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Building construction site personnel efficiency management system and method

A technology for on-site personnel and construction, applied in the field of construction site personnel efficiency management system, can solve problems such as inability to trace construction quality back to people, crosstalk, and effective methods for supervising and improving the efficiency of construction personnel, etc., to achieve high precision with high-efficiency effects

Pending Publication Date: 2019-05-17
孔祥明
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] (1) In the current construction field, there is no effective way to supervise and improve the efficiency of construction personnel;
[0007] (2) Most of the existing indoor positioning methods use UWB, RFID and other methods to achieve positioning, but these methods have problems of electromagnetic interference and crosstalk, cannot be deployed in high density, and the cost is high
However, GPS / Beidou and other positioning methods are generally used, because the satellite signal cannot be received indoors, so the positioning accuracy of the satellite positioning method cannot be guaranteed indoors.
[0008] (3) The BIM (Building Information Modeling, building information modeling) system cannot manage on-site personnel, cannot trace the construction quality to the person, and personnel data cannot be shared with the BIM system in time

Method used

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  • Building construction site personnel efficiency management system and method
  • Building construction site personnel efficiency management system and method
  • Building construction site personnel efficiency management system and method

Examples

Experimental program
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Effect test

Embodiment 1

[0048] In one or more implementations, a construction site personnel efficiency management system is disclosed, such as figure 1As shown, it includes: intelligent monitoring terminal, communication network, local host, cloud server, mobile terminal and personnel auxiliary positioning node. The intelligent monitoring terminal communicates with the local host and the cloud server respectively through the communication network, and the cloud server communicates with the mobile terminal. The mobile terminal is used to realize project progress viewing, personnel management, construction intervention, video conference and other functions, such as mobile APP or PDA, computer Wait.

[0049] The cloud server that receives node data remotely is implemented in the form of public cloud or self-built private cloud service.

[0050] The local host can provide a BIM secondary development interface, and the local host is connected to the BIM system to share construction site data with the BI...

Embodiment 2

[0081] This embodiment discloses a method for managing personnel efficiency at a construction site, including:

[0082] Real-time collection of construction personnel's physiological state data, surrounding environment data and construction process data; according to the detected data, identify personnel sabotage, poor health, illegal operations and dangerous states;

[0083] Infrared rays with unique ID codes are emitted according to the set directions, and the ID codes correspond to the position coordinates in the construction site model; according to the received ID codes, the position coordinates are matched in the construction site model to realize personnel position positioning .

[0084] refer to Figure 8After the local host receives the data from the smart helmet, it first judges whether it is worn correctly. If it is not worn properly or not, it will issue a warning command to the smart helmet through the communication network; Self-learning, establishing the physi...

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Abstract

The invention discloses a building construction site personnel efficiency management system and method. The system comprises an intelligent detection terminal worn by a constructor and a local host, Wherein the intelligent detection terminal is used for acquiring physiological status data, environmental status data and on-site construction process of a constructor and uploading the acquired data to the local host; The method has the beneficial effects that the method is used; wherein the intelligent detection terminal is worn on a person; Authentication of constructor identity, Whether safe wear, Physiological indicators such as heart rate and respiration, Activity position and other information, uploading the data to a cloud server and a local computer host; The method comprises the following steps: establishing a mathematical model, analyzing whether a person correctly wears a safety helmet, is in a correct construction position, and has an accident in the body, finally analyzing thelabor state in real time, timely giving an information warning if the conditions of long-time sabotage, illegal operation, border crossing and the like exist, and automatically commanding a field manager to give intervention by a system if the conditions are not corrected.

Description

technical field [0001] The invention relates to the technical field of building construction, in particular to a system and method for managing personnel efficiency at a building construction site. Background technique [0002] The statements in this section merely provide background information related to the present invention and do not necessarily constitute prior art. [0003] In the process of building construction, labor costs, material costs and construction machinery usage costs constitute the main part of the cost. Through the promotion and application of BIM system, the efficiency of materials and construction progress has been improved. In recent years, government departments and construction companies have vigorously promoted real-name management of labor services, and adopted information platforms to promote refined management. However, after the construction personnel enter the construction site, there are personnel deployment problems, slowdown problems, and...

Claims

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Application Information

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IPC IPC(8): G06Q10/06G06Q50/08
Inventor 孔祥明
Owner 孔祥明
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