Control method and air conditioning apparatus
By generating an execution file through wireless signal exchange between the mobile phone and the thermostat, the air conditioner status is adjusted according to the operating parameters of the electrical equipment and temperature changes, which solves the problem of the single control mode of the thermostat in commercial air conditioning systems and achieves the effects of intelligence and energy saving.
Patent Information
- Application Number
- CN202411851249.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2044-12-16
AI Technical Summary
Existing commercial air conditioning systems have a single thermostat control mode, making it difficult to link with other devices and lacking sufficient intelligence, resulting in poor control performance across different product ecosystems.
By exchanging wireless signals between the mobile phone and the thermostat, an execution file is generated, and the working status of the air conditioner is adjusted according to the operating parameters of the electrical equipment and temperature changes, so as to realize intelligent control of the target area.
It achieves differentiated adjustment and energy-saving effects for air conditioning systems, improves the intelligent control capabilities of thermostats, and adapts to the linkage needs of different equipment ecosystems.
Smart Images

Figure CN119687546B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, in particular to a control method and air conditioning equipment. BACKGROUND
[0002] Commercial air conditioner series water heaters generally supply cooling and heating to a certain area or several areas, and the generated hot water and cold water flow in the pipeline. The temperature controller in the use environment is responsible for controlling the fan coil and water valve in a certain area. By controlling the opening and closing of the water valve, the cooling and heating of the coil in the use environment is controlled. The fan coil is opened and closed to exchange heat, so as to realize refrigeration and heating in the entire space.
[0003] However, many temperature controllers on the market have integrated WiFi, Bluetooth, etc. to realize remote control function, but in the use scene, it takes a lot of time and effort to adapt to the interface of other ecological furniture to realize intelligent control. At the same time, the function of the conventional temperature controller is relatively simple, the control mode is relatively single, and it is difficult to realize linkage with other use devices in different product ecologies, and the intelligent degree is not high enough.
[0004] Therefore, the prior art needs to be further developed. SUMMARY
[0005] The purpose of the present application is to overcome the above technical deficiencies, provide a control method and air conditioning equipment, to solve the technical problem of single control mode of the temperature controller of the air conditioning system in the related art.
[0006] In order to achieve the above technical purpose, the present application adopts the following technical scheme: a control method is provided, comprising:
[0007] Generating an execution file according to the operating parameters of the electrical equipment in the target space;
[0008] Judging the position of the mobile phone, when the mobile phone is not within the control range of the electrical equipment, the temperature controller adjusts the temperature in the target area according to the execution file.
[0009] Further, the parameters of the electrical equipment include the running time of the electrical equipment and the power of the electrical equipment.
[0010] Further, the method for generating an execution file according to the operating parameters of the electrical equipment in the target space comprises:
[0011] Detecting the temperature near the electrical equipment and generating a temperature change curve, and recording it into the execution file.
[0012] Further, the method for the temperature controller to adjust the temperature in the target area according to the execution file comprises:
[0013] A threshold is set, and when the temperature change exceeds the threshold by a certain range, the working state of the air conditioner in the target area is adjusted.
[0014] Further, the method for detecting the temperature near the electrical equipment includes:
[0015] A temperature sensor is arranged at the air outlet of the air conditioner in the target area, and the temperature near the electrical equipment is detected by using the temperature sensor.
[0016] Further, the method for detecting the temperature near the electrical equipment by using the temperature sensor includes:
[0017] A plurality of air conditioners are arranged, and the temperature sensor is arranged at the air outlet of the air disc of each air conditioner; the relative position between each air conditioner and the electrical equipment is determined by using the connection signal strength between the temperature controller, the mobile phone and the electrical equipment, the temperature controller closest to the electrical equipment is selected, and the temperature near the electrical equipment is detected by using the air conditioner closest to the electrical equipment.
[0018] Further, the method for determining the relative position between the air conditioner and the electrical equipment includes:
[0019] The distance between the mobile phone and the temperature controller is detected according to the signal strength between the mobile phone and the temperature controller;
[0020] The distance between the mobile phone and another temperature controller is detected according to the signal strength between the mobile phone and another temperature controller, so as to determine the position of the mobile phone;
[0021] The distance between the mobile phone and the electrical equipment is detected according to the signal strength between the mobile phone and the electrical equipment;
[0022] The distance between the temperature controller and the electrical equipment is detected according to the signal strength between the temperature controller and the electrical equipment, so as to determine the position of the electrical equipment;
[0023] The relative position between the air conditioner and the electrical equipment is determined according to the relative position between the mobile phone and the electrical equipment.
[0024] Further, the method for generating the temperature change curve includes:
[0025] The mobile phone is placed at the air outlet of each air conditioner, the distance between the mobile phone and the electrical equipment is detected, if the distance between the mobile phone and the electrical equipment is less than the distance threshold, the temperature sensor at the current air outlet is triggered to detect, and the temperature change curve is generated.
[0026] Further, the control method further comprises:
[0027] According to the signal strength between the temperature controller and the electrical equipment, the distance between the temperature controller and the electrical equipment is detected to correct the position of the electrical equipment.
[0028] Further, the method for adjusting the temperature in the target area comprises:
[0029] According to the temperature change near the electrical equipment in the cycle time, the air outlet wind speed of the air conditioner is controlled; and / or,
[0030] According to the temperature change near the electrical equipment in the cycle time, the opening degree of the water valve of the air conditioner is controlled.
[0031] Further, the method for adjusting the temperature in the target area comprises:
[0032] The heat generated by the electrical equipment in the cycle time is estimated to estimate the temperature change value T 估 near the electrical equipment in the cycle time.
[0033] When the electrical equipment runs for a period of time, the temperature change value T 检 near the electrical equipment is detected, and according to the difference between T 检 and T 估 , the air outlet wind speed and the water valve of the air conditioner are adjusted.
[0034] Further, the method for estimating the heat generated by the electrical equipment in the cycle time comprises:
[0035] The heat generated by the electrical equipment in the cycle time = the running power of the electrical equipment * factor k * cycle running time of the electrical equipment.
[0036] According to the difference between T 检 and T 估 , the value of the factor k is corrected.
[0037] Further, a first temperature controller T1 and a second temperature controller T2 are set,
[0038] The temperature values T11 and T21 detected by the first temperature controller T1 and the second temperature controller T2 are respectively subtracted from the temperature value when the electrical equipment is turned on, and ΔT1 10 and ΔT2 10 are calculated.
[0039] It is judged whether ΔT1 10 and ΔT2 10 are greater than 0, respectively.
[0040] When both are greater than 0, increase the wind speed, and / or, open the water valve;
[0041] When one is greater than 0 and the other is less than 0, maintain the current state;
[0042] When both are less than 0, determine whether the average value of |ΔT1 10 | and |ΔT2 10 | is greater than the absolute value of ΔT01; if yes, decrease the wind speed, and / or, decrease the water valve; if no, maintain the current state.
[0043] An air conditioning device suitable for the control method described above.
[0044] Further, the air conditioning device comprises:
[0045] An air conditioner located in the target area;
[0046] A temperature controller located in the target area, the temperature controller being configured to detect the temperature in the target area and control the air conditioner; the temperature controller is provided with an execution profile, and the temperature controller controls the air conditioner according to the execution profile.
[0047] Advantages:
[0048] The control method of the present application utilizes the wireless signal within the wireless signal coverage range in the application scenario to exchange information among the mobile terminal, the temperature controller and the electrical equipment, thereby generating an execution profile for the electrical equipment on the temperature controller, realizing differentiated regulation of the electrical equipment area and intelligent control in cooperation with the user's usage habits to achieve energy saving effect. BRIEF DESCRIPTION OF DRAWINGS
[0049] Figure 1 is a flowchart of the control method adopted by the embodiment of the present application;
[0050] Figure 2 is a schematic diagram of the relative position between the electrical equipment and the mobile phone in the control method adopted by the embodiment of the present application;
[0051] Figure 3 is a structural schematic diagram of the air conditioning device adopted by the embodiment of the present application;
[0052] Figure 4 is a structural schematic diagram of the temperature controller of the air conditioning device adopted by the embodiment of the present application;
[0053] Figure 5 is a structural schematic diagram of the first embodiment of the temperature change curve in the execution profile of the temperature controller of the air conditioning device provided by the embodiment of the present application;
[0054] Figure 6is a structural schematic view of a temperature change curve of an estimated electric equipment in an execution file of a temperature controller of an air conditioning equipment provided by an embodiment of the present application;
[0055] Figure 7 is a structural schematic view of a second embodiment of a temperature change curve in an execution file of a temperature controller of an air conditioning equipment provided by an embodiment of the present application;
[0056] Figure 8 is a structural schematic view of a third embodiment of a temperature change curve in an execution file of a temperature controller of an air conditioning equipment provided by an embodiment of the present application;
[0057] Figure 9 is a structural schematic view of a fourth embodiment of a temperature change curve in an execution file of a temperature controller of an air conditioning equipment provided by an embodiment of the present application.
[0058] Among the above drawings, the following reference signs are included:
[0059] 1, mobile phone; 2, temperature controller; 3, electric equipment; 4, air conditioner. DETAILED DESCRIPTION
[0060] In order to make the personnel in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the personnel in the art without creative labor should belong to the protection scope of the present application.
[0061] Referring to Figures 1 to 9 According to the embodiment of the present application, a control method is provided, which comprises: generating an execution file according to the operation parameters of an electric equipment 3 in a target space; judging the position of a mobile phone 1, and when the mobile phone 1 is not in the control range of the electric equipment 3, a temperature controller 2 adjusts the temperature in the target region according to the execution file.
[0062] With the above setting, the control situation of the electric equipment controlled by the mobile phone in the WiFi and Bluetooth control range of the temperature controller is projected to the temperature controller, so that the use situation of the electric appliance in the WiFi and Bluetooth control range of the temperature controller can be obtained, and the execution file is generated in the temperature controller according to the use time and operation setting of the corresponding equipment. When the mobile phone is not in the control range of the electric equipment, the temperature controller takes over the intelligent control of the mobile phone, thereby solving the technical problem of single control mode of the temperature controller of the air conditioning system.
[0063] Specifically, when the temperature controller 2 temporarily takes over the control of the electrical equipment, there are two cases, the first is that the mobile phone, i.e. the user, is still in the scene range, at this time, the state of the electrical equipment is dynamically adjusted according to the position of the mobile phone, for example, a fan, when the position of the mobile phone is far away from the fan or away from the fan, the temperature controller 2 controls the fan to enter the energy-saving mode or stops the fan; the second is that the mobile phone is not in the scene, which means that the user is not in the scene, at this time, the temperature controller 2 replicates the use of the electrical equipment by the user after the user leaves the scene, i.e. the temperature controller 2 controls the electrical equipment according to the user's use habits, such as turning off the light, closing the curtain, etc. before the user leaves the scene. The takeover is realized by the transfer of control right, i.e. when the mobile phone is not in the control range of the electrical equipment A and B, i.e. in the green circular area, the temperature controller 2 sends a signal to the mobile phone through WiFi or Bluetooth, and after receiving the reply from the mobile phone, the mobile phone transfers the control right to the temperature controller 2. Figure Two
[0064] Referring to Figure 1 In the control method of the embodiment, the parameters of the electrical equipment 3 include the running time of the electrical equipment 3 and the power of the electrical equipment 3. In this way, the working condition of the electrical equipment 3 can be fully understood, and the temperature controller 2 can accurately control the temperature adjustment.
[0065] In the control method of the embodiment, the method for generating the execution file according to the running parameters of the electrical equipment 3 in the target space includes detecting the temperature near the electrical equipment 3 and generating a temperature change curve, which is recorded into the execution file.
[0066] With the above settings, the positions of the mobile phone and the electrical equipment are roughly obtained by using the WiFi strength of the mobile phone and the temperature controller, the temperature change after the equipment runs for a period of time is detected by using the temperature detection device near the air outlet of the air conditioner within a certain range of the electrical equipment, and the obtained temperature change curve is recorded into the execution file. The temperature change around the equipment is effectively recorded, which facilitates the recognition of the temperature controller.
[0067] In the control method of the embodiment, the method for adjusting the temperature in the target area by the temperature controller 2 according to the execution file includes setting a threshold, and adjusting the working state of the air conditioner 4 in the target area when the temperature change exceeds the threshold by a certain range.
[0068] With the above settings, when the temperature change range exceeds a certain threshold, the air disc within a certain range of the electrical equipment is adjusted to adjust the temperature within the range, so as to realize the differentiated control of the temperature controller in the scene and effectively adjust the temperature and save energy.
[0069] In the control method of the embodiment, referring to Figure 1 The method for detecting the temperature in the vicinity of the electric device 3 comprises: arranging a temperature sensor at the air outlet of the air conditioner 4 in the target area, and detecting the temperature in the vicinity of the electric device 3 by using the temperature sensor.
[0070] With the above arrangement, a fixed temperature detection position can be arranged in the target area, and the user only needs to place the air conditioner into the target space, so as to facilitate the system to calculate the temperature change curve.
[0071] Specifically, the position of the electric device 3 and the position of the air outlet are compared, and the temperature of the electric device 3 in the vicinity of the air outlet is monitored, and the direction of the air deflector of the air outlet is adjusted according to the temperature monitoring data to realize the cooling of the heat source.
[0072] In the control method of the embodiment, referring to Figure 1 The method for detecting the temperature in the vicinity of the electric device 3 by using the temperature sensor comprises: arranging a plurality of air conditioners 4, and arranging the temperature sensor at the air outlet of the air disc of each air conditioner 4; judging the relative position between each air conditioner 4 and the electric device 3 by using the connection signal strength between the temperature controller 2, the mobile phone 1 and the electric device 3, selecting the temperature controller 2 which is closer to the electric device 3, and detecting the temperature in the vicinity of the electric device 3 by using the air conditioner 4 which is closer to the electric device 3.
[0073] In the control method of the embodiment, referring to Figure 1 The method for judging the relative position between the air conditioner 4 and the electric device 3 comprises: detecting the distance between the mobile phone 1 and the temperature controller 2 according to the signal strength between the mobile phone 1 and the temperature controller 2; detecting the distance between the mobile phone 1 and another temperature controller 2 according to the signal strength between the mobile phone 1 and the another temperature controller 2, so as to judge the position of the mobile phone 1; detecting the distance between the mobile phone 1 and the electric device 3 according to the signal strength between the mobile phone 1 and the electric device 3; detecting the distance between the temperature controller 2 and the electric device 3 according to the signal strength between the temperature controller 2 and the electric device 3, so as to judge the position of the electric device 3; and judging the relative position between the air conditioner 4 and the electric device 3 according to the relative position between the mobile phone 1 and the electric device 3.
[0074] With the above arrangement, the position of the mobile phone 1 and the electric device 3 can be judged by using the method for judging the position of a certain point in a scene by using the distance between the fixed two or more points, so as to improve the accuracy of the judgment.
[0075] In the control method of the embodiment, referring to Figure 1The method for generating the temperature change curve comprises: placing the mobile phone 1 at the air outlet of each air conditioner 4, detecting the distance between the mobile phone 1 and the electrical equipment 3, triggering the temperature sensor at the current air outlet to detect if the distance between the mobile phone 1 and the electrical equipment 3 is less than a distance threshold, and generating a temperature change curve.
[0076] Specifically, when the mobile phone 1 terminal is in the scene and can normally control the electrical equipment, the permission is the highest, and the electrical equipment 3 is controlled by the mobile phone 1; when the mobile phone 1 cannot normally control the electrical equipment 3, the temperature controller 2 intelligently takes over the mobile phone 1 by using the previously generated electrical equipment 3 profile, and then controls the electrical equipment 3, and the position of the mobile phone 1 also indicates the position of the user; for example, when the user takes the mobile phone 1 out of the scene, the electrical equipment 3 is not within the control range of the mobile phone 1, and the electrical equipment 3 is not controlled and can continue to run in a certain mode until manually stopped or the mobile phone 1 controls intervention, which causes the electrical equipment 3 to over-run and leads to energy waste. When the mobile phone 1 is outside the scene, the temperature controller 2 controls the electrical equipment; when the mobile phone 1 approaches the scene, the temperature controller 2 can detect the approach of the mobile phone 1, so that a specific mode can be entered in advance to pre-start the electrical equipment frequently used by the user in the scene, such as pre-starting the air conditioner, opening the curtain, turning on the light, etc.
[0077] In the control method of the embodiment, referring to Figure 1 The control method further comprises: detecting the distance between each temperature controller 2 and the electrical equipment 3 according to the signal strength between the temperature controller 2 and the electrical equipment 3, to correct the position of the electrical equipment 3.
[0078] With the above setting, the distance between the mobile phone 1 and the electrical equipment 3 cannot determine the specific position of the electrical equipment 3, that is, only a circle with the mobile phone 1 as the origin and R3 as the radius can be obtained, and the electrical equipment 3 is at a point of the circle. The position of the electrical equipment 3 can be roughly obtained by detecting the distance between another temperature controller 2 and the electrical equipment 3 once again. Since the mobile phone can be in a motion state, the position information will change, and the distance between the temperature controller 2 and the electrical equipment 3 is detected once again to verify the position of the electrical equipment and improve the accuracy.
[0079] Referring to Figure 1 In the control method of the embodiment, the method for adjusting the temperature in the target area comprises: controlling the air outlet wind speed of the air conditioner 4 according to the temperature change near the electrical equipment 3 within a period of time; and / or controlling the opening degree of the water valve of the air conditioner 4 according to the temperature change near the electrical equipment 3 within a period of time.
[0080] Specifically, the water valve is used to control the water flow of the coil on the ceiling in the scene. When the water valve is opened, the prepared hot or cold water flows into the fan coil in the scene from the main pipe, so as to realize the heat exchange function.
[0081] Referring to Figure 1 In the control method of the embodiment, the method for adjusting the temperature in the target area comprises: estimating the heat generated by the electrical equipment 3 in a cycle time, so as to estimate the temperature change value T 估 near the electrical equipment 3 in the cycle time; After the electrical equipment 3 runs for a period of time, the temperature change value T 检 near the electrical equipment 3 is detected, and the air outlet wind speed of the air conditioner 4 and the water valve are adjusted according to the difference between T 检 and T 估 .
[0082] With the above setting, the temperature change around the electrical equipment 3 can be compared, so that the temperature controller can more targetedly control the temperature.
[0083] Referring to Figure 1 In the control method of the embodiment, the method for estimating the heat generated by the electrical equipment 3 in a cycle time comprises: the heat generated by the electrical equipment 3 in a cycle time = the operating power of the electrical equipment 3 * factor k * the cycle operating time of the electrical equipment 3; and the value of the factor k is corrected according to the difference between T 检 and T 估 .
[0084] With the above setting, the influence of the electrical equipment on the ambient temperature in a certain time can be observed through the two difference values, and the factor K is corrected according to the difference value, so as to improve the detection accuracy of the operating state of the electrical equipment.
[0085] Referring to Figure 1 In the control method of the embodiment, the first temperature controller T1 and the second temperature controller T2 are arranged, the temperature values T11 and T21 detected by the first temperature controller T1 and the second temperature controller T2 are respectively subtracted from the temperature value when the electrical equipment 3 is turned on, and ΔT1 10 and ΔT2 10 are calculated; whether ΔT1 10 and ΔT2 10 are greater than 0 is respectively judged; when both are greater than 0, the wind speed is increased, and / or the water valve is opened; when one is greater than 0 and the other is less than 0, the current state is maintained; when both are less than 0, whether the average value of |ΔT1 10 | and |ΔT2 10 | is greater than the absolute value of ΔT01 is judged; if yes, the wind speed is reduced, and / or the water valve is reduced; if no, the current state is maintained.
[0086] Specifically, ΔT01 = T0 t1 -T0 t0 = the running power of the electrical equipment 3 * factor k * (t1-t0), T0 represents the pre-temperature around the electrical equipment 3, which can be calculated according to the running power of the electrical equipment * factor k * the period running time, and t1 and t0 represent the period time points.
[0087] With the above settings, the temperature can be adjusted more accurately, and the inaccurate detection of the temperature can be avoided, thereby affecting the judgment of the temperature controller.
[0088] The air conditioning equipment of the embodiment is suitable for the control method described above.
[0089] In the air conditioner of the embodiment, the air conditioning equipment comprises: an air conditioner 4 located in a target area; a temperature controller 2 located in the target area, the temperature controller 2 being used for detecting the temperature in the target area and controlling the air conditioner 4; and an execution file being arranged in the temperature controller 2, and the temperature controller 2 controls the air conditioner 4 according to the execution file.
[0090] Specifically, in the commercial air conditioner use scenario, the user can use the mobile phone 1 to non-contact control other electrical equipment 3 within the signal strength range. The electrical equipment 3 will generate heat in the use process, and the amount of heat depends on the properties of the electrical equipment 3 itself. The conventional temperature controller does not have scene local temperature differentiation control, and the temperature controller with WiFi and Bluetooth functions can only be connected with the mobile phone 1, and cannot intelligently control other electrical equipment 3 according to the user's use habits. Since other electrical equipment 3 may belong to different ecologies, it is difficult to achieve interconnection and intercommunication between products.
[0091] Based on the temperature controller with WiFi and Bluetooth functions, after the temperature controller is normally connected with the mobile phone 1, the mobile phone 1 (such as Figure 2The five-pointed star in the middle) can control and monitor the temperature controller 2. In a large space, there are multiple temperature controllers 2, so that the WiFi and Bluetooth signals can cover the entire scene space. The phone 1 can roughly determine the position of the phone 1 by detecting the WiFi and Bluetooth signal strength between two temperature controllers 2 or multiple temperature controllers 2. The temperature controllers 2 in the scene are connected through a communication bus. After the first temperature controller 2 is connected with the phone 1, the distance radius R1 between the first temperature controller 2 and the phone 1 can be obtained by judging the signal strength after the connection. After the first temperature controller 2 receives the signal that the second temperature controller 2 is connected successfully, the first temperature controller 2 temporarily disconnects the connection with the phone 1, and the second temperature controller 2 takes over the connection between the phone 1. After the connection is successful, the distance radius R2 between the second temperature controller 2 and the phone 1 can be obtained. The intersection of R1 and R2 can obtain the approximate position of the phone 1. Figure 2 When the phone 1 remotely controls the electrical equipment 3 (such as Figure 2 the triangle in the middle), the approximate distance R3 between the phone 1 and the electrical equipment 3 can be known by the WiFi and Bluetooth signal strength range between the phone 1 and the electrical equipment 3. The area within the radius of the distance can be marked as the electrical equipment 3 area, i.e. the circular area in the middle. By using the known position information of the phone 1, a point on the edge of the circular area of the electrical equipment 3 can be obtained. After the approximate distance between the phone 1 and the electrical equipment 3 is obtained, the phone 1 temporarily disconnects the connection with the electrical equipment 3 and transfers the control right to the first temperature controller 2. The temperature controller 2 controls the electrical equipment 3 through a temporary wireless connection. The distance R4 between the electrical equipment 3 and the first temperature controller 2 is obtained by judging the wireless connection strength. The first temperature controller 2 temporarily disconnects the connection with the electrical equipment 3 and transfers the temporary control right to the second temperature controller 2 through the communication network between the first temperature controller 2 and the second temperature controller 2. The second temperature controller 2 temporarily connects with the electrical equipment 3 through a wireless connection. The distance R5 between the second temperature controller 2 and the electrical equipment 3 is obtained by judging the wireless signal strength between the second temperature controller 2 and the electrical equipment 3. After obtaining the two sets of distance data, the second temperature controller 2 disconnects the connection with the electrical equipment 3 and transfers the temporary control right to the phone 1. The position of the electrical equipment 3 in the scene is obtained by correcting the distances between the first temperature controller 2, the second temperature controller 2, and the electrical equipment 3, and the distance between the phone 1 and the electrical equipment 3.
[0092] The temperature sensor at the air outlet of the target area's air disc, each air outlet corresponding to one air disc of the air conditioning system, there are multiple air outlet position distribution maps of the use scenarios in the temperature controller 2, and the approximate orientation of each air disc can be obtained by setting the corresponding distribution map. In the early air conditioning engineering debugging, the wireless connection strength between the multiple temperature controllers 2 and the mobile phone 1 can be used to obtain the position information of the mobile phone in the use scenario. The position information of each air outlet can be obtained by using the mobile phone 1 standing at each air outlet in the debugging mode, and the position information is synchronously sent to the temperature controller 2. According to the comparison of the position information of the electrical equipment 3 and the position information at the air outlet, whether it is within a certain threshold, if it exceeds the threshold, the temperature sensor at the air outlet is triggered to detect and generate a temperature change curve, such as Figures 5 to 9 The a1, a2, a3, a4 temperature sensors of the air outlet a in the middle record the temperature curve change of the use process of the electrical equipment 3, and the curve change is recorded in the electrical equipment 3 file. The electrical equipment 3 will send operation information, model number, etc. to the mobile phone 1 end during use, and the electrical equipment 3 information can be obtained through the corresponding temperature controller 2 software platform on the mobile phone 1 end, and then the electrical equipment 3 information is transmitted to the temperature controller 2 end and maintained in the electrical equipment 3 file in the temperature controller 2. When the mobile phone 1 terminal is not within the WiFi, Bluetooth range of the electrical equipment 3 but within the WiFi, Bluetooth signal range of the temperature controller 2, the mobile phone 1 terminal temporarily transfers the control authority of the electrical equipment 3 to the temperature controller 2, and the temperature controller 2 can temporarily take over the control of the electrical equipment 3. For some electrical equipment 3 that is turned off by the user, it can temporarily enter standby or energy-saving mode to achieve the effect of reducing energy consumption. When the mobile phone 1 end is not in the scene range, the temperature controller 2 takes over the mobile phone 1 terminal, and according to the user's operation habit when leaving the use scenario, the electrical equipment 3 is taken over to realize intelligent control of the electrical equipment 3. When the temporary takeover mode is performed, the use of the electrical equipment 3 can be controlled after entering the mode. If the electrical equipment 3 still needs to be maintained and operated after being separated from the mobile phone 1 control, the temperature controller 2 can automatically control it.
[0093] The electric equipment 3 will generate heat during use, and the air outlet of the air conditioner in the electric equipment 3 area will dynamically adjust the air disc air speed, air outlet direction and water valve opening degree in the electric equipment 3 area and the non-electric equipment 3 area according to the amount of heat generated by the equipment. The temperature sensor is arranged near the air outlet at a certain distance from the air outlet, and the temperature value periodically detected by the temperature sensor is mainly used to reflect the temperature change value in the range of the temperature sensor. When the electric equipment 3 generates heat during use, the surrounding temperature will change, and the temperature change value collected by the temperature sensor and the temperature change value collected by the temperature sensor at other air outlets outside the electric equipment 3 are comprehensively used to judge the amount of heat generated, so as to adjust the air speed of the air disc and the opening degree of the water valve. According to the position between the air outlet and the electric equipment 3, the angle and distance between the air outlet and the electric equipment 3 are obtained, and further according to the distance between the two, the temperature detection devices near the air outlet are sorted and marked as T1, T2, T3 and T4. T1 is closest to the electric equipment 3, and T4 is farthest. The running power and equipment type of the electric equipment 3 are obtained from the file of the electric equipment 3, different electric equipment 3 generates heat, and the factor k is used to represent the heat generated by the electric equipment 3. The amount of heat generated by the electric equipment 3 in a period of time is estimated by the running power * factor k * period of time, so as to estimate the change of the surrounding temperature T0 of the electric equipment 3 in a period of time. The temperature values T10, T20, T30 and T40 detected by different temperature sensors at the air outlet before the equipment is started are recorded. The air speed is high, medium and low, and the air disc of each air outlet uses the corresponding water valve control. The opening degree of the proportional valve has five adjustment degrees, which are closed, 25%, 50%, 75% and fully open. The adjustment priority is set as water valve opening degree first, and then air speed adjustment. For example, when the air speed is low and the proportional valve opening degree is 25%, the water valve opening degree is adjusted to 50% first when the gear is adjusted, and then the air speed is adjusted to medium when the water valve opening degree is fully open. 10 and ΔT2 10 The difference between the temperature values T11 and T21 detected by T1 and T2 and the temperature values T10 and T20 at the start time is calculated to obtain ΔT1 10 and ΔT2 10 The difference between the temperature values T11 and T21 detected by T1 and T2 and the temperature values T10 and T20 at the start time is calculated to obtain ΔT1 10 and ΔT2 10If the average value of | is greater than the absolute value of ΔT01, then the gear level is lowered by one level to prevent over-adjustment due to excessive temperature changes; if it is less than the average value, the gear level remains unchanged. When electrical equipment 3 is turned on during time period t2, ΔT1 is calculated using the difference between the temperature values T12, T22 and T11, T21 detected by T1 and T2. 21 and ΔT2 21 The pre-temperature change value ΔT02 around electrical equipment 3 is calculated during the time period t1-t2. ΔT1 is then used to determine... 21 and ΔT2 21 If both are greater than 0, the gear is shifted up one level. If one is greater than 0 and the other is less than 0, the gear remains unchanged. If both are less than 0, |ΔT1 is checked. 21 |and|ΔT2 21 If the average value of | is greater than the absolute value of ΔT02, the temperature is lowered by one level if it is greater, and remains unchanged if it is less than ΔT02. This check is performed every t2-t1 time interval until the nth adjustment, at which point the temperature remains unchanged after the value of T1n-T10 is less than or equal to 0, thus achieving temperature regulation within a specific area. Simultaneously, for mobile phone terminals 1 that have already completed identification and authentication of the thermostat 2 within the scene (i.e., the thermostat 2 contains device files for each electrical device 3 within the scene), the thermostat 2 can detect when the mobile phone terminal turns on the air conditioner and other electrical devices 3 that require pre-activation, even outside the scene's WiFi or Bluetooth signal range, enabling pre-activation of devices and intelligent control of the thermostat 2.
[0094] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0095] Optionally, specific examples in this embodiment can refer to the examples described in the above embodiments, and will not be repeated here.
[0096] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.
[0097] In the above-described embodiments of the present application, the description of each embodiment has its own focus, and the parts not described in detail in a certain embodiment can be referred to the relevant description of other embodiments.
[0098] The above only describes the preferred embodiments of the present application. It should be pointed out that, for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which should also be considered as the protection scope of the present application.
Claims
1. A control method characterized by, The application relates to a temperature control method and device. According to the operation parameters of the electrical equipment (3) in the target space, an execution file is generated; The position of the mobile phone (1) is judged, and when the mobile phone (1) is not in the control range of the electrical equipment (3), the temperature controller (2) adjusts the temperature in the target area according to the execution file; The method for generating the execution file according to the operation parameters of the electrical equipment (3) in the target space comprises the following steps that the temperature near the electrical equipment (3) is detected, a temperature change curve is generated, and the temperature change curve is recorded into the execution file; The method for detecting the temperature near the electrical equipment (3) comprises the following steps that a temperature sensor is arranged at the air outlet of an air conditioner (4) in the target area, and the temperature near the electrical equipment (3) is detected by using the temperature sensor; The method for detecting the temperature near the electrical equipment (3) by using the temperature sensor comprises the following steps that a plurality of air conditioners (4) are arranged, the temperature sensor is arranged at the air outlet of the air disc of each air conditioner (4), the relative positions between each air conditioner (4) and the electrical equipment (3) are judged according to the connection signal strength among the temperature controller (2), the mobile phone (1) and the electrical equipment (3), the air conditioner (4) closest to the electrical equipment (3) is selected, and the temperature near the electrical equipment (3) is detected by using the air conditioner (4) closest to the electrical equipment (3); According to the comparison between the position of the electrical equipment (3) and the position information at the air outlet, whether the electrical equipment (3) is within a certain threshold value is judged, if the threshold value is exceeded, the temperature sensor at the air outlet is triggered to detect and generate a temperature change curve; the temperature sensor records the temperature curve change in the use process of the electrical equipment (3), and the curve change is recorded into the electrical equipment (3) file; when the mobile phone (1) terminal is not within the signal range of the electrical equipment, the mobile phone (1) terminal temporarily transfers the control right of the electrical equipment (3) to the temperature controller (2), and the temperature controller (2) can temporarily take over the control of the electrical equipment (3).
2. The control method according to claim 1, characterized by, The parameters of the electrical equipment (3) include the operation time length of the electrical equipment (3) and the power of the electrical equipment (3).
3. The control method according to claim 2, characterized by, The method for adjusting the temperature in the target area by the temperature controller (2) according to the execution file comprises the following steps that a threshold value is set, and when the temperature change exceeds a certain range of the threshold value, the working state of the air conditioner (4) in the target area is adjusted. The method for judging the relative positions between the air conditioner (4) and the electrical equipment (3) comprises the following steps that the distance between the mobile phone (1) and the temperature controller (2) is detected according to the signal strength between the mobile phone (1) and the temperature controller (2); 4. The control method according to claim 3, characterized by The distance between the mobile phone (1) and another temperature controller (2) is detected according to the signal strength between the mobile phone (1) and the other temperature controller (2), so as to judge the position of the mobile phone (1); The distance between the mobile phone (1) and the electrical equipment (3) is detected according to the signal strength between the mobile phone (1) and the electrical equipment (3). According to the signal strength between the temperature controller (2) and the electrical equipment (3), the distance between the temperature controller (2) and the electrical equipment (3) is detected to determine the position of the electrical equipment (3); According to the relative position between the mobile phone (1) and the electrical equipment (3), the relative position between the air conditioner (4) and the electrical equipment (3) is determined.
5. The control method according to claim 4, characterized by, The method for generating the temperature change curve comprises: The mobile phone (1) is placed at the air outlet of each air conditioner (4), the distance between the mobile phone (1) and the electrical equipment (3) is detected, if the distance between the mobile phone (1) and the electrical equipment (3) is less than the distance threshold, the temperature sensor at the current air outlet is triggered to detect, and a temperature change curve is generated.
6. The control method according to claim 5, characterized by The control method further comprises: According to the signal strength between the multiple temperature controllers (2) and the electrical equipment (3), the distance between each temperature controller (2) and the electrical equipment (3) is detected to correct the position of the electrical equipment (3).
7. The control method according to claim 1, characterized by, The method for adjusting the temperature in the target area comprises: According to the temperature change near the electrical equipment (3) within the cycle time, the air outlet wind speed of the air conditioner (4) is controlled; and / or, According to the temperature change near the electrical equipment (3) within the cycle time, the opening degree of the water valve of the air conditioner (4) is controlled.
8. The control method according to claim 7, characterized by The method for adjusting the temperature in the target area comprises: estimating the heat generated by the electric device (3) in a cycle time to estimate a temperature change value T in the vicinity of the electric device (3) in the cycle time 估 ; When the electric device (3) runs for a period of time, the temperature change value T around the electric device (3) is detected 检 , according to the difference between T 检 and T 估 , the air outlet wind speed and water valve of the air conditioner (4) are adjusted.
9. The control method according to claim 8, characterized by, The method for estimating the heat generated by the electrical equipment (3) within the cycle time comprises: The heat generated by the electrical equipment (3) within the cycle time = the operating power of the electrical equipment (3) * factor k * the cycle operating time of the electrical equipment (3); According to T 检 The value of the correction factor k is modified by the difference between T 估 and T 10. The control method according to claim 9, characterized by, A first temperature controller T1 and a second temperature controller T2 are set; The temperature values T11, T21 detected by the first temperature controller T1 and the second temperature controller T2 are respectively subtracted from the temperature values when the electrical equipment (3) is turned on, and ΔT1 10 and ΔT2 10 are calculated. respectively, are greater than 0; and 10 and ΔT2 10 respectively, are greater than 0; and When both are greater than 0, the wind speed is increased, and / or the water valve is opened; When one is greater than 0 and the other is less than 0, the current state is maintained; When both are less than 0, determine |ΔT1 10 |and|ΔT2 10 If the average value of | is greater than the absolute value of ΔT01, then reduce the wind speed and / or reduce the water valve; otherwise, keep the current state unchanged.
11. An air conditioning apparatus characterized by comprising: The air conditioning device is suitable for the control method of any one of claims 1 to 10.
12. The air conditioning apparatus according to claim 11, wherein The air conditioning device comprises: An air conditioner (4) located in the target area; A temperature controller (2) located in the target area, the temperature controller (2) is used to detect the temperature in the target area and control the air conditioner (4); the temperature controller (2) is provided with an execution file, and the temperature controller (2) controls the air conditioner (4) according to the execution file.
Citation Information
Patent Citations
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