Community monitoring device based on MODBUS communication
By introducing photovoltaic panels to the monitoring device to store solar power and using adjustment and reinforcement components, the existing device has solved the problems of complex structure, high power consumption and difficult installation, and achieved rapid installation and energy-saving effects.
Patent Information
- Application Number
- CN202422275994.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-09-18
AI Technical Summary
The existing MODBUS communication-based cell monitoring device has complex structure, many peripheral equipment, high power consumption, high requirements for installers, prone to errors, long debugging time, high installation difficulty, which is not conducive to rapid installation.
Design a monitoring device that includes fixed angle iron, adjustment components, monitoring components, interface components, input components, conveyor tubes, installation tubes, fixed tubes, connecting blocks, photovoltaic panels and reinforced components to store solar power through photovoltaic panels, reduce power loss, and simplify the installation process by adjusting components and reinforced components.
It realizes the storage of solar energy under light conditions, reduces power loss, simplifies the installation process, reduces the requirements for installers, and improves installation efficiency.
Smart Images

Figure CN223261576U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of advanced manufacturing-industrial automation-high-performance intelligent controllers, and in particular to a cell monitoring device based on MODBUS communication. Background Art
[0002] MODBUS-based residential monitoring devices are primarily used for data acquisition and human-machine interface visualization, energy consumption control, and remote communication. They can be widely used in power systems, intelligent building energy management, power equipment energy consumption monitoring systems, factory energy management systems, and medium and low voltage distribution automation.
[0003] The current residential monitoring devices based on MODBUS communication have complex circuits, many peripheral devices, high power consumption, high requirements for installation personnel, are prone to errors, have long debugging times, and have heavy interference. They are difficult to install during use and are not conducive to rapid installation.
[0004] Therefore, according to the problems that the cell monitoring device based on MODBUS communication has complex circuits, many peripheral devices, high power consumption, high requirements for installation personnel, easy errors, long debugging time, heavy interference, high installation difficulty coefficient during use, and is not conducive to rapid installation, a monitoring device that can save energy and can be quickly installed can be designed. By setting up a power storage structure, it can store solar energy and convert it into electrical energy when there is light, thereby reducing power loss. Utility Model Content
[0005] In order to overcome the problems in the prior art of the cell monitoring device based on MODBUS communication, such as complex circuits, many peripheral devices, high power consumption, high requirements for installation personnel, easy errors, long debugging time, heavy interference, high installation difficulty coefficient during use, and not conducive to rapid installation.
[0006] The technical solution of the utility model is: a community monitoring device based on MODBUS communication, including a fixed angle iron, an adjustment component, a monitoring component, an interface component, an input component, a delivery pipe, a mounting pipe, a fixed pipe, a connecting block, a photovoltaic panel and a reinforcement component. The top surface of the fixed angle iron is provided with an adjustment component, the top surface of the adjustment component is provided with a monitoring component, the surface of the monitoring component is provided with an interface component, one end of the component monitoring component is provided with an input component, the middle part of the top surface of the fixed angle iron is provided with a delivery pipe, the top surface of the delivery pipe is provided with a mounting pipe, the top of the mounting pipe is provided with a fixed pipe, and the top of the fixed pipe is provided with a connecting block.
[0007] Preferably, the entire device is installed in the working area by fixing the angle iron, the fixed assembly is installed by adjusting the assembly, monitoring work is performed by the monitoring assembly, other equipment is connected by the interface assembly, the power supply structure is connected by the input assembly, the monitoring structure is connected by the delivery pipe to power the device, the delivery pipe is connected and fixed to the fixed pipe by the installation pipe, the connecting block is installed and fixed on the top of the installation pipe by the fixed pipe, the photovoltaic panel is fixed by the connecting block, photovoltaic electricity is stored by the photovoltaic panel, which helps save energy and reduce power loss, and the overall installation structure is reinforced by the reinforcement assembly to prevent the device from falling off when working.
[0008] Preferably, the adjustment assembly includes a mounting plate, a connecting shaft, a fixed shaft and fixing bolts. The top surface of the fixed angle iron is provided with a mounting plate, the top of the mounting plate is provided with a connecting shaft, the outer sleeve of the connecting shaft is provided with a fixed shaft, and fixing bolts are provided on both sides of the fixed shaft.
[0009] Preferably, the monitoring assembly includes a monitoring mounting block, a lens and a protective plate. The monitoring mounting block is provided at the top of the fixed shaft, a lens is provided inside one end of the monitoring mounting block, and a protective plate is provided on the top surface of the monitoring mounting block.
[0010] Preferably, the interface component includes a CAN interface, a MOD interface, an indicator light, a control cabinet interface and a connection port. A CAN interface is provided on one side of the monitoring mounting block, a MOD interface is provided on the surface of the mounting plate next to the CAN interface, an indicator light is provided next to the MOD interface, a control cabinet interface is provided on one side of the monitoring mounting block, and a connection port is provided next to the control cabinet interface.
[0011] Preferably, the input component includes a power supply port, a cable socket and a control port. A power supply port is provided at one end of the monitoring mounting block, a cable socket is provided at one end of the monitoring mounting block, and a control port is provided at the bottom end of the monitoring mounting block.
[0012] Preferably, a photovoltaic panel is provided on the surface of the connecting block, and a reinforcement component is provided on the outer ring of the mounting tube.
[0013] Preferably, the reinforcement assembly includes a reinforcement block, a fixing plate and a fixing bolt opening. The reinforcement block is provided on the outside of the mounting tube, a fixing plate is provided on one side of the reinforcement block, and a fixing bolt opening is provided on the surface of the fixing plate.
[0014] Beneficial effects of the utility model:
[0015] 1. Compared with the traditional residential monitoring device based on MODBUS communication, which has complex circuits, many peripheral devices, high power consumption, high requirements for installation personnel, easy errors, long debugging time, heavy interference, high installation difficulty coefficient during use, and is not conducive to rapid installation, this monitoring device has a power storage structure that can store solar energy and convert it into electrical energy when there is light, thereby reducing power loss. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a first three-dimensional structural diagram of a cell monitoring device based on MODBUS communication according to the present invention;
[0017] Figure 2 Shown is a second three-dimensional structural diagram of a cell monitoring device based on MODBUS communication according to the present invention;
[0018] Figure 3 Shown is a side view schematic diagram of a cell monitoring device based on MODBUS communication according to the present invention;
[0019] Figure 4 Shown is a partial three-dimensional structural diagram of a cell monitoring device based on MODBUS communication according to the present invention;
[0020] Explanation of the accompanying symbols: 1. Fixed angle iron; 201. Mounting plate; 202. Connecting shaft; 203. Fixed shaft; 204. Fixing bolt; 301. Monitoring mounting block; 302. Lens; 303. Protection plate; 401. CAN interface; 402. MOD interface; 403. Indicator light; 404. Control cabinet interface; 405. Connecting port; 501. Power supply port; 502. Cable socket; 503. Control port; 601. Delivery pipe; 602. Mounting pipe; 603. Fixed pipe; 604. Connecting block; 605. Photovoltaic panel; 701. Reinforcement block; 702. Fixing plate; 703. Fixing bolt mouth. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] See also Figure 1 The utility model provides an embodiment: a cell monitoring device based on MODBUS communication, including a fixed angle iron 1, an adjustment component, a monitoring component, an interface component, an input component, a delivery pipe 601, a mounting pipe 602, a fixed pipe 603, a connecting block 604, a photovoltaic panel 605 and a reinforcement component. The top surface of the fixed angle iron 1 is provided with an adjustment component, the top surface of the adjustment component is provided with a monitoring component, the surface of the monitoring component is provided with an interface component, one end of the component monitoring component is provided with an input component, the middle part of the top surface of the fixed angle iron 1 is provided with a delivery pipe 601, the top surface of the delivery pipe 601 is provided with a mounting pipe 602, the top of the mounting pipe 602 is provided with a fixed pipe 603, and the top of the fixed pipe 603 is provided with a connecting block 604.
[0023] See also Figure 2-4303 and a protective plate 303. The monitoring mounting block 301 is used to install the monitoring components, and the working area is monitored through the lens 302. The lens 302 is protected by the protective plate 303 to reduce the impact of rain and dust on the lens 302. The interface component includes a CAN interface 401, a MOD interface 402, an indicator light 403, a control cabinet interface 404 and a connection port 405. A CAN interface 401 is provided on one side of the monitoring mounting block 301, and a MOD interface 402 is provided on the surface of the mounting plate 201 next to the CAN interface 401. An indicator light 403 is provided next to the MOD interface 402. A control cabinet interface 404 is provided on one side of the monitoring mounting block 301, and a connection port 405 is provided next to the control cabinet interface 404. When in use, the interface end is connected through the CAN interface 401, the MOD communication port end is connected through the MOD interface 402, the working signal light is displayed through the indicator light 403, the interface end is connected through the control cabinet interface 404, and the interface end is connected through the connection port 405.
[0024] The input component includes a power supply port 501, a cable socket 502 and a control port 503. The power supply port 501 is provided at one end of the monitoring installation block 301, the cable socket 502 is provided at one end of the monitoring installation block 301, and the control port 503 is provided at the bottom end of the monitoring installation block 301. When in use, the power supply end is connected through the power supply port 501, the IO cable end is connected through the cable socket 502, and the control end is connected through the control port 503. The surface of the connection block 604 is provided with a photovoltaic panel 605, and the outer ring of the installation tube 602 is provided with Reinforcement assembly, the reinforcement assembly includes a reinforcement block 701, a fixing plate 702 and a fixing bolt mouth 703. The reinforcement block 701 is provided on the outside of the mounting tube 602, and a fixing plate 702 is provided on one side of the reinforcement block 701. The surface of the fixing plate 702 is provided with a fixing bolt mouth 703. When in use, the fixing plate 702 is connected and fixed to the outside of the mounting tube 602 through the reinforcement block 701, and the fixing bolt mouth 703 is installed on one side of the reinforcement block 701 through the fixing plate 702, and the overall mounting structure is reinforced through the fixing bolt mouth 703.
[0025] When working, first, fix the connecting shaft 202 to the top surface of the fixed angle iron 1 through the mounting plate 201, install the fixed shaft 203 through the connecting shaft 202 to provide angle adjustment space, connect the fixed monitoring structure through the fixed shaft 203, fix the rotating structure through the fixing bolt 204 to help adjust the monitoring angle, install the monitoring component through the monitoring mounting block 301, monitor the working area through the lens 302, protect the lens 302 through the protective plate 303 to reduce the impact of rain and dust on the lens 302, connect the interface end through the CAN interface 401, connect the MOD communication port end through the MOD interface 402, display the working signal light through the indicator light 403, connect the interface end through the control cabinet interface 404, and connect the interface end through the connecting port 405;
[0026] Then, the power supply end is connected through the power supply port 501, the IO cable end is connected through the cable socket 502, and the control end is connected through the control port 503. The surface of the connecting block 604 is provided with a photovoltaic panel 605, and the outer ring of the mounting tube 602 is provided with a reinforcement component. The fixing plate 702 is connected and fixed to the outside of the mounting tube 602 through the reinforcement block 701, and the fixing bolt mouth 703 is installed on one side of the reinforcement block 701 through the fixing plate 702. The overall mounting structure is reinforced through the fixing bolt mouth 703.
[0027] Through the above steps, the entire device is installed in the working area by fixing the angle iron 1, the fixed assembly is installed by adjusting the components, monitoring work is performed through the monitoring component, other equipment is connected through the interface component, the power supply structure is connected through the input component, the monitoring structure is connected through the delivery pipe 601 to power the device, the delivery pipe 601 is connected and fixed to the fixed pipe 603 through the installation pipe 602, the connecting block 604 is installed and fixed on the top of the installation pipe 602 through the fixed pipe 603, the photovoltaic panel 605 is fixed through the connecting block 604, photovoltaic electricity is stored through the photovoltaic panel 605, which helps save energy and reduce power loss, and the overall installation structure is reinforced by the reinforcement component to prevent the device from falling off during operation.
[0028] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A cell monitoring device based on MODBUS communication, comprising a fixed angle iron (1); characterized in that: The invention also includes an adjustment component, a monitoring component, an interface component, an input component, a delivery pipe (601), a mounting pipe (602), a fixing pipe (603), a connection block (604), a photovoltaic panel (605) and a reinforcement component. The top surface of the fixing angle iron (1) is provided with an adjustment component, the top surface of the adjustment component is provided with a monitoring component, the surface of the monitoring component is provided with an interface component, one end of the component monitoring component is provided with an input component, the middle part of the top surface of the fixing angle iron (1) is provided with a delivery pipe (601), the top surface of the delivery pipe (601) is provided with a mounting pipe (602), the top end of the mounting pipe (602) is provided with a fixing pipe (603), and the top end of the fixing pipe (603) is provided with a connection block (604).
2. A cell monitoring device based on MODBUS communication according to claim 1, characterized in that: The adjustment assembly comprises a mounting plate (201), a connecting shaft (202), a fixed shaft (203) and a fixing bolt (204); the top surface of the fixed angle iron (1) is provided with the mounting plate (201); the top end of the mounting plate (201) is provided with the connecting shaft (202); the outer portion of the connecting shaft (202) is provided with the fixing shaft (203); and fixing bolts (204) are provided on both sides of the fixing shaft (203).
3. A cell monitoring device based on MODBUS communication according to claim 2, characterized in that: The monitoring assembly comprises a monitoring mounting block (301), a lens (302) and a protective plate (303); the top end of the fixed shaft (203) is provided with the monitoring mounting block (301); one end of the monitoring mounting block (301) is provided with the lens (302); and the top surface of the monitoring mounting block (301) is provided with the protective plate (303).
4. A cell monitoring device based on MODBUS communication according to claim 3, characterized in that: The interface assembly includes a CAN interface (401), a MOD interface (402), an indicator light (403), a control cabinet interface (404) and a connection port (405). The CAN interface (401) is provided on one side of the monitoring installation block (301). The MOD interface (402) is provided on the surface of the mounting plate (201) next to the CAN interface (401). An indicator light (403) is provided next to the MOD interface (402). The control cabinet interface (404) is provided on one side of the monitoring installation block (301). The connection port (405) is provided next to the control cabinet interface (404).
5. A cell monitoring device based on MODBUS communication according to claim 4, characterized in that: The input component includes a power supply port (501), a cable socket (502) and a control port (503); one end of the monitoring installation block (301) is provided with the power supply port (501); one end of the monitoring installation block (301) is provided with the cable socket (502); and the bottom end of the monitoring installation block (301) is provided with the control port (503).
6. A cell monitoring device based on MODBUS communication according to claim 4, characterized in that: The surface of the connecting block (604) is provided with a photovoltaic panel (605), and the outer ring of the mounting tube (602) is provided with a reinforcement component.
7. A cell monitoring device based on MODBUS communication according to claim 6, characterized in that: The reinforcement assembly comprises a reinforcement block (701), a fixing plate (702) and a fixing bolt opening (703); the reinforcement block (701) is arranged on the outside of the mounting tube (602); a fixing plate (702) is arranged on one side of the reinforcement block (701); and a fixing bolt opening (703) is opened on the surface of the fixing plate (702).