinder, such as... Figure 4 As shown, a speaker 15 and a charging port 14 are installed at the bottom of the device body 1. The charging port 14 can be a USB Type-C interface, such as... Figure 5 As shown, a power button 13 and a volume control button 12 are installed on the side of the device body 1, as follows: Figure 6 As shown, the device body 1 is equipped with an azimuth measurement module 26, a positioning module 22, a data processing module 27, a data transmission module 24, a storage module 25, and a battery 28. The azimuth measurement module 26 can be a gyroscope, the positioning module 22 can be a Beidou positioning module, the data processing module 27 can be a processor, and the storage module 25 can include memory and storage.
[0059] Of course, this embodiment can also be configured to install other components of the engineering immigration housing survey equipment on the equipment body 1 according to different needs.
[0060] (2) Distance measuring module 21.
[0061] The ranging module 21 is installed on the device body 1, specifically on the top of the device body 1. The ranging module 21 is electrically connected to the battery 28, which is used to power the ranging module 21. The ranging module 21 is communicatively connected to the data processing module 27, which is used to send house size data to the data processing module 27. The ranging module 21 can be a laser ranging module, specifically a laser rangefinder.
[0062] The ranging module 21 is used to measure the dimensions of the house in real time when the investigator moves the handheld engineering resettlement housing survey equipment inside the house to be investigated, and obtain the house size data. As a ranging sensor, the ranging module 21 can quickly and accurately measure the length, width and height of the house to be investigated. It can determine the external length, width and height of the house to be investigated, as well as the length, width and height of each room in the house to be investigated, and the length, width and height of the door and windows inside each room.
[0063] (3) Azimuth measurement module 26.
[0064] The azimuth measurement module 26 is installed on the device body 1, specifically inside the device body 1. The azimuth measurement module 26 is electrically connected to the battery 28, which is used to power the azimuth measurement module 26. The azimuth measurement module 26 is communicatively connected to the data processing module 27, which is used to send the building azimuth data to the data processing module 27. The azimuth measurement module 26 can be a gyroscope.
[0065] The azimuth measurement module 26 is used to measure the azimuth of the house under investigation in real time when the investigator moves the handheld engineering resettlement housing survey equipment inside the house under investigation, and obtain the azimuth data of the house. As an azimuth measurement sensor, the azimuth measurement module 26 can quickly and accurately measure the azimuth of the house under investigation, and can determine the azimuth of the walls and other positions in each room of the house under investigation, which represents the direction of the wall.
[0066] (4) Positioning module 22.
[0067] The positioning module 22 is installed on the device body 1, specifically inside the device body 1. The positioning module 22 is electrically connected to the battery 28, which is used to power the positioning module 22. The positioning module 22 is communicatively connected to the data processing module 27, which is used to send house location data to the data processing module 27. The positioning module 22 can be a Beidou positioning module.
[0068] The positioning module 22 is used to locate the position of the investigator in real time when the investigator moves the handheld engineering resettlement housing survey equipment in the house to be investigated, and obtain the house location data. As a position measurement sensor, the positioning module 22 can realize geographic location positioning, determine the position of the investigator, and then determine the position information of the data measured by the ranging module 21 and the azimuth measurement module 26.
[0069] The positioning module 22 is also used to locate the houses to be investigated and determine their location information. The data processing module 27 is used to determine whether the location information of the houses to be investigated is within the construction land acquisition area of the immigrant households (which is a pre-set area, and only houses within this area need to be investigated). If so, the houses to be investigated need to be investigated, and a start investigation command is issued to control the distance measuring module 21, azimuth measurement module 26 and positioning module 22 to start working and begin the house investigation. If not, the houses to be investigated do not need to be investigated.
[0070] (5) Data processing module 27.
[0071] The data processing module 27 is installed on the device body 1, specifically inside the device body 1. The data processing module 27 is electrically connected to the battery 28, which powers the data processing module 27. The data processing module 27 can be a processor, specifically a high-performance computing processor or a high-performance central processing unit.
[0072] Data processing module 27 can process measurement data in real time, draw house floor plans, calculate house area, generate house survey forms, and realize data analysis.
[0073] When drawing the house floor plan and calculating the house area, the data processing module 27 is connected to the distance measuring module 21, the azimuth measurement module 26 and the positioning module 22 respectively. The data processing module 27 is used to generate the house floor plan of the house to be investigated based on the house size data, house azimuth data and house location data, and calculate the house area of the house to be investigated based on the house floor plan.
[0074] When generating the housing survey form, the data processing module 27 is connected to the input module. The data processing module 27 is used to generate the housing survey form based on the housing area and housing-related information input through the input module.
[0075] (6) Input module.
[0076] The input module is installed on the device body 1, specifically on the front of the device body 1. The input module is electrically connected to the battery 28, which is used to power the input module. The input module is communicatively connected to the data processing module 27, which is used to send house-related information to the data processing module 27. The input module can be a touch screen 11.
[0077] The input module is used to input relevant information about the houses to be investigated. This information includes the land acquisition area for the resettlement households, administrative divisions, household head information, house structure, house use, and number of floors. The land acquisition area and administrative divisions can be directly imported through the data processing module 27, eliminating the need for manual input through the input module and improving efficiency. Alternatively, they can be manually entered through the input module (i.e., manual reporting). House head information, house structure, house use, and number of floors can be manually entered through the input module. If the household head information includes the household head's name and ID number, a photo of the ID card can be taken using a camera, and the data processing module 27 can then recognize the photo to determine the household head's name and ID number, eliminating the need for manual input through the input module.
[0078] Administrative division refers to the province, city, county, township, village, and group where the house to be investigated is located; household head information refers to the information of the household head of the house to be investigated, which generally includes the household head's name and ID number; house structure refers to the structure of the house to be investigated, which generally includes concrete structure, earthen structure, stone and wood structure, and brick and wood structure; house use refers to the purpose of the house to be investigated, which generally includes residential, rental, production, and storage of miscellaneous items; and number of floors refers to the number of floors of the house to be investigated.
[0079] (7) Data transmission module 24.
[0080] The data transmission module 24 is installed on the device body 1, specifically inside the device body 1. The data transmission module 24 is electrically connected to the battery 28, which is used to power the data transmission module 24. The data transmission module 24 is communicatively connected to the data processing module 27, and is used to send data to external devices.
[0081] The data transmission module 24 includes a wireless network card and a Bluetooth module, supporting wireless network transmission (via the wireless network card) and Bluetooth transmission (via the Bluetooth module). It can upload data to the server for storage in real time or send it to a printer (which can be a portable Bluetooth printer) for printing.
[0082] In this embodiment, the data transmission module 24 includes a wireless network card and a Bluetooth module. The wireless network card is used to upload house size data, house azimuth data, house location data, house floor plan, house area, house related information, house survey form and house photos (obtained by a camera) to the server. The Bluetooth module is used to transmit the house floor plan and house survey form to the printer, which is a Bluetooth printer.
[0083] When transmitting data to the printer, the data transmission module 24 transmits the house floor plan and house survey form to the printer, which the immigrant household uses to sign and confirm the printed house floor plan and house survey form.
[0084] (8) Camera module 23.
[0085] The camera module 23 is installed on the device body 1, specifically on the back of the device body 1. The camera module 23 is electrically connected to the battery 28, which is used to power the camera module 23. The camera module 23 is communicatively connected to the data processing module 27, which is used to send photos of the house to the data processing module 27. The camera module 23 can be a camera.
[0086] The camera module 23 is used to take pictures of the house to be investigated and obtain pictures of the house. Specifically, it can take pictures of any location of the house to be investigated based on user needs. For example, it can take pictures of the exterior and interior of the house to be investigated, and can take pictures of the walls of the room to determine the material. The data processing module 27 is used to receive the pictures of the house.
[0087] Traditionally, photos of houses are taken with a mobile phone and then linked to other devices for manual processing. In this embodiment, by setting up a camera module 23, photos of houses can be acquired through a single device, eliminating the need for other devices.
[0088] (9) Storage module 25.
[0089] The storage module 25 is installed on the device body 1, specifically inside the device body 1. The storage module 25 is electrically connected to the battery 28, which is used to power the storage module 25. The storage module 25 is communicatively connected to the data processing module 27, which is used to store the data sent by the data processing module 27.
[0090] The storage module 25 includes a memory and a storage device. The memory is used to temporarily cache relevant data from the data processing module 27, and the storage device is used to store house size data, house orientation data, house location data, house floor plan, house area, house related information, house survey form, and house photos.
[0091] (10) Speaker 15 and volume control 12.
[0092] Speaker 15 is mounted on the device body 1, specifically at the bottom of the device body 1. Speaker 15 is electrically connected to battery 28, which powers speaker 15. Speaker 15 is communicatively connected to data processing module 27 and is used to play data. Volume control 12 is mounted on the device body 1, specifically at the side of the device body 1. Volume control 12 is electrically connected to battery 28, which powers volume control 12. Volume control 12 is communicatively connected to data processing module 27 and is used to adjust the volume of speaker 15.
[0093] Both the speaker 15 and the volume control key 12 are communicatively connected to the data processing module 27. The data processing module 27 is used to receive the adjustment signal generated by the volume control key 12 (by manually pressing the volume control key 12, an adjustment signal is generated to increase or decrease the volume), and adjust the sound of the speaker 15 based on the adjustment signal. The speaker 15 is used to play house size data, house azimuth data, house location data, house area and house related information.
[0094] (11) Charging port 14, battery 28 and power button 13.
[0095] The charging port 14 is installed on the device body 1, specifically at the bottom of the device body 1. The charging port 14 can be a USB Type-C interface. The battery 28 is installed on the device body 1, specifically inside the device body 1. The battery 28 is used to power other components. The power button 13 is installed on the device body 1, specifically on the side of the device body 1. The power button 13 is electrically connected to the battery 28, and the battery 28 is used to power the power button 13. The power button 13 is communicatively connected to the data processing module 27, and the power button 13 is used for power on / off control.
[0096] The charging port 14 is used to connect an external power source to charge the battery 28.
[0097] Battery 28 is used to power the engineering immigration housing survey equipment.
[0098] The power button 13 is communicatively connected to the data processing module 27. The data processing module 27 is used to receive the power-on signal and power-off signal generated by the power button 13 (generated by manually pressing the power button 13), and to power on the engineering resettlement housing survey equipment based on the power-on signal and power off the engineering resettlement housing survey equipment based on the power-off signal.
[0099] The working principle of the engineering resettlement housing survey equipment in this embodiment is as follows: Survey personnel move the handheld equipment around and inside the houses of the resettled households to be surveyed. They measure the house dimensions using a laser rangefinder, the azimuth angle using a gyroscope, and the geographical location using a BeiDou positioning module. This marks the house's position within the resettlement household's land acquisition area. Simultaneously, the equipment's built-in housing survey system uses the acquired house dimensions, azimuth angle, and location data to create a closed-loop floor plan and generate the house area. Based on the floor plan and calculated area, the survey personnel fill out a housing survey form using a dynamic table, recording information such as the resettlement household's land acquisition area, administrative division, head of household information, house structure, house use, number of floors, and house area, thus generating the housing survey form. The investigators sent the house floor plan and house survey form to a portable Bluetooth printer via Bluetooth module for printing. After printing, the paper documents (i.e., the paper house floor plan and house survey form) were given to the immigrant household for signature confirmation. After the signature confirmation was completed, the documents were filed and kept, thus completing the house survey work for the immigrant household.
[0100] like Figures 1-6As shown, the engineering resettlement housing survey equipment of this embodiment includes a device body 1. A touch screen 11 is installed on the front (i.e., front end) of the device body 1, a camera module 23 is installed on the back (i.e., rear end) of the device body 1, a ranging module 21 is installed on the top, a charging interface 14 and a speaker 15 are installed on the bottom, and a volume control button 12 and a power button 13 are installed on the side (i.e., right side). The device body 1 contains a positioning module 22, a data transmission module 24, an azimuth angle measurement module 26, a storage module 25, a data processing module 27 and a battery 28. All modules are connected to the data processing module 27, and the engineering resettlement housing survey equipment is powered by the battery 28.
[0101] Through the above design, the ranging module 21 transmits the measured house dimensions to the data processing module 27, the azimuth measurement module 26 transmits the measured house azimuth data to the data processing module 27, and the positioning module 22 transmits the measured house position data to the data processing module 27. The data processing module 27 processes the acquired measurement data and displays it on the touch screen 11 in the form of vector line segments. After the investigator walks around the house to be investigated and completes the measurement, the data processing module 27 closes all the vector lines to generate a house floor plan and calculates the house area. Further, based on the house-related information, it generates a house survey form. At this point, the data processing module 27 generates the house floor plan and the house survey form. The Bluetooth module transmits the house floor plan and the house survey form to a portable Bluetooth printer for printing. The immigrant household signs and confirms the printed paper documents. Figure 7 and Figure 8 As shown.
[0102] The specific benefits of the engineering resettlement housing survey equipment in this embodiment are as follows.
[0103] (1) Quick acquisition of measurement data: Compared with the traditional manual measurement method, the engineering resettlement housing survey equipment can quickly acquire measurement data and process the measurement data simultaneously to generate house floor plans and house survey forms, which significantly improves the speed of engineering resettlement housing survey and reduces manpower and time costs.
[0104] (2) Accurate measurement data: Integrating multiple sensors and advanced data processing technology ensures the accuracy and reliability of measurement data.
[0105] (3) High real-time performance: The completed house floor plan and house survey form can be printed in real time via Bluetooth printer and signed and confirmed on site.
[0106] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, data stored, data displayed, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use and processing of the relevant data must comply with relevant regulations.
[0107] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0108] This document uses specific examples to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the methods and core ideas of this application. Furthermore, those skilled in the art will recognize that, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. An engineered migrant housing survey apparatus, characterized by, The engineering immigrant house investigation equipment comprises an equipment body and a distance measuring module, an azimuth measuring module, a positioning module, a data processing module, an input module and a data transmission module installed on the equipment body; The distance measuring module is used for measuring the size of the house to be investigated in real time when an investigator moves in the house to be investigated while holding the engineering immigrant house investigation equipment, determining the length, width and height of the outside of the house to be investigated and the length, width and height of each room in the house to be investigated, and obtaining house size data; The azimuth measuring module is used for measuring the azimuth of the house to be investigated in real time when the investigator moves in the house to be investigated while holding the engineering immigrant house investigation equipment, and obtaining house azimuth data; The positioning module is used for positioning the position of the investigator in real time when the investigator moves in the house to be investigated while holding the engineering immigrant house investigation equipment, and obtaining house position data; The data processing module is used for generating a house layout of the house to be investigated based on the house size data, the house azimuth data and the house position data, specifically, closing and drawing the obtained house size data, the house azimuth data and the house position data into a house layout, and calculating a house area of the house to be investigated based on the house layout; The input module is used for inputting house related information of the house to be investigated; the house related information comprises a construction land range of the immigrant household, an administrative division, household information, a house structure, a house purpose and a house number of floors; The data processing module is used for generating a house investigation form based on the house area and the house related information; The data transmission module is in communication connection with the data processing module; the data transmission module is used for transmitting the house layout and the house investigation form to a printer; the immigrant household is used for signing and confirming in the printed house layout and house investigation form, and archiving and retaining after signing and confirming; The positioning module is also used for positioning the house to be investigated to determine position information of the house to be investigated; The data processing module is used for judging whether the position information of the house to be investigated is located in the construction land range of the immigrant household; if yes, a start investigation instruction is sent to control the distance measuring module, the azimuth measuring module and the positioning module to start working; A loudspeaker is installed at the bottom of the equipment body, a volume adjusting key is installed at the side of the equipment body, and the loudspeaker and the volume adjusting key are both in communication connection with the data processing module; the data processing module is used for receiving an adjusting signal generated by the volume adjusting key and adjusting the sound of the loudspeaker based on the adjusting signal; and the loudspeaker is used for playing the house size data, the house azimuth data, the house position data, the house area and the house related information.
2. The engineered emigrant house investigation apparatus of claim 1, wherein, The distance measuring module is a laser range finder; the azimuth measuring module is a gyroscope; the positioning module is a Beidou positioning module; the data processing module is a processor; and the input module is a touch display screen.
3. The engineered emigrant house investigation apparatus of claim 1, wherein, The engineering emigrant house investigation equipment further comprises a camera module installed on the equipment body, wherein the camera module is a camera. The camera module is used for taking pictures of the house to be investigated to obtain house photos. The data processing module is used for receiving the house photos.
4. The engineered migrant housing survey apparatus of claim 3, wherein, The engineering emigrant house investigation equipment further comprises a storage module installed on the equipment body, wherein the storage module is in communication connection with the data processing module. The storage module comprises a storage device, wherein the storage device is used for storing the house size data, the house azimuth angle data, the house location data, the house layout, the house area, the house related information, the house investigation table and the house photos.
5. The engineered migrant housing survey apparatus of claim 4, wherein, The data transmission module comprises a wireless network card and a Bluetooth module, wherein the wireless network card is used for uploading the house size data, the house azimuth angle data, the house location data, the house layout, the house area, the house related information, the house investigation table and the house photos to a server, and the Bluetooth module is used for transmitting the house layout and the house investigation table to the printer, wherein the printer is a Bluetooth printer.
6. The engineered migrant housing survey apparatus of claim 4, wherein, The material of the equipment body is PVC; the front of the equipment body is provided with the input module, the back of the equipment body is provided with the camera module, the top of the equipment body is provided with the distance measuring module, the bottom of the equipment body is provided with a charging interface, the side of the equipment body is provided with a power key, and the inside of the equipment body is provided with the azimuth angle measuring module, the positioning module, the data processing module, the data transmission module, the storage module and a battery.
7. The engineered migrant house survey apparatus of claim 6, wherein, The charging interface is used for connecting an external power supply to charge the battery; and the battery is used for supplying power to the engineering emigrant house investigation equipment. The power key is in communication connection with the data processing module; the data processing module is used for receiving a power-on signal and a power-off signal generated by the power key, and powering on the engineering emigrant house investigation equipment based on the power-on signal and powering off the engineering emigrant house investigation equipment based on the power-off signal.
8. The engineered migrant house survey apparatus of claim 1, wherein, The emigrant house construction land acquisition range and the administrative division are imported through the data processing module.
Citation Information
Patent Citations
House measurement system based on laser ranging
CN110161515A