CN220543430U - Immovable cultural relic burglar alarm - Google Patents

Immovable cultural relic burglar alarm Download PDF

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Publication number
CN220543430U
CN220543430U CN202322242369.0U CN202322242369U CN220543430U CN 220543430 U CN220543430 U CN 220543430U CN 202322242369 U CN202322242369 U CN 202322242369U CN 220543430 U CN220543430 U CN 220543430U
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China
Prior art keywords
unit
processing unit
control
cultural relic
power supply
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CN202322242369.0U
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Chinese (zh)
Inventor
张小波
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Ningbo Huiguang Technology Co ltd
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Ningbo Huiguang Technology Co ltd
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Priority to CN202322242369.0U priority Critical patent/CN220543430U/en
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Abstract

The utility model relates to an anti-theft alarm device for immovable cultural relics, which comprises a monitoring device, a solar panel, a sealed shell, a main board and a battery, wherein the solar panel, the sealed shell, the main board and the battery are arranged in the monitoring device, the inner end of the main board comprises a power supply unit, a communication unit, an acceleration sensor, an inclination sensor, a clock unit, a wireless transmission unit, a storage unit, a watchdog unit and a control and processing unit, the lower end of the monitoring device is fixedly connected with an installation back board strip, the installation back board strip is externally connected with a base surface around the immovable cultural relics, the power supply unit comprises a low static current power supply system, the battery and the solar panel are connected with the power supply unit through signals, and the watchdog unit is connected with the processing unit through signals.

Description

Immovable cultural relic burglar alarm
Technical Field
The utility model relates to an immovable cultural relic anti-theft alarm device, in particular to an immovable cultural relic anti-theft alarm device applied to the field of alarm devices.
Background
The cultural relics of fields such as ancient tombs and stone carving in China are many, however, the cultural relics such as the ancient tombs and stone carving are located in the field, are widely distributed, and are often free of prevention boundary limitations, so that people can produce and live in burial areas such as the ancient tombs. Therefore, when the field cultural relics such as ancient tomb and stone carving are stolen, a large number of precious cultural relics are damaged or stolen, and huge losses are caused to society.
In order to solve the problem that a large amount of precious cultural relics are damaged or stolen when the cultural relics in the fields such as ancient tomb and stone are stolen, the design of video monitoring, infrared monitoring and electronic fence is adopted around the cultural relics in the fields such as ancient tomb and stone in the market, and the design has a certain market ratio.
The design of video monitoring, infrared monitoring and electronic fence is adopted around field cultural relics such as ancient tomb, stone carving and the like in the existing market, so that the underground excavation and theft or night attack and explosion and theft activities cannot be well monitored, the construction is complex, the scheme is not suitable for field cultural relics, the power consumption of a security monitoring scheme is high, the scheme is not suitable for field environments, and the implementation cost is high.
Disclosure of Invention
Aiming at the prior art, the technical problems to be solved by the utility model are that the design of video monitoring, infrared monitoring and electronic fence is adopted around the cultural relics in the fields such as ancient tomb, stone carving and the like in the existing market, the underground excavation and theft or night sudden explosion and theft activities cannot be well monitored, the construction is complex, the scheme is not suitable for field cultural relics, the power consumption of the security monitoring scheme is high, the scheme is not suitable for field environment, and the implementation cost is high.
In order to solve the problems, the utility model provides an immovable cultural relic anti-theft alarm device which comprises a monitoring device, a solar panel, a sealed shell, a main board and a battery, wherein the solar panel, the sealed shell, the main board and the battery are arranged in the monitoring device, the inner end of the main board comprises a power supply unit, a communication unit, an acceleration sensor, an inclination sensor, a clock unit, a wireless transmission unit, a storage unit, a watchdog unit and a control and processing unit, the lower end of the monitoring device is fixedly connected with an installation back board strip, the installation back board strip is externally connected with a base surface around the immovable cultural relic, the power supply unit comprises a low static current power supply system, the battery and the solar panel are in signal connection with the power supply unit, and the watchdog unit is in signal connection with the processing unit.
In the anti-theft alarm device for the immovable cultural relics, the device realizes the dynamic and static combined monitoring of the immovable cultural relics by measuring the vibration acceleration and the inclination angle, and has the characteristics of small size and light weight, and is convenient for field installation.
As a further development of the application, the communication unit is in signal connection with the control and processing unit via a USB interface.
As a still further development of the present application, the acceleration sensor is connected to the control and processing unit by way of an SPI interface and interrupt IO.
As a further development of the application, the clock unit is in signal connection with the control and processing unit via an I2C communication interface.
As a further development of the application, the wireless transmission unit is in signal connection with the control and processing unit via a UASRT communication interface
As a supplement to the further development of the application, the memory unit is in signal connection with the control and processing unit via an I2C communication interface.
In summary, the monitoring device is firstly installed on the base surface around the immovable cultural relics through the installation backboard strips, after the acceleration sensor monitors the abnormal vibration signals with the super threshold value, the control and processing unit is awakened through IO interrupt output, after the control and processing unit is awakened, the acceleration sensor data, the inclination sensor data and the current time information are read, the cultural relics state is judged through the vibration acceleration threshold value and the inclination threshold value comparison algorithm, the above data are uploaded to the monitoring platform, the monitoring platform informs the manager through a short message or mail mode according to the preset alarm strategy, the device achieves dynamic and static combined monitoring of the immovable cultural relics through measuring the vibration acceleration and the inclination state, and the device has the characteristics of small size and light weight and is convenient to install on site.
Drawings
FIG. 1 is an isometric view of a monitoring device according to a first embodiment of the present application;
FIG. 2 is a diagram of the internal system of a monitoring device according to a first embodiment of the present application;
fig. 3 is a flowchart of the operation of the burglar alarm system according to the first embodiment of the present application.
The reference numerals in the figures illustrate:
1. a monitoring device; 2. mounting a back batten; 3. a solar panel.
Detailed Description
Two embodiments of the present application are described in detail below with reference to the accompanying drawings.
First embodiment:
fig. 1-3 show that the monitoring device 1 is composed of a solar panel 3, a sealed housing, a main board and a battery, wherein the solar panel 3 and the battery are connected to a power supply unit of the main board, the main board and the battery are installed inside the sealed housing, the solar panel 3 is adhered to an upper cover of the sealed housing, and the main board is composed of a power supply unit, a communication unit, an acceleration sensor, an inclination sensor, a clock unit, a wireless transmission unit, a storage unit, a watchdog unit and a control and processing unit.
Fig. 1-3 show that the power supply unit is composed of a battery, a solar panel 3 and a low static current power supply system, and is used for supplying power to other constituent units of the monitoring device 1, the communication unit is used for setting working parameters of the device, such as an ID number of the device, a working period, an acceleration threshold value, an inclination threshold value and the like, the communication unit is connected with the control and processing unit through a USB interface, the acceleration sensor is used for measuring the value of dynamic vibration acceleration of a cultural relic, the acceleration sensor is connected with the control and processing unit through an SPI interface and an interrupt IO, the inclination sensor is used for measuring the value of the static inclination of the cultural relic, the inclination sensor is connected with the control and processing unit through the SPI interface, the clock unit is used for timing, the wireless transmission unit is used for wireless communication, the wireless transmission unit is connected with the control and processing unit through an UASRT communication interface, the storage unit is used for storing the configured working parameters, the control and processing unit is connected with the UASRT communication interface, the watchdog unit guarantees reliable operation of the system, when the monitoring device 1 is abnormal in operation, the control and processing unit is reset, the system is restarted, the intelligent control program is embedded in the control and processing unit, all functions of the system are realized, the sensors and the function are controlled, the function unit are all are powered on, the power-down and the function unit are connected, the power-down unit is connected through the wireless communication unit, the wireless transmission unit is used for transmitting measured data after the measurement and the data is in a sleep state, and the power down state is stored, and has a sleep state and has a function.
Fig. 1-3 show that firstly, the monitoring device 1 is installed on a base surface around an immovable cultural relic through an installation back plate strip 2, after an acceleration sensor monitors an abnormal vibration signal with a super threshold value, the abnormal vibration signal is output through IO interruption, a wake-up control and processing unit is controlled and processed, after the wake-up of the control and processing unit is carried out, data of the acceleration sensor, data of an inclination angle sensor and current time information are read, the state of the cultural relic is judged through a comparison algorithm of the vibration acceleration threshold value and the inclination angle threshold value, the data are uploaded to the monitoring platform, the monitoring platform informs a manager through a short message or mail mode according to a preset alarm strategy, the device is powered by a battery, the field power supply problem is solved, the device is powered by solar energy and has the characteristics of no-charging and no-maintenance, the device prolongs the endurance time through a low-power consumption control technology, the device achieves on-line monitoring of the preservation state of the cultural relic, the device judges the state of the cultural relic through the measurement of the vibration acceleration value and the inclination angle threshold value comparison algorithm, the cultural relic state is judged through the vibration acceleration value and the inclination angle threshold value comparison algorithm, the cultural relic state information is sent to the monitoring platform through wireless communication, the monitoring platform informs the manager through a short message, the manager through a mail mode and the like, the field power supply is powered through a wireless communication mode, the device has the characteristics of no-load cable layout, and the field cable has the characteristics, and convenience is low-weight, and the device has the convenience in installation.
The scope of protection of the above-described embodiments employed in the present application is not limited to the above-described embodiments, and various changes made by those skilled in the art without departing from the spirit of the present application are still within the scope of protection of the present utility model.

Claims (6)

1. An immovable cultural relic anti-theft alarm device is characterized in that: including monitoring devices (1) and solar panel (3), sealed casing, mainboard and the battery of setting in monitoring devices (1), the inner of mainboard includes power supply unit, communication unit, acceleration sensor, inclination sensor, clock unit, wireless transmission unit, memory cell, watchdog unit, control and processing unit, the lower extreme fixedly connected with of monitoring devices (1) installs back strap (2), install back strap (2) external base level around the immovable historical relic, power supply unit includes low quiescent current electrical power generating system, and battery, solar panel (3) all with power supply unit signal connection, watchdog unit control and processing unit signal connection.
2. The non-movable cultural relic anti-theft alarm device according to claim 1, wherein: the communication unit is in signal connection with the control and processing unit through a USB interface.
3. The non-movable cultural relic anti-theft alarm device according to claim 1, wherein: the acceleration sensor is connected with the control and processing unit through an SPI interface and an interrupt IO.
4. The non-movable cultural relic anti-theft alarm device according to claim 1, wherein: the clock unit is in signal connection with the control and processing unit through an I2C communication interface.
5. The non-movable cultural relic anti-theft alarm device according to claim 1, wherein: the wireless transmission unit is in signal connection with the control and processing unit through a UASRT communication interface.
6. The non-movable cultural relic anti-theft alarm device according to claim 1, wherein: the storage unit is in signal connection with the control and processing unit through an I2C communication interface.
CN202322242369.0U 2023-08-21 2023-08-21 Immovable cultural relic burglar alarm Active CN220543430U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322242369.0U CN220543430U (en) 2023-08-21 2023-08-21 Immovable cultural relic burglar alarm

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322242369.0U CN220543430U (en) 2023-08-21 2023-08-21 Immovable cultural relic burglar alarm

Publications (1)

Publication Number Publication Date
CN220543430U true CN220543430U (en) 2024-02-27

Family

ID=89971098

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322242369.0U Active CN220543430U (en) 2023-08-21 2023-08-21 Immovable cultural relic burglar alarm

Country Status (1)

Country Link
CN (1) CN220543430U (en)

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