CN213955581U - Top-ground integrated air conditioner radiation system with electric energy consumption self-monitoring function - Google Patents
Top-ground integrated air conditioner radiation system with electric energy consumption self-monitoring function Download PDFInfo
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- CN213955581U CN213955581U CN202022348184.4U CN202022348184U CN213955581U CN 213955581 U CN213955581 U CN 213955581U CN 202022348184 U CN202022348184 U CN 202022348184U CN 213955581 U CN213955581 U CN 213955581U
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Abstract
The utility model relates to a water heating system technical field, concretely relates to top ground integration air conditioner radiation system with power consumption self-monitoring, including the control system of top ground integration air conditioner radiation system, set up in the electric energy meter of the power supply inlet wire end of top ground integration air conditioner radiation system, be provided with the electric energy metering module that is used for carrying out the electric energy consumption measurement in the electric energy meter, be used for wireless communication module of wireless transmission electric energy consumption information and be used for showing the electric energy display device of electric energy consumption information, wireless communication module and electric energy display device are connected respectively to the electric energy metering module; the electric energy metering module is also in wireless connection with the mobile phone terminal through the wireless communication module so as to send electric energy metering information to the mobile phone terminal. The utility model discloses make the user can master the power consumption condition of top ground integration air conditioner radiation system at any time, carry out the optimization setting of top ground integration air conditioner radiation system simultaneously according to the power consumption condition.
Description
Technical Field
The utility model relates to a hot-water heating system technical field, concretely relates to top ground integration cold warm air conditioner radiation system with power consumption is from monitoring.
Background
A radiation system of top-ground integrated air conditioner is a room temperature regulating system, which is composed of cold and hot water supply pipe network system (supplying cold water in summer and supplying hot water in winter), water collecting and distributing device, temp. control valve and control system. The core part of the cold and hot water supply pipe network system is a capillary network arranged on the top surface and the ground of a room. When the water circulation type constant temperature water heater works, water with a certain temperature circularly flows in the capillary network, the temperature of a room is adjusted through heat transfer, and the indoor constant temperature is kept.
The power consumption of the top-ground integrated cooling and heating air conditioner radiation system is a concern of users. However, the existing top-ground integrated air conditioner radiation system does not perform self-monitoring on the electric energy consumption of the existing top-ground integrated air conditioner radiation system. Therefore, there is a need for an improved technique that enables a user to know the power consumption of the top-and-ground integrated cooling and heating air conditioning radiation system at any time and is advantageous for the optimized setting of the top-and-ground integrated cooling and heating air conditioning radiation system.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a top ground integration air conditioner radiation system with power consumption is from monitoring aims at making the user can master the power consumption condition of top ground integration air conditioner radiation system at any time, carries out the optimization setting of top ground integration air conditioner radiation system simultaneously according to the power consumption condition. The specific technical scheme is as follows:
a top-ground integrated cooling and heating air conditioner radiation system with electric energy consumption self-monitoring function comprises a control system of the top-ground integrated cooling and heating air conditioner radiation system and an electric energy meter arranged at an electric power supply inlet wire end of the top-ground integrated cooling and heating air conditioner radiation system, wherein an electric energy metering module used for metering electric energy consumption, a wireless communication module used for wirelessly transmitting electric energy consumption information and an electric energy display device used for displaying the electric energy consumption information are arranged in the electric energy meter; the electric energy metering module is also in wireless connection with the mobile phone terminal through the wireless communication module so as to send electric energy metering information to the mobile phone terminal.
Preferably, the control system is connected with the electric energy meter.
Preferably, an alarm module is arranged in the control system, the control system acquires the electric energy consumption information of the electric energy metering module, and when the electric energy consumption of the top-ground integrated air conditioner radiation system is abnormal or exceeds a set value, an alarm in the alarm module gives an alarm.
The alarm is one of a buzzer, an LED alarm indicator or an acousto-optic combined alarm.
The utility model discloses in, be provided with the MCU controller among the electric energy meter, electric energy metering module, wireless communication module and electric energy display device connect respectively the MCU controller, control system connects the MCU controller.
The utility model discloses in, control system passes through the MCU controller acquires the power consumption information in the electric energy metering module is right the water supply pipeline system of top ground integration changes in temperature air conditioner radiation system carries out optimal control.
Under the condition of large power consumption, a proper temperature control strategy can be formulated to limit the power consumption and ensure that the power consumption is controlled within a set range. For example, a threshold value of abnormal power consumption can be set, and a user can be timely reminded of checking and maintaining system equipment when the power consumption is abnormal.
As another example, a method of failure determination may be provided: firstly, a control system acquires a relationship curve of power consumption and time every day, acquires the outdoor temperature condition every day, and then comprehensively judges whether power consumption is abnormal or not according to the outdoor temperature condition of two adjacent days and the relationship curve of power consumption and time.
The utility model discloses in, the electric energy display device is the LED display screen.
The utility model discloses in, wireless communication module can adopt bluetooth communication module.
The utility model has the advantages that:
first, the utility model discloses a top ground integration air conditioner radiation system with power consumption is from monitoring sets up the electric energy meter through the power supply inlet wire end at top ground integration air conditioner radiation system, has realized the monitoring of the power consumption of top ground integration air conditioner radiation system, and the user can in time look over the condition of the power consumption of top ground integration air conditioner radiation system through cell-phone terminal promptly.
Second, the utility model discloses a top ground integration air conditioner radiation system with power consumption is from monitoring still acquires the power consumption information in the electric energy metering module through top ground integration air conditioner radiation system's control system, right top ground integration air conditioner radiation system's supply channel system carries out optimal control.
Drawings
Fig. 1 is a schematic structural diagram of a top-ground integrated cooling and heating air conditioner radiation system with self-monitoring of power consumption.
In the figure: 1. the system comprises a top-ground integrated air conditioner radiation system, 2, a control system, 3, an electric power supply inlet wire end, 4, an electric energy meter, 5, an electric energy metering module, 6, a wireless communication module, 7, an electric energy display device, 8, a mobile phone terminal, 9, an alarm module, 10 and an MCU controller.
Detailed Description
The following description will further describe embodiments of the present invention with reference to the accompanying drawings and examples. The following examples are only for illustrating the technical solutions of the present invention more clearly, and the protection scope of the present invention is not limited thereby.
Fig. 1 shows an embodiment of a top-ground integrated cooling and heating air conditioner radiation system with power consumption self-monitoring of the present invention, which includes a control system 2 of the top-ground integrated cooling and heating air conditioner radiation system 1, and an electric energy meter 4 disposed at a power supply inlet end 3 of the top-ground integrated cooling and heating air conditioner radiation system 1, wherein the electric energy meter 4 is provided with an electric energy metering module 5 for metering power consumption, a wireless communication module 6 for wirelessly transmitting power consumption information, and an electric energy display device 7 for displaying power consumption information, and the electric energy metering module 5 is respectively connected with the wireless communication module 6 and the electric energy display device 7; the electric energy metering module 5 is also in wireless connection with the mobile phone terminal 8 through the wireless communication module 6 so as to send electric energy metering information to the mobile phone terminal 8.
Preferably, the control system 2 is connected with the electric energy meter 4.
Preferably, an alarm module 9 is arranged in the control system 2, the control system 2 acquires the electric energy consumption information of the electric energy metering module 5, and when the electric energy consumption of the top-ground integrated air conditioner radiation system 1 is abnormal or exceeds a set value, an alarm in the alarm module 9 gives an alarm.
The alarm is one of a buzzer, an LED alarm indicator or an acousto-optic combined alarm.
In this embodiment, an MCU controller 10 is disposed in the electric energy meter 4, the electric energy metering module 5, the wireless communication module 6 and the electric energy display device 7 are respectively connected to the MCU controller 10, and the control system 2 is connected to the MCU controller 10.
In this embodiment, the control system 2 obtains the electric energy consumption information in the electric energy metering module 5 through the MCU controller 10, and performs optimal control on the water supply pipeline system of the top-ground integrated air conditioner radiation system 1.
Under the condition of large power consumption, a proper temperature control strategy can be formulated to limit the power consumption and ensure that the power consumption is controlled within a set range. For example, a threshold value of abnormal power consumption can be set, and a user can be timely reminded of checking and maintaining system equipment when the power consumption is abnormal.
As another example, a method of failure determination may be provided: firstly, a control system acquires a relationship curve of power consumption and time every day, acquires the outdoor temperature condition every day, and then comprehensively judges whether power consumption is abnormal or not according to the outdoor temperature condition of two adjacent days and the relationship curve of power consumption and time.
In this embodiment, the electric energy display device 7 is an LED display screen.
In this embodiment, the wireless communication module 6 may adopt a bluetooth communication module.
In this embodiment, electric energy meter 4 installs in order to reduce the interference of external strong magnetic field in the magnetism shielding shell, magnetism shielding shell is the plastic casing that the surface spraying has a layer magnetism shielding dope layer, be provided with the spraying plastics layer that covers magnetism shielding dope layer above the magnetism shielding dope layer.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the technical principle of the present invention, and these improvements and decorations should also be regarded as the protection scope of the present invention.
Claims (6)
1. A top-ground integrated air conditioner radiation system with electric energy consumption self-monitoring function is characterized by comprising a control system of the top-ground integrated air conditioner radiation system and an electric energy meter arranged at an electric power supply inlet wire end of the top-ground integrated air conditioner radiation system, wherein an electric energy metering module used for metering electric energy consumption, a wireless communication module used for wirelessly transmitting electric energy consumption information and an electric energy display device used for displaying the electric energy consumption information are arranged in the electric energy meter; the electric energy metering module is also in wireless connection with the mobile phone terminal through the wireless communication module so as to send electric energy metering information to the mobile phone terminal.
2. The integrated air conditioner radiation system with self-monitoring of electric energy consumption as set forth in claim 1, wherein said control system is connected to said electric energy meter.
3. The top-ground integrated cooling and heating air conditioner radiation system with the electric energy consumption self-monitoring function as claimed in claim 1, wherein an alarm module is arranged in the control system, the control system obtains the electric energy consumption information of the electric energy metering module, and when the electric energy consumption of the top-ground integrated cooling and heating air conditioner radiation system is abnormal or exceeds a set value, an alarm is given out through an alarm in the alarm module.
4. The integrated air conditioner radiation system with self-monitoring function for top and bottom air conditioner as claimed in claim 3, wherein said alarm is one of buzzer, LED alarm indicator or combined audible and visual alarm.
5. The top-ground integrated air conditioner radiation system with the electric energy consumption self-monitoring function as claimed in claim 3, wherein an MCU controller is arranged in the electric energy meter, the electric energy metering module, the wireless communication module and the electric energy display device are respectively connected with the MCU controller, and the control system is connected with the MCU controller.
6. The top-ground integrated air conditioning radiation system with the electric energy consumption self-monitoring function as claimed in claim 5, wherein the control system obtains the electric energy consumption information in the electric energy metering module through the MCU controller to optimally control the water supply pipeline system of the top-ground integrated air conditioning radiation system.
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CN202022348184.4U CN213955581U (en) | 2020-10-21 | 2020-10-21 | Top-ground integrated air conditioner radiation system with electric energy consumption self-monitoring function |
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CN202022348184.4U CN213955581U (en) | 2020-10-21 | 2020-10-21 | Top-ground integrated air conditioner radiation system with electric energy consumption self-monitoring function |
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