Sensor Signal Transmission System Based on IP Address Recognition
Through the sensor signal transmission system based on IP address recognition, a unique IP address is set for each sensor and address matching analysis is performed, the problem of difficulty in positioning of traditional sensors is solved, the precise positioning of sensors is achieved, and the efficiency of the building prevention and control system is improved.
Patent Information
- Application Number
- CN202211320650.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-26
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2042-10-26
AI Technical Summary
In building prevention and control scenarios, traditional sensor alarm signals lack positioning information, making it difficult to accurately locate the alarm sensor.
By setting up a building information collection module, sensor numbering module, IP address design module, address matching module and IP address resolution module, IP address recognition technology is used to set a unique IP address for each sensor, and precise positioning of sensor location is achieved through two-level address directory matching and analysis.
Accurate positioning of alarm sensors is achieved, and the efficiency and accuracy of the building prevention and control system is improved.
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Figure CN115695513B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of building prevention and control, relates to IP address resolution technology, and specifically is a sensor signal transmission system based on IP address recognition. Background Art
[0002] In the scenario of building prevention and control, a large number of sensors are required to measure temperature, humidity, smoke, and other values to be measured; the traditional method is to use a wiring method to connect them separately and lay the wiring in an electrical box, where a large number of cable lines for obtaining sensor data will be distributed; and when a certain sensor issues an alarm signal, there is no positioning information in the alarm signal. Therefore, it is difficult to accurately locate the alarmed sensor.
[0003] For this reason, a sensor signal transmission system based on IP address recognition is proposed. Summary of the Invention
[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. For this purpose, the present invention proposes a sensor signal transmission system based on IP address recognition. The sensor signal transmission system based on IP address recognition pre-collects the basic information of the building where the sensors to be installed are located through a building information collection module; sets a sensor numbering module to number each monitoring sensor according to the position and type of the monitoring sensors in the building 3D model diagram; sets an IP address design module to set a unique IP address for each monitoring sensor; sets an address matching module to match and save the physical address and the IP address of the monitoring sensors in the form of a two-level address directory; sets an IP address resolution module mainly for analyzing the location where the monitoring sensor is located through the IP address; and solves the problem of accurately positioning the alarmed sensor.
[0005] To achieve the above object, according to an embodiment of the first aspect of the present invention, a sensor signal transmission system based on IP address recognition is proposed, including a building information collection module, a sensor numbering module, an IP address design module, an address matching module, and an IP address resolution module; wherein, each module is connected by electrical and / or wireless network means.
[0006] Among them, the building information collection module is mainly used to pre-collect the basic information of the building where the sensors to be installed are located.
[0007] The building basic information collected by the building information collection module includes the architectural structure diagram of each floor in the building, the positions and category information of the monitoring sensors placed in the planning; the building information collection module generates a corresponding 3D model diagram of the building according to the architectural structure diagram of each floor through modeling software; and marks the types of the monitoring sensors at the corresponding positions in the 3D model according to the positions and category information of the monitoring sensors in the planning; the building information collection module sends the established 3D model diagram of the building to the sensor numbering module;
[0008] Among them, the sensor numbering module is mainly used to number each monitoring sensor according to the position and type of the monitoring sensors in the 3D model diagram of the building;
[0009] The sensor numbering module pre-statistics the quantity of each type of monitoring sensor from the 3D model diagram; and prepares the corresponding quantity of monitoring sensors; numbers each monitoring sensor according to the distribution of the monitoring sensors in the 3D model diagram; the numbering format of each monitoring sensor is sensor type - floor - digital serial number;
[0010] The sensor types are temperature sensors, humidity sensors, smoke sensors, etc.; the floor is the floor height assigned to each sensor; the digital serial number is the serial number of each sensor among the same type of monitoring sensors on the current floor; on the same floor, the numbering method of the same type of monitoring sensors can be to number the monitoring sensors in sequence from east to west and from north to south according to the positions of each monitoring sensor; the sensor numbering module sends the number of each monitoring sensor to the address matching module; the number of each monitoring sensor is the physical address of the monitoring sensor; the sensor numbering module marks the physical address of each monitoring sensor at the corresponding position in the 3D model diagram;
[0011] Among them, the IP address design module is mainly used to set a unique IP address for each monitoring sensor;
[0012] The IP address design module allocates the IP addresses of each monitoring sensor using a three - level address method; the three - level address allocation method is monitoring sensor type serial number. monitoring sensor digital number. building numbering method; among them, the monitoring sensor type serial number is the serial number obtained by digitizing the type of the monitoring sensor; among them, the monitoring sensor digital number is the sorting serial number of each monitoring sensor among the same type of monitoring sensors; among them, the building number is the digital serial number pre - set for each building; when the monitoring sensor is connected to a specific building, by setting the network interface of the monitoring sensor, the third - level address, that is, the building number, is added to its IP address; the IP address design module sends the IP address of each monitoring camera to the address matching module;
[0013] Among them, the address matching module is mainly used to match and save the physical address and IP address of the monitoring sensor in the form of a two-level address directory;
[0014] The method by which the address matching module matches the physical address and IP address of the monitoring sensor includes the following steps:
[0015] Step S1: The first-level address directory saved by the upper computer controller is the matching relationship between the building number and the 3D model diagram of the building; that is, through the building number, the 3D model diagram of the corresponding building is read;
[0016] Step S2: The second-level address directory saved by the upper controller is the IP address corresponding to the physical address of each monitoring sensor in the 3D model diagram; by matching the physical address of the monitoring sensor sent by the sensor numbering module with the IP address sent by the IP address design module one by one, and saving the matching result;
[0017] The address matching module sends the two-level address directory to the IP address parsing module;
[0018] Among them, the IP address parsing module is mainly used to analyze the location of the monitoring sensor through the IP address;
[0019] When a certain monitoring sensor sends an alarm message to the upper computer controller, the alarm message contains the IP address of the monitoring sensor; the IP address parsing module obtains the type of the monitoring sensor according to the first-level directory of the IP address; obtains the building number where the monitoring sensor is located through the third-level directory of the IP address; reads the 3D model diagram of the corresponding building number from the first-level address directory of the upper computer controller through the building number; reads the physical address corresponding to the IP address from the second-level address directory through the complete IP address; finally obtains the actual physical location of the corresponding physical address in the 3D model diagram.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] The present invention solves the problem of accurate positioning of alarm sensors by setting a building information collection module to pre-collect the basic information of the building where the sensor to be installed is located; setting a sensor numbering module to number each monitoring sensor according to the position and type of the monitoring sensor in the 3D model diagram of the building; setting an IP address design module to set a unique IP address for each monitoring sensor; setting an address matching module to match and save the physical address and IP address of the monitoring sensor in the form of a two-level address directory; setting an IP address parsing module to mainly analyze the location of the monitoring sensor through the IP address. Brief Description of the Drawings
[0022] Figure 1This is the schematic diagram of the present invention. Detailed implementation manners
[0023] The technical solution of the present invention will be clearly and completely described below in conjunction with the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0024] As Figure 1 shown, the sensor signal transmission system based on IP address recognition includes a building information collection module, a sensor numbering module, an IP address design module, an address matching module, and an IP address parsing module; wherein, each module is connected by electrical and / or wireless network means;
[0025] Among them, the building information collection module is mainly used to pre-collect the basic information of the building where the sensors to be installed are located;
[0026] It can be understood that various monitoring sensors generally need to be installed in a building, including temperature, humidity, and smoke sensors, etc., for monitoring building safety data such as temperature, humidity, and smoke in the building; and the installation positions of each sensor in the building need to be pre-planned;
[0027] In a preferred embodiment, the building basic information collected by the building information collection module includes the building structure diagram of each floor in the building, as well as the position and category information of the monitoring sensors placed in the plan; the building information collection module generates a 3D model diagram corresponding to the building through modeling software; and according to the position and category information of the monitoring sensors placed in the plan, marks the types of the monitoring sensors at the corresponding positions in the 3D model; the building information collection module sends the established 3D model diagram of the building to the sensor numbering module;
[0028] Among them, the sensor numbering module is mainly used to number each monitoring sensor according to the position and type of the monitoring sensors in the 3D model diagram of the building;
[0029] In a preferred embodiment, the sensor numbering module pre-statistics the number of each type of monitoring sensor from the 3D model diagram; and prepares the corresponding number of monitoring sensors; numbers each monitoring sensor according to the distribution of the monitoring sensors in the 3D model diagram; the numbering format of each monitoring sensor is sensor type - floor - digital serial number;
[0030] The sensor types are temperature sensors, humidity sensors, smoke sensors, etc.; the floor is the floor height to which each sensor is assigned; the digital serial number is the serial number of each sensor in the current floor among similar monitoring sensors; in the same floor, the numbering method of similar monitoring sensors can be based on the location of each monitoring sensor, from east to west and from north to south to number the monitoring sensors in sequence; the sensor numbering module sends the number of each monitoring sensor to the address matching module; it can be understood that the number of each monitoring sensor is the physical address of the monitoring sensor; the sensor numbering module marks the physical address of each monitoring sensor at the corresponding position of the 3D model diagram;
[0031] Wherein, the IP address design module is mainly used to set a unique IP address for each monitoring sensor;
[0032] It is understandable that an IP address is a virtual address. In a computer network, a four-level address method is used to uniquely locate each device connected to the Internet. Since devices on the Internet often move physically, the Internet IP address changes in real time. In floor monitoring, since the location of the monitoring sensor does not move, it is more convenient to use a fixed IP address and bind the IP address to the monitoring sensor.
[0033] In a preferred embodiment, the IP address design module allocates the IP address of each monitoring sensor using a three-level address method; specifically, the three-level address allocation method is the monitoring sensor type serial number. Monitoring sensor digital number. Building number method; wherein the monitoring sensor type serial number is a serial number obtained by digitizing the type of the monitoring sensor; for example: the temperature sensor serial number is set to 0, and the humidity sensor serial number is set to 1; wherein the monitoring sensor digital number is the ranking serial number of each monitoring sensor among similar monitoring sensors; wherein the building number is a digital serial number pre-set for each building; when the monitoring sensor is connected to a specific building, the third-level address, i.e., the building number, is added to its IP address by setting the monitoring sensor network interface; the IP address design module sends the IP address of each monitoring camera to the address matching module;
[0034] The address matching module is mainly used to match and save the physical address of the monitoring sensor with the IP address in the form of a two-level address directory;
[0035] In a preferred embodiment, the address matching module matches the physical address of the monitoring sensor with the IP address, including the following steps:
[0036] Step S1: The first-level address directory saved by the host computer controller is the matching relationship between the building number and the 3D model diagram of the building; that is, through the building number, the 3D model diagram of the corresponding building is read.
[0037] Step S2: The second-level address directory saved by the host controller is the IP address corresponding to the physical address of each monitoring sensor in the 3D model diagram; by matching the physical address of the monitoring sensor sent by the sensor number module with the IP address sent by the IP address design module one by one, and saving the matching result.
[0038] The address matching module sends the two-level address directory to the IP address resolution module.
[0039] Among them, the IP address resolution module is mainly used to analyze the location where the monitoring sensor is located through the IP address.
[0040] In a preferred embodiment, when a certain monitoring sensor sends an alarm message to the host computer controller, the alarm message contains the IP address of the monitoring sensor; the IP address resolution module obtains the type of the monitoring sensor according to the first-level directory of the IP address; obtains the building number where the monitoring sensor is located through the third-level directory of the IP address; reads the 3D model diagram of the corresponding building number from the first-level address directory of the host computer controller through the building number; reads the physical address corresponding to the IP address from the second-level address directory through the complete IP address; finally obtains the actual physical location of the corresponding physical address in the 3D model diagram.
[0041] The above embodiments are only used to illustrate the technical method of the present invention and not to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical method of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical method of the present invention.
Claims
1. A sensor signal transmission system based on IP address recognition, characterized in that, It includes a building information collection module, a sensor numbering module, an IP address design module, an address matching module, and an IP address resolution module; among them, each module is connected by electrical and / or wireless network means; The building information collection module is used to pre-collect the basic information of the building where the sensors to be installed are located; the building information collection module sends the established 3D model diagram of the building to the sensor numbering module; The sensor numbering module is used to number each monitoring sensor according to the position and type of the monitoring sensors in the 3D model diagram of the building; the sensor numbering module sends the number of each monitoring sensor to the address matching module; the number of each monitoring sensor is the physical address of the monitoring sensor; the sensor numbering module marks the physical address of each monitoring sensor at the corresponding position on the 3D model diagram; The IP address design module is used to set a unique IP address for each monitoring sensor; the IP address design module sends the IP address of each monitoring camera to the address matching module; The address matching module is used to match and save the physical address and IP address of the monitoring sensors in the form of a two-level address directory; the address matching module sends the two-level address directory to the IP address resolution module; The IP address resolution module is used to analyze the location of the monitoring sensor through the IP address.
2. The sensor signal transmission system based on IP address recognition according to claim 1, wherein The building basic information collected by the building information collection module includes the building structure diagram of each floor in the building, as well as the location and category information of the monitoring sensors placed in the planning; the building information collection module generates the corresponding 3D model diagram of the building according to the building structure diagram of each floor through modeling software; And according to the location and category information of the monitoring sensors placed in the planning, the type of the monitoring sensors is marked at the corresponding position in the 3D model.
3. The sensor signal transmission system based on IP address recognition according to claim 1, characterized in that, The sensor numbering module pre-statistics the number of each type of monitoring sensor from the 3D model diagram; and prepares the corresponding number of monitoring sensors; numbers each monitoring sensor according to the distribution of the monitoring sensors in the 3D model diagram; the number format of each monitoring sensor is sensor type - floor - digital serial number; The digital serial number is the serial number of each sensor among the same type of monitoring sensors on the current floor.
4. The sensor signal transmission system based on IP address recognition according to claim 1, characterized in that, The IP address design module allocates the IP address of each monitoring sensor in a three-level address mode; the three-level address allocation mode is the mode of monitoring sensor type serial number. monitoring sensor digital number. building number; among them, the monitoring sensor type serial number is the serial number obtained by digitizing the type of the monitoring sensor; among them, the monitoring sensor digital number is the sorting serial number of each monitoring sensor among the same type of monitoring sensors; among them, the building number is the digital serial number pre-set for each building; when the monitoring sensor is connected to a specific building, by setting the network interface of the monitoring sensor, the third-level address, that is, the building number, is added to its IP address.
5. The sensor signal transmission system based on IP address recognition according to claim 1, wherein The method for the address matching module to match the physical address and IP address of the monitoring sensors includes the following steps: Step S1: The first-level address directory saved by the host computer controller is the matching relationship between the building number and the 3D model diagram of the building; that is, through the building number, the 3D model diagram of the corresponding building is read. Step S2: The second-level address directory saved by the host controller is the IP address corresponding to the physical address of each monitoring sensor in the 3D model diagram; by matching the physical address of the monitoring sensor sent by the sensor number module with the IP address sent by the IP address design module one by one, and saving the matching result.
6. The sensor signal transmission system based on IP address recognition according to claim 1, characterized in that, When a certain monitoring sensor sends an alarm message to the host computer controller, the alarm message contains the IP address of the monitoring sensor; the IP address parsing module obtains the type of the monitoring sensor according to the first-level directory of the IP address; obtains the building number where the monitoring sensor is located through the third-level directory of the IP address; reads the 3D model diagram of the corresponding building number from the first-level address directory of the host computer controller through the building number; reads the physical address corresponding to the IP address from the second-level address directory through the complete IP address; finally obtains the actual physical position of the corresponding physical address in the 3D model diagram.
Citation Information
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