An optimal energy control method for air conditioners based on a set energy-saving rate
By using an external touchscreen controller for optimal air conditioning energy, combined with temperature and humidity sensors and artificial intelligence prediction, the problems of low energy control efficiency and inconvenient user operation of air conditioners are solved, achieving precise adjustment and stable operation of air conditioning energy.
Patent Information
- Application Number
- CN202411112436.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2044-08-14
AI Technical Summary
Existing air conditioning energy control methods have low control efficiency and the control device is built into the air conditioner, making it inconvenient for users to adjust.
It adopts an optimal energy touch screen controller for air conditioners, acquires data through temperature and humidity sensors, uses artificial intelligence to predict energy status, and has an external controller component for easy user operation and maintenance.
It enables precise regulation and efficient control of air conditioning energy, timely detection of reduced operating efficiency, facilitates user maintenance, and improves the stability and energy-saving effect of air conditioning operation.
Smart Images

Figure CN119492124B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of air conditioners, and particularly relates to an optimal energy control method for an air conditioner based on a set energy-saving rate. BACKGROUND
[0002] Air conditioner units are mainly divided into air-cooled and water-cooled two kinds, and the water-cooled air conditioner unit has the advantages of stable performance, high efficiency ratio and low noise, and has achieved wide application in the field of air conditioning.
[0003] How to accurately supply energy and adjust on demand will play a decisive role in energy saving and emission reduction. With the development of digital energy, how to deeply utilize data and tap the value of data has become a new revolutionary breakthrough in the energy field.
[0004] The Chinese patent document with the application number 202310326066.9 discloses an air conditioner energy control method, device and medium based on weather load, which comprises the following steps: saving PLC bottom layer instrument data, indoor temperature and humidity sensor data and public data to a cloud platform server; processing the above data to calculate first index data in units of predetermined working time, and calculating optimized load according to the first index data; selecting the date closest to the predicted load day comprehensive temperature T in the historical operation data as the reference day, and taking the load of the reference day as the reference day load; and adjusting the air conditioner energy according to the optimized load through the preset two optimization conditions and the reference day load. The application predicts the future load change rule by mining the corresponding relationship among climate, indoor temperature and load change through historical data, so as to achieve the purpose of accurate energy supply and effectively avoid energy waste.
[0005] However, the air conditioner energy control method based on weather load also has some problems, for example, the current air conditioner energy control method has low control efficiency and cannot achieve optimal energy control effect, and the control device is usually built-in in the air conditioner, which is not convenient for users to adjust and control. SUMMARY
[0006] The application aims to overcome the shortcomings of the prior art and provides an optimal energy control method for an air conditioner based on a set energy-saving rate. The assembly of the controller mounting plate, the controller fixing plate and the controller clamping plate can make the optimal energy touch screen controller of the air conditioner external, and also facilitate the removal of the optimal energy touch screen controller of the air conditioner.
[0007] The application solves the technical problems by adopting the following technical scheme:
[0008] An optimal energy control method for an air conditioner based on a set energy-saving rate comprises the following steps:
[0009] S1: adjust the energy-saving rate of the air conditioner using the air conditioner optimal energy touch screen controller, obtain the indoor and outdoor temperatures through the temperature and humidity sensor provided by the air conditioner, and obtain various data during the operation of the air conditioning unit through the air conditioner electric control;
[0010] S2: the air conditioner optimal energy touch screen controller uses the existing artificial intelligence big model on the market to predict the energy state of the air conditioning unit and the trend of the need for adjustment and control according to the obtained temperature information and air conditioner data, and controls the air conditioning unit;
[0011] S3: obtain the actual use effect of the air conditioner through the temperature and humidity sensor, compare it with the control effect of the air conditioner optimal energy touch screen controller, find out the situation of reduced air conditioner operation efficiency in time, and inform the owner to maintain and clean the air conditioner to avoid the situation of reduced air conditioner operation efficiency caused by dirty filter screen, poor air permeability, pipe blockage, etc.
[0012] The air conditioner optimal energy touch screen controller comprises a set energy-saving rate touch screen, an air conditioner optimal energy touch screen control single-chip microcomputer, an air conditioner unit connection control cable and a controller protection shell, the set energy-saving rate touch screen is clamped on the opening on the surface of the controller protection shell, the air conditioner optimal energy touch screen control single-chip microcomputer is connected with the set energy-saving rate touch screen by wires, the air conditioner optimal energy touch screen control single-chip microcomputer is bolted with the controller protection shell, and the air conditioner unit connection control cable is electrically connected with the air conditioner optimal energy touch screen control single-chip microcomputer.
[0013] The left side of the controller protection shell is clamped with a controller mounting plate, the top of the right side of the controller mounting plate is bolted with a controller fixing plate, the bottom of the right side of the controller mounting plate is bolted with an adjustment transmission box, the sliding hole of the top of the adjustment transmission box is slidably connected with a lifting clamping frame, the top of the lifting clamping frame is bolted with a controller clamping plate, and the inner side of the lifting clamping frame is hingedly connected with a lifting mechanism.
[0014] Moreover, the lifting mechanism comprises a connecting rotating rod, a large bevel gear, a small bevel gear and a transmission assembly, the top end of the connecting rotating rod is key-connected with the shaft center of the large bevel gear, the teeth of the large bevel gear are meshed with the teeth of the small bevel gear, and the small bevel gear is key-connected with the transmission assembly.
[0015] Moreover, the transmission assembly comprises a main sprocket, a chain, an auxiliary sprocket and a driving assembly, the right side of the small bevel gear is key-connected with the left side of the main sprocket, the teeth of the main sprocket are meshed with the bottom end inside the chain, the inside of the chain is meshed with the teeth of the auxiliary sprocket, and the auxiliary sprocket is key-connected with the driving assembly.
[0016] Moreover, the driving assembly comprises a worm, a worm wheel, a steel wire winding wheel and a lifting assembly, the shaft center of the auxiliary sprocket is key-connected with the right end on the surface of the worm, the surface of the worm is meshed with the top of the worm wheel, the back side of the worm wheel is key-connected with the surface of the steel wire winding wheel, and the steel wire winding wheel is wound with the lifting assembly.
[0017] Moreover, the lifting assembly comprises a tightening steel wire, a transmission frame and a transmission sliding sleeve, the inside of the steel wire winding wheel is wound with the top end of the tightening steel wire, the bottom end of the tightening steel wire is bolted with the top of the transmission frame, the right end of the transmission frame surface is hingedly connected with the right side of the inside of the adjusting transmission box, and the left end of the transmission sliding sleeve is slidably connected with the inside of the transmission sliding sleeve.
[0018] Moreover, the bottom end of the surface of the connecting rotating rod is rotatably sleeved with the hole of the adjusting transmission box, and the right side of the shaft of the main sprocket is rotatably connected with the right side of the inside of the adjusting transmission box.
[0019] Moreover, the two ends of the worm are rotatably sleeved with the inside of the adjusting transmission box, and the shaft of the steel wire winding wheel is rotatably connected with the inside of the adjusting transmission box.
[0020] Moreover, the middle part of the controller fixing plate is provided with a notch, and the top end of the air conditioning unit connection control cable penetrates through the notch of the controller fixing plate.
[0021] Moreover, the bottom of the controller fixing plate and the top of the controller clamping plate are both provided with a limiting groove, and the controller protection shell is located between the limiting grooves of the controller fixing plate and the controller clamping plate.
[0022] Moreover, the four peripheries of the controller mounting plate are provided with mounting holes, the left side of the controller clamping plate is slidably connected with the right side of the controller mounting plate, and the bottom end of the lifting clamping frame extends to the inside of the adjusting transmission box.
[0023] The advantages and positive effects of the present application are:
[0024] The present application obtains data in the operation process of the air conditioner through the temperature and humidity sensor and the air conditioner electric control, controls the air conditioner optimal energy touch screen controller, then performs optimal energy control through the air conditioner electric control, and the assembly of the controller mounting plate, the controller fixing plate and the controller clamping plate can externally place the air conditioner optimal energy touch screen controller and also facilitate taking out the air conditioner optimal energy touch screen controller. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 A system block diagram of an air conditioner optimal energy control method based on a set energy-saving rate is provided for the present application;
[0026] Figure 2 A front view structural schematic diagram of an air conditioner optimal energy control method based on a set energy-saving rate is provided for the present application;
[0027] Figure 3 An inside structure schematic diagram of an adjusting transmission box of an air conditioner optimal energy control method based on a set energy-saving rate is provided for the present application;
[0028] Figure 4 A three-dimensional structural schematic diagram of an air conditioner optimal energy touch screen controller according to the air conditioner optimal energy control method based on the set energy saving rate is provided in the present application.
[0029] Figure 5 A three-dimensional structural schematic diagram of a main sprocket according to the air conditioner optimal energy control method based on the set energy saving rate is provided in the present application.
[0030] Label explanation:
[0031] 1, air conditioner optimal energy touch screen controller; 2, temperature and humidity sensor; 3, air conditioner electric control; 4, set energy saving rate touch screen; 5, air conditioner optimal energy touch screen control single-chip microcomputer; 6, air conditioner unit connection control cable; 7, controller protection shell; 8, controller mounting plate; 9, controller fixing plate; 10, adjustment transmission box; 11, lifting clamping frame; 12, controller clamping plate; 13, connecting rotating rod; 14, large bevel gear; 15, small bevel gear; 16, main sprocket; 17, chain; 18, secondary sprocket; 19, worm; 20, worm gear; 21, steel wire winding wheel; 22, tightening steel wire rope; 23, transmission frame; 24, transmission sliding sleeve. DETAILED DESCRIPTION
[0032] The present application will be further described in detail below with reference to the accompanying drawings.
[0033] Reference Figures 1-5 In the present embodiment, an air conditioner optimal energy control method based on a set energy saving rate is provided, including the following steps:
[0034] S1: The energy saving rate of the air conditioner is adjusted by the air conditioner optimal energy touch screen controller 1, the temperature inside and outside the room is obtained by the temperature and humidity sensor 2 provided with the air conditioner, and various data during the operation of the air conditioner unit is obtained by the air conditioner electric control 3;
[0035] S2: The air conditioner optimal energy touch screen controller 1 uses the existing artificial intelligence large model on the market to predict the energy state of the air conditioner unit and the trend of the adjustment and control required according to the obtained temperature information and air conditioner data, and controls the air conditioner unit through network calculation;
[0036] S3: The actual use effect of the air conditioner is obtained by the temperature and humidity sensor 2, which is compared with the regulation and control effect of the air conditioner optimal energy touch screen controller 1, and the situation that the operation efficiency of the air conditioner is reduced is found in time, the owner is informed to maintain and clean the air conditioner, and the situation that the operation efficiency of the air conditioner is reduced due to the reasons such as dirty filter screen, poor air permeability, and pipeline blockage is avoided;
[0037] The air conditioner optimal energy touch screen controller 1 comprises a set energy-saving rate touch screen 4, an air conditioner optimal energy touch screen controller single-chip microcomputer 5, an air conditioner unit connection control cable 6 and a controller protection shell 7, the set energy-saving rate touch screen 4 is clamped on the opening of the surface of the controller protection shell 7, the air conditioner optimal energy touch screen controller single-chip microcomputer 5 is electrically connected with the set energy-saving rate touch screen 4, the air conditioner optimal energy touch screen controller single-chip microcomputer 5 is bolted with the controller protection shell 7, and the air conditioner unit connection control cable 6 is electrically connected with the air conditioner optimal energy touch screen controller single-chip microcomputer 5.
[0038] The left side of the controller protection shell 7 is clamped with a controller mounting plate 8, the top of the right side of the controller mounting plate 8 is bolted with a controller fixing plate 9, and the bottom of the right side of the controller mounting plate 8 is bolted with an adjustment transmission box 10, the sliding hole of the top of the adjustment transmission box 10 is slidably connected with a lifting clamping frame 11, the top of the lifting clamping frame 11 is bolted with a controller clamping plate 12, and the inner side of the lifting clamping frame 11 is hingedly connected with a lifting mechanism.
[0039] The lifting mechanism comprises a connecting rotating rod 13, a large bevel gear 14, a small bevel gear 15 and a transmission assembly, the top end of the connecting rotating rod 13 is key-connected with the shaft center of the large bevel gear 14, the teeth of the large bevel gear 14 are meshed with the teeth of the small bevel gear 15, the small bevel gear 15 is key-connected with the transmission assembly, the bottom end of the connecting rotating rod 13 is provided with a hand wheel which can be inserted into a cross rod to rotate the hand wheel, the hand wheel drives the connecting rotating rod 13 to rotate, the connecting rotating rod 13 can drive the large bevel gear 14 to rotate, the large bevel gear 14 can drive the small bevel gear 15 to rotate, the size of the large bevel gear 14 is larger than that of the small bevel gear 15, so that the small bevel gear 15 can be accelerated, and the small bevel gear 15 can drive the transmission assembly to rotate.
[0040] The transmission assembly comprises a main sprocket 16, a chain 17, an auxiliary sprocket 18 and a driving assembly, the right side of the small bevel gear 15 is key-connected with the left side of the main sprocket 16, the teeth of the main sprocket 16 are meshed with the bottom end inside the chain 17, the inside of the chain 17 is meshed with the teeth of the auxiliary sprocket 18, and the auxiliary sprocket 18 is key-connected with the driving assembly, the small bevel gear 15 can drive the main sprocket 16 to rotate, the main sprocket 16 can drive the chain 17 to rotate, the chain 17 can drive the auxiliary sprocket 18 to rotate, the size of the main sprocket 16 is three times that of the auxiliary sprocket 18, so that the auxiliary sprocket 18 can be accelerated, and the auxiliary sprocket 18 can drive the driving assembly to rotate.
[0041] The driving assembly comprises a worm 19, a worm wheel 20, a steel wire winding wheel 21 and a lifting assembly, the shaft center of the secondary sprocket 18 is in key connection with the right end of the surface of the worm 19, the surface of the worm 19 is in meshing connection with the top of the worm wheel 20, the rear side of the worm wheel 20 is in key connection with the surface of the steel wire winding wheel 21, the steel wire winding wheel 21 is wound with the lifting assembly, the secondary sprocket 18 can drive the worm 19 to rotate, the worm 19 can drive the worm wheel 20 to rotate, the worm wheel 20 cannot drive the worm 19 to rotate, and the self-locking effect can be generated, the worm wheel 20 can drive the steel wire winding wheel 21 to rotate counterclockwise, and the steel wire winding wheel 21 can drive the lifting assembly to rotate;
[0042] The lifting assembly comprises a tightening steel wire rope 22, a transmission frame 23 and a transmission sliding sleeve 24, the inside of the steel wire winding wheel 21 is wound with the top end of the tightening steel wire rope 22, the bottom end of the tightening steel wire rope 22 is bolted with the top of the transmission frame 23, the right end of the transmission frame 23 is hinged with the right side in the inside of the adjusting transmission box 10, the left end of the surface of the transmission frame 23 is in sliding connection with the inside of the transmission sliding sleeve 24, and the surface of the transmission sliding sleeve 24 is hinged with the inside of the lifting clamping frame 11; the steel wire winding wheel 21 can drive the tightening steel wire rope 22 to move upwards, the tightening steel wire rope 22 can drive the transmission frame 23 to rotate upwards, the transmission frame 23 is rotatably arranged in the adjusting transmission box 10 through a bearing, the movement of the transmission frame 23 is located in the inside of the chain 17, the transmission frame 23 can slide in the inside of the transmission sliding sleeve 24 and drive the transmission sliding sleeve 24 to move upwards, and the transmission sliding sleeve 24 can drive the lifting clamping frame 11 to move upwards;
[0043] The bottom end of the surface of the connecting rotating rod 13 is rotatably sleeved with the hole of the adjusting transmission box 10, the shaft center of the right side of the main sprocket 16 is rotatably connected with the right side in the inside of the adjusting transmission box 10, the connecting rotating rod 13 is rotatably arranged in the adjusting transmission box 10 through a bearing, the stability of the rotation of the connecting rotating rod 13 is guaranteed, and the main sprocket 16 is rotatably arranged in the adjusting transmission box 10 through a bearing, so that the main sprocket 16 can drive the chain 17 to rotate;
[0044] Both ends of the worm 19 are rotatably sleeved with the inside of the adjusting transmission box 10, the shaft center of the steel wire winding wheel 21 is rotatably connected with the inside of the adjusting transmission box 10, the worm 19 is rotatably arranged in the connecting block through a bearing, and the connecting block is fixed by the adjusting transmission box 10, so that the worm 19 can drive the worm wheel 20 to rotate, and the steel wire winding wheel 21 is rotatably arranged in the adjusting transmission box 10 through a bearing;
[0045] The middle part of the controller fixing plate 9 is provided with a recess, the top end of the air conditioner unit connection control cable 6 penetrates through the recess of the controller fixing plate 9, the recess of the controller fixing plate 9 can make the air conditioner unit connection control cable 6 pass smoothly, and the controller fixing plate 9 avoids interfering with the air conditioner unit connection control cable 6;
[0046] The bottom of the controller fixing plate 9 and the top of the controller clamping plate 12 are both provided with a limiting groove, the controller protection shell 7 is located between the limiting grooves of the controller fixing plate 9 and the controller clamping plate 12, and the limiting grooves of the controller fixing plate 9 and the controller clamping plate 12 are used for fixing the controller protection shell 7, thereby facilitating the taking and placing of the controller protection shell 7.
[0047] The four sides of the controller mounting plate 8 are provided with mounting holes, the left side of the controller clamping plate 12 is in sliding connection with the right side of the controller mounting plate 8, the bottom end of the lifting clamping frame 11 extends into the inside of the adjusting transmission box 10, the mounting holes of the controller mounting plate 8 are used for the mounting and fixing of the controller mounting plate 8, and the controller clamping plate 12 is in sliding connection with the controller mounting plate 8 through the slide rail, thereby facilitating the up-and-down movement of the controller clamping plate 12.
[0048] The data in the air conditioner operation process are obtained through the temperature and humidity sensor 2 and the air conditioner electric control 3, the air conditioner optimal energy touch screen controller 1 is controlled, then the optimal energy control is performed through the air conditioner electric control 3, and through the assembly of the controller mounting plate 8, the controller fixing plate 9 and the controller clamping plate 12, the air conditioner optimal energy touch screen controller 1 can be externally arranged, and the air conditioner optimal energy touch screen controller 1 can be conveniently taken out.
[0049] Working principle: the controller mounting plate 8 is previously mounted on the wall plate at the bottom of the air conditioner, then the air conditioner optimal energy touch screen controller 1 is clamped between the controller fixing plate 9 and the controller clamping plate 12, the bottom end of the connecting rotating rod 13 is provided with a hand wheel, the hand wheel can be inserted into the cross rod to rotate, the hand wheel drives the connecting rotating rod 13 to rotate, the connecting rotating rod 13 can drive the large bevel gear 14 to rotate, the large bevel gear 14 can drive the small bevel gear 15 to rotate, the size of the large bevel gear 14 is larger than that of the small bevel gear 15, so that the small bevel gear 15 can be accelerated, the small bevel gear 15 can drive the main sprocket 16 to rotate, the main sprocket 16 can drive the chain 17 to rotate, the chain 17 can drive the auxiliary sprocket 18 to rotate, the size of the main sprocket 16 is three times that of the auxiliary sprocket 18, so that the auxiliary sprocket 18 can be accelerated, the auxiliary sprocket 18 can drive the worm 19 to rotate, the worm 19 can drive the worm wheel 20 to rotate, the worm wheel 20 cannot drive the worm 19 to rotate, so that a self-locking effect can be generated, the worm wheel 20 can drive the steel wire winding wheel 21 to rotate counterclockwise, the steel wire winding wheel 21 can drive the tightening steel wire rope 22 to move upwards, the tightening steel wire rope 22 can drive the transmission frame 23 to rotate upwards, the transmission frame 23 is rotationally arranged in the adjusting transmission box 10 through a bearing, the movement of the transmission frame 23 is located on the inner side of the chain 17, the transmission frame 23 can slide in the transmission sliding sleeve 24 and drive the transmission sliding sleeve 24 to move upwards, the transmission sliding sleeve 24 can drive the lifting clamping frame 11 to move upwards, and the lifting clamping frame 11 can drive the controller clamping plate 12 to clamp upwards.
[0050] It should be emphasized that the embodiments of the present application are illustrative only and not restrictive, thus the present application includes and is not limited to the embodiments described in the specific embodiments, any other embodiments derived by those skilled in the art according to the technical solutions of the present application also belong to the scope of protection of the present application.
Claims
1. An optimal energy control method for an air conditioner based on a set energy saving rate, characterized by, It comprises the following steps: S1: adjust the energy saving rate of the air conditioner using the air conditioner optimal energy touch screen controller (1), obtain the indoor and outdoor temperature through the air conditioner's temperature and humidity sensor (2), and obtain various data during the operation of the air conditioning unit through the air conditioner's electric control (3); S2: the air conditioner optimal energy touch screen controller (1) predicts the energy state of the air conditioning unit and the trend of the need for adjustment and control according to the obtained temperature information and air conditioner data, and controls the air conditioning unit by using the existing artificial intelligence big model on the market through network calculation; S3: the actual use effect of the air conditioner is obtained through the temperature and humidity sensor (2), which is compared with the control effect of the air conditioner optimal energy touch screen controller (1), and the situation that the air conditioner running efficiency is reduced is found in time, the owner is informed to maintain and clean the air conditioner, and the situation that the air conditioner running efficiency is reduced caused by the dirty filter screen, poor air permeability and pipeline blockage is avoided; The air conditioner optimal energy touch screen controller (1) comprises a set energy saving rate touch screen (4), an air conditioner optimal energy touch screen control single-chip microcomputer (5), an air conditioner unit connection control cable (6) and a controller protection shell (7), the set energy saving rate touch screen (4) is clamped on the opening on the surface of the controller protection shell (7), the air conditioner optimal energy touch screen control single-chip microcomputer (5) is electrically connected with the set energy saving rate touch screen (4), the air conditioner optimal energy touch screen control single-chip microcomputer (5) is bolted with the controller protection shell (7), and the air conditioner unit connection control cable (6) is electrically connected with the air conditioner optimal energy touch screen control single-chip microcomputer (5); The left side of the controller protection shell (7) is clamped with a controller mounting plate (8), the right side of the controller mounting plate (8) is bolted with a controller fixing plate (9) at the top, the bottom of the right side of the controller mounting plate (8) is bolted with an adjustment transmission box (10), the top of the adjustment transmission box (10) is slidably connected with a lifting clamping frame (11), the top of the lifting clamping frame (11) is bolted with a controller clamping plate (12), and the inner side of the lifting clamping frame (11) is hinged with a lifting mechanism; The lifting mechanism comprises a connecting rotating rod (13), a large bevel gear (14), a small bevel gear (15) and a transmission assembly, the top end of the connecting rotating rod (13) is key connected with the shaft center of the large bevel gear (14), the teeth of the large bevel gear (14) are engaged with the teeth of the small bevel gear (15), and the small bevel gear (15) is key connected with the transmission assembly; The transmission assembly comprises a main sprocket (16), a chain (17), an auxiliary sprocket (18) and a driving assembly, the right side of the small bevel gear (15) is key connected with the left side of the main sprocket (16), the teeth of the main sprocket (16) are engaged with the bottom end inside the chain (17), the inside of the chain (17) is engaged with the teeth of the auxiliary sprocket (18), and the auxiliary sprocket (18) is key connected with the driving assembly; The driving assembly comprises a worm (19), a worm wheel (20), a steel wire winding wheel (21) and a lifting assembly, the worm (19) is in key connection with the right end of the surface of the worm (19) at the shaft center of the secondary sprocket (18), the surface of the worm (19) is in mesh with the top of the worm wheel (20), the rear side of the worm wheel (20) is in key connection with the surface of the steel wire winding wheel (21), and the steel wire winding wheel (21) is wound with the lifting assembly; The lifting assembly comprises a tightening steel wire rope (22), a transmission frame (23) and a transmission sliding sleeve (24), the inside of the steel wire winding wheel (21) is wound with the top end of the tightening steel wire rope (22), the bottom end of the tightening steel wire rope (22) is bolted with the top of the transmission frame (23), the right end of the transmission frame (23) is hinged with the right side in the inside of the adjusting transmission box (10), the left end of the surface of the transmission frame (23) is in sliding connection with the inside of the transmission sliding sleeve (24), and the surface of the transmission sliding sleeve (24) is hinged with the inside of the lifting clamping frame (11).
2. The optimal energy control method for an air conditioner based on a set energy saving rate according to claim 1, wherein The bottom end of the surface of the connecting rotating rod (13) is rotatably sleeved with the hole of the adjusting transmission box (10), and the shaft center of the right side of the main sprocket (16) is rotatably connected with the right side in the inside of the adjusting transmission box (10).
3. The optimal energy control method of an air conditioner based on a set energy saving rate according to claim 1, wherein Both ends of the worm (19) are rotatably sleeved with the inside of the adjusting transmission box (10), and the shaft center of the steel wire winding wheel (21) is rotatably connected with the inside of the adjusting transmission box (10).
4. The optimal energy control method of an air conditioner based on a set energy saving rate according to claim 1, wherein, The middle part of the controller fixing plate (9) is provided with a recess, and the top end of the air conditioning unit connection control cable (6) penetrates through the recess of the controller fixing plate (9).
5. The optimal energy control method of an air conditioner based on a set energy saving rate according to claim 1, wherein, The bottom of the controller fixing plate (9) and the top of the controller clamping plate (12) are both provided with a limiting groove, and the controller protection shell (7) is located between the limiting grooves of the controller fixing plate (9) and the controller clamping plate (12).
6. The optimal energy control method of an air conditioner based on a set energy saving rate according to claim 1, wherein, The controller mounting plate (8) is provided with mounting holes around, the left side of the controller clamping plate (12) is in sliding connection with the right side of the controller mounting plate (8), and the bottom end of the lifting clamping frame (11) extends into the inside of the adjusting transmission box (10).
Citation Information
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Air conditioner energy control method and device based on weather load, and medium
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