A temperature control device adjustment method, device and computer storage medium
By using multiple temperature sensors in the temperature control device to compare temperature differences and adjust the airflow direction and angle, the problem of uneven temperature is solved, resulting in more uniform room temperature control and improved user experience.
Patent Information
- Application Number
- CN202110713542.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-06-25
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2041-06-25
AI Technical Summary
Existing temperature control equipment produces uneven air outlet temperatures during cooling and heating operations, resulting in inconsistent perceived temperatures in different parts of the room and affecting comfort.
By placing two or more temperature sensors in areas where users frequently move around, comparing temperature differences, and adjusting the airflow direction and angle of the temperature control equipment, the airflow direction is adjusted towards the midpoint of the sensors, thereby achieving uniform room temperature control.
It improves the uniformity of room temperature and user experience, providing a more balanced and comfortable environment.
Smart Images

Figure CN115523634B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of home appliance control, in particular to a temperature control device adjustment method, device and computer storage medium. BACKGROUND
[0002] In the current temperature control device, in order to achieve the temperature drop or rise of the room, the outlet air temperature is often low when cooling and high when heating, resulting in uneven temperature distribution in the room, and different user feelings in different positions of the room, which affects the comfort of using the temperature control device. SUMMARY
[0003] To solve the existing technical problems, the embodiments of the present application provide a temperature control device adjustment method, device and computer storage medium.
[0004] To achieve the above purpose, the technical scheme of the embodiments of the present application is as follows:
[0005] The embodiments of the present application provide a temperature control device adjustment method, which comprises:
[0006] obtaining a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor;
[0007] comparing the first temperature and the second temperature, and adjusting the air guide angle to direct the air supply direction to a target air supply point based on the comparison result; the target air supply point is related to the positions of the first temperature sensor and the second temperature sensor.
[0008] In the above scheme, the comparison of the first temperature and the second temperature comprises:
[0009] determining the difference between the first temperature and the second temperature;
[0010] when the difference exceeds a preset temperature threshold, adjusting the air guide angle to direct the air supply direction to the target air supply point; the target air supply point is the middle point of the first temperature sensor and the second temperature sensor.
[0011] In the above scheme, the method further comprises:
[0012] obtaining a first vertical position of the first temperature sensor;
[0013] obtaining a second vertical position of the second temperature sensor;
[0014] The operation of adjusting the air guide angle to direct the air supply direction to the target air supply point comprises:
[0015] The air delivery direction is adjusted to the midpoint between the first vertical position and the second vertical position by adjusting the air guide angle.
[0016] The method in the above scheme further includes:
[0017] Obtain the first horizontal position of the first temperature sensor;
[0018] Obtain the second horizontal position of the second temperature sensor;
[0019] The operation of adjusting the air guide angle to direct the air supply direction toward the target air supply point includes:
[0020] Adjust the air guide angle to bring the air supply direction to the midpoint between the first horizontal position and the second horizontal position.
[0021] In the above scheme, comparing the first temperature and the second temperature includes:
[0022] Obtain the target temperature;
[0023] Determine the first difference between the first temperature and the target temperature;
[0024] Determine the second difference between the second temperature and the target temperature;
[0025] Determine the larger of the first difference and the second difference;
[0026] The method of adjusting the air guide angle based on the comparison result to direct the air supply direction toward the target air supply point includes:
[0027] Adjust the airflow angle toward the temperature sensor corresponding to the larger value.
[0028] In the above scheme, obtaining the first temperature and the second temperature includes:
[0029] Acquire temperature values measured by at least two temperature sensors configured according to preset rules;
[0030] Determine the first temperature and the second temperature from the temperature values measured by the at least two temperature sensors;
[0031] Among the temperature values measured by the at least two temperature sensors, the two temperature values with the largest difference are taken as the first temperature and the second temperature;
[0032] The preset rules include one of the following:
[0033] The distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold.
[0034] The distance between the first temperature sensor and the temperature control device exceeds a second preset threshold, the distance between the second temperature sensor and the temperature control device exceeds a second preset threshold, and the distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold.
[0035] In the above scheme, obtaining the temperature values measured by at least two temperature sensors set according to preset rules includes:
[0036] When the temperature control device runs for a period of time exceeding a preset time threshold under the current operating mode, acquire the temperature values measured by at least two temperature sensors according to preset rules.
[0037] This invention also provides a temperature control device adjustment apparatus, the apparatus comprising:
[0038] An acquisition module is used to acquire a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor.
[0039] An adjustment module is used to compare the first temperature and the second temperature, and adjust the air guide angle based on the comparison result to direct the air supply direction toward the target air supply point; the target air supply point is related to the position of the first temperature sensor and the second temperature sensor.
[0040] In the above scheme, the adjustment module is used to determine the difference between the first temperature and the second temperature;
[0041] When the difference exceeds a preset temperature threshold, the air guide angle is adjusted to direct the airflow towards the target air delivery point; the target air delivery point is the midpoint between the first temperature sensor and the second temperature sensor.
[0042] In the above scheme, the acquisition module is further used to acquire the first vertical position of the first temperature sensor;
[0043] Obtain the second vertical position of the second temperature sensor;
[0044] The adjustment module is used to adjust the air delivery direction to the midpoint between the first vertical position and the second vertical position by adjusting the air guide angle.
[0045] In the above scheme, the acquisition module is further used to acquire the first horizontal position of the first temperature sensor;
[0046] Obtain the second horizontal position of the second temperature sensor;
[0047] The adjustment module is used to adjust the air delivery direction to the midpoint between the first horizontal position and the second horizontal position by adjusting the air guide angle.
[0048] In the above solution, the obtaining module is further configured to obtain the target temperature.
[0049] determine a first difference between the first temperature and the target temperature;
[0050] determine a second difference between the second temperature and the target temperature;
[0051] determine a larger value between the first difference and the second difference;
[0052] The adjusting module is configured to adjust the air guiding angle to the temperature sensor corresponding to the larger value.
[0053] In the above solution, the obtaining module is configured to obtain temperature values measured by at least two temperature sensors arranged according to a preset rule.
[0054] determine a first temperature and a second temperature from the temperature values measured by the at least two temperature sensors;
[0055] In the above solution, the first temperature and the second temperature are two temperature values with the largest difference in the temperature values measured by the at least two temperature sensors.
[0056] The preset rule includes one of the following:
[0057] a distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold;
[0058] a distance between the first temperature sensor and the temperature control device exceeds a second preset threshold, a distance between the second temperature sensor and the temperature control device exceeds the second preset threshold, and a distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold.
[0059] In the above solution, the obtaining module is configured to obtain temperature values measured by at least two temperature sensors arranged according to a preset rule when a running time of the temperature control device according to a current running mode exceeds a preset time threshold.
[0060] The embodiment of the present application also provides a temperature control device adjusting apparatus, which comprises a processor and a memory for storing a computer program capable of running on the processor; when the processor runs the computer program, the processor performs the steps of the temperature control device adjusting method.
[0061] The embodiment of the present application also provides a computer storage medium, which stores computer instructions, and the instructions are executed by a processor to perform the steps of the temperature control device adjusting method.
[0062] The temperature control device adjustment method, device and computer storage medium provided by the embodiment of the present application, the method comprises: obtaining a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor; comparing the first temperature and the second temperature, and adjusting the air guide angle to direct the air supply direction to a target air supply point based on the comparison result; the target air supply point is related to the positions of the first temperature sensor and the second temperature sensor. By comparing the temperature difference of the two or more temperature sensors arranged in the user's frequently active area, the operation and air supply mode of the temperature control device are adjusted, the room temperature uniform control is realized, and the user experience is improved by adopting the technical solution of the embodiment of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0063] Figure 1 A flowchart of a temperature control device adjustment method of the embodiment of the present application is shown in the figure.
[0064] Fig. 2(a), Fig. 2(b) and Fig. 2(c) are principle diagrams of a temperature control device adjustment method of the embodiment of the present application.
[0065] Figure 3 A flowchart of another temperature control device adjustment method of the embodiment of the present application is shown in the figure.
[0066] Figure 4 A structure diagram of a temperature control device adjustment device of the embodiment of the present application is shown in the figure.
[0067] Figure 5 A structure diagram of another temperature control device adjustment device of the embodiment of the present application is shown in the figure. DETAILED DESCRIPTION
[0068] In order to make the personnel in the technical field better understand the embodiment of the present application, the technical solutions in the embodiment of the present application will be clearly described in combination with the drawings in the embodiment of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments.
[0069] The terms "first", "second", and "third" and the like in the specification of the description of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or sequence. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, including a series of steps or units. The method, system, product or device is not necessarily limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0070] In various embodiments of the present application, a first temperature and a second temperature are obtained; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor; the first temperature and the second temperature are compared, and based on the comparison result, an air guide angle is adjusted to direct an air supply direction to a target air supply point; the target air supply point is related to positions of the first temperature sensor and the second temperature sensor.
[0071] The present application is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0072] Figure 1 A flowchart of a temperature control device adjustment method according to an embodiment of the present application is shown in FIG. 1. As shown in FIG. 1, the method comprises the following steps. Figure 1
[0073] In step 101, a first temperature and a second temperature are obtained; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor.
[0074] In step 102, the first temperature and the second temperature are compared, and based on the comparison result, an air guide angle is adjusted to direct an air supply direction to a target air supply point; the target air supply point is related to positions of the first temperature sensor and the second temperature sensor.
[0075] The method can be applied to a temperature control device; the temperature control device can adjust a temperature of an environment, such as increasing the temperature of the environment or decreasing the temperature of the environment. The temperature control device can be an air conditioner (also referred to as an air conditioner).
[0076] In an embodiment, the comparison of the first temperature and the second temperature comprises:
[0077] determining a difference between the first temperature and the second temperature;
[0078] when the difference exceeds a preset temperature threshold, adjusting the air guide angle to direct the air supply direction to the target air supply point; the target air supply point is a middle point of the first temperature sensor and the second temperature sensor.
[0079] The preset temperature threshold can be set by a developer in advance and saved in the temperature control device; for example, 1°C (Celsius) or 2°C; here, no limitation is made.
[0080] In an embodiment, the method further comprises:
[0081] obtaining a first vertical position of the first temperature sensor;
[0082] obtaining a second vertical position of the second temperature sensor;
[0083] The operation of adjusting the air guide angle to direct the air supply direction to the target air supply point comprises:
[0084] The air supply direction is adjusted to an intermediate point between the first vertical position and the second vertical position by adjusting the air guide angle.
[0085] Here, the vertical air guide plate can be adjusted specifically.
[0086] In an embodiment, the method further comprises:
[0087] Obtaining a first horizontal position of the first temperature sensor;
[0088] Obtaining a second horizontal position of the second temperature sensor;
[0089] The operation of adjusting the air guide angle to direct the air supply direction to the target air supply point comprises:
[0090] The air supply direction is adjusted to an intermediate point between the first horizontal position and the second horizontal position by adjusting the air guide angle.
[0091] Here, the horizontal louver can be adjusted specifically.
[0092] Specifically, adjusting the air guide angle to direct the air supply direction to an intermediate point between the first temperature sensor and the second temperature sensor can include two adjustment directions, one being a horizontal direction and the other being a vertical direction, so as to adjust the air supply direction to a spatial intermediate point between the two temperature sensors. In this way, the initial position of the air guide angle is determined, and the indoor temperature balance is achieved as much as possible.
[0093] The temperature control device can adjust the air guide angle by adjusting the horizontal louver and the vertical air guide plate.
[0094] In order to adjust the air guide angle to direct the air supply direction to an intermediate point between the first temperature sensor and the second temperature sensor, the position information of the first temperature sensor and the second temperature sensor can be obtained in advance.
[0095] In an embodiment, the method further comprises:
[0096] Determining the position information of each temperature sensor;
[0097] Sending the determined position information of each temperature sensor to the temperature control device; each position information corresponds to a unique identifier of the corresponding temperature sensor.
[0098] The method of determining the position information of each temperature sensor can comprise:
[0099] The position of the temperature sensor is determined by an installer, and the measured position information is sent to the temperature control device through a mobile terminal in communication with the temperature control device.
[0100] The position of the temperature sensor is determined or adjusted by the user, and the measured position information is sent to the temperature control device through a mobile terminal in communication with the temperature control device.
[0101] The position information includes horizontal position information, vertical position information, and front-back position information of the temperature sensor.
[0102] The vertical position information can refer to the height of the temperature sensor (the height from the ground or the distance from the plane where the temperature control device is located);
[0103] The horizontal position information can refer to the distance of each temperature sensor from a certain vertical plane (such as the distance from a certain wall, which can be the wall near the temperature control device);
[0104] The front-back position information can refer to the distance of each temperature sensor from the vertical plane where the air conditioner is located;
[0105] Based on the horizontal position information and the vertical position information, the distance between the first temperature sensor and the second temperature sensor can be determined, and the midpoint between the two can also be determined.
[0106] The front-back position information can include the distance of the temperature sensor from the temperature control device, so that the temperature control device can determine which temperature sensor is closer to itself and which temperature sensor is farther away from itself.
[0107] In the above manner, the position information of the temperature sensor is determined, and any temperature sensor can be used, and a temperature sensor with lower cost can be used to reduce cost.
[0108] The method of determining the position information of each temperature sensor can further include:
[0109] Through information signal interaction between the temperature control device and the temperature sensor, the position of the corresponding temperature sensor relative to the temperature control device is determined based on the signal interaction process;
[0110] The height of each temperature sensor from the temperature control device and the distance of each temperature sensor from a certain vertical plane (which can be a certain vertical plane set by the temperature control device) are determined by the temperature control device based on the position of each temperature sensor relative to the temperature control device.
[0111] The above scheme has higher performance requirements for the temperature sensor, and therefore has higher cost, but it is more convenient, and different performance temperature sensors can be selected based on needs in actual application.
[0112] In actual application, after the blowing direction is adjusted to the middle point of the two temperature sensors by the above method, the indoor temperature is not necessarily balanced after a period of operation due to temperature change. Therefore, temperature detection can be continuously performed, and the blowing direction can be adjusted.
[0113] Based on this, in an embodiment, the comparison of the first temperature and the second temperature comprises:
[0114] obtaining a target temperature;
[0115] determining a first difference between the first temperature and the target temperature;
[0116] determining a second difference between the second temperature and the target temperature;
[0117] determining a larger value of the first difference and the second difference.
[0118] The adjustment of the air guide angle based on the comparison result to adjust the blowing direction to the target blowing point comprises:
[0119] adjusting the air guide angle to the temperature sensor corresponding to the larger value.
[0120] It should be noted that the above temperature comparison can be determined in combination with the operation mode to determine whether to cool or heat. The target temperature can be a temperature set by a user or a temperature after the air conditioner is operated stably.
[0121] For example, in the cooling mode, the first temperature is 26℃, the second temperature is 27℃, and the target temperature is 24℃. The air guide angle is adjusted to the temperature sensor corresponding to the larger value in the difference, i.e., the temperature sensor corresponding to the second temperature, i.e., the second temperature sensor. Specifically, the air guide angle can be offset to the second temperature sensor by a certain preset angle (such as 1°, 2°), i.e., the horizontal louver and / or the vertical air guide plate is adjusted to the second temperature sensor by a certain preset angle. After a period of time, the first temperature and the second temperature can be compared with the target temperature respectively to determine the larger value in the difference, and the air guide angle is offset to the temperature sensor corresponding to the larger value in the difference. In this way, the process is repeated, and details are not described herein.
[0122] In the heating mode, the first temperature is 26℃, the second temperature is 27℃, and the target temperature is 28℃, so the air guide angle is offset to the temperature sensor corresponding to the larger value in the difference, that is, the first temperature sensor, that is, to the first temperature sensor. Similar to the above-mentioned cooling mode, the air guide angle can be offset to the first temperature sensor according to a certain preset angle condition (such as 1°, 2°), that is, the horizontal louver and / or the vertical air guide plate is adjusted to the first temperature sensor by a certain preset angle; after a period of time, the first temperature and the second temperature can be compared with the target temperature respectively to determine the larger value in the difference, and the air guide angle is offset to the temperature sensor corresponding to the larger value in the difference; and so on, which will not be described here.
[0123] In this way, the air guide angle is fine-tuned, and the indoor temperature is further balanced.
[0124] In an embodiment, the first temperature and the second temperature are obtained by:
[0125] obtaining temperature values measured by at least two temperature sensors arranged according to a preset rule;
[0126] determining the first temperature and the second temperature from the temperature values measured by the at least two temperature sensors;
[0127] wherein the two temperature values with the largest difference in the temperature values measured by the at least two temperature sensors are taken as the first temperature and the second temperature;
[0128] that is, the maximum value in the temperature values measured by the at least two temperature sensors is taken as the first temperature, and the minimum value in the temperature values measured by the at least two temperature sensors is taken as the second temperature;
[0129] or, the minimum value in the temperature values measured by the at least two temperature sensors is taken as the first temperature, and the maximum value in the temperature values measured by the at least two temperature sensors is taken as the second temperature.
[0130] The preset rule includes one of the following:
[0131] The distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold;
[0132] The distance between the first temperature sensor and the temperature control device exceeds a second preset threshold, the distance between the second temperature sensor and the temperature control device exceeds the second preset threshold, and the distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold.
[0133] For example, the temperature control device is installed in a room, at least two temperature sensors are arranged in the room, and the distance between two adjacent temperature sensors is greater than a first preset threshold value, so as to avoid that the temperature difference is not obvious due to the too close distance between the two temperature sensors.
[0134] Further, in the room, two or more temperature sensors can be arranged at different positions where people often move, the temperature uniformity of the room is determined based on the temperature difference detected by the temperature sensors, the operation and air supply mode of the air conditioner are adjusted, the temperature difference in the room is reduced, and the purpose of temperature uniformity control is achieved.
[0135] In the case of arranging only two temperature sensors, the difference between the temperatures measured by the first temperature sensor and the second temperature sensor is directly determined.
[0136] In the case of arranging more than two temperature sensors, the temperature measured by each temperature sensor can be determined, and the temperature sensors corresponding to the two temperatures with the largest difference are determined as the first temperature sensor and the second temperature sensor. For example, the temperature sensor with the lowest measured temperature is the first temperature sensor, and the temperature sensor with the highest measured temperature is the second temperature sensor.
[0137] It is considered that if the temperature control device is adjusted immediately after being started, it has little practical significance. Therefore, the adjustment can be performed after the temperature control device is operated for a period of time and the temperature is relatively stable.
[0138] Based on this, in an embodiment, the temperature values measured by the at least two temperature sensors arranged according to the preset rule are obtained, including:
[0139] When it is determined that the temperature control device is operated for a duration longer than a preset duration threshold value according to the current operation mode, the temperature values measured by the at least two temperature sensors arranged according to the preset rule are obtained.
[0140] Here, the preset duration threshold value is set, for example, 10 minutes or 20 minutes.
[0141] Alternatively, it can be determined that the temperature detected by the temperature sensor does not change within a period of time, for example, within 2 minutes.
[0142] It should be noted that in the embodiments of the present application, each temperature sensor can be in communication with the temperature control device, so that the temperature sensor can send the measured temperature to the temperature control device; alternatively, each temperature sensor is connected to a terminal (which can be a mobile phone, a tablet computer, a personal computer, a notebook computer, etc.) held by a user in a distributed manner, and each temperature sensor can send the measured temperature to the terminal, and the terminal sends the temperature to the temperature control device; of course, other devices can also be used for communication or data transmission, which is not limited here.
[0143] The method provided by the embodiments of the present application aims at the problem that when the current air conditioner is in cooling and heating operation, in order to realize room temperature cooling or heating, the outlet air temperature is often low when cooling and high when heating, causing the room temperature to be cold in some places and hot in some places, and the temperature distribution is uneven. By arranging two or more temperature sensors in the user's frequent activity area, the temperature difference of different temperature sensors is compared, the operation and air supply mode of the air conditioner are adjusted, and uniform control of the room temperature is realized.
[0144] In addition, the method provided by the embodiments of the present application can set the temperature sensor at any position based on user demand, and when applied, the temperature control device determines to modify the model, automatically adjusts in multiple dimensions, determines the temperature difference of various air guide angles, determines the target air guide angle, is convenient and low in cost, and provides a more balanced and comfortable temperature environment for the user.
[0145] Fig. 2 is a schematic diagram of a temperature control device adjustment method according to an embodiment of the present application; as shown in Fig. 2, two temperature sensors are arranged in the room, which are temperature sensor A (a first temperature sensor) and temperature sensor B (a second temperature sensor); as shown in Fig. 2(a).
[0146] The adjustment needs to be based on the position information of the two temperature sensors; in order to determine the middle point of the two temperature sensors, based on the height of the two temperature sensors, a vertical middle line H is determined as shown in Fig. 2(b); and based on the distance between the two temperature sensors, a horizontal middle line U is determined as shown in Fig. 2(c).
[0147] The intersection of the vertical middle line and the horizontal middle line is taken as the middle point, and the air supply direction is adjusted to the intersection of the vertical middle line and the horizontal middle line, i.e. the middle point, by adjusting the air guide angle.
[0148] Figure 3 Fig. 3 is a flowchart of another temperature control device adjustment method according to an embodiment of the present application; as shown in Fig. 3, the method is applied to a temperature control device, such as an air conditioner; the following takes the application to the air conditioner for cooling as an example for description, and the method comprises the following steps. Figure 3
[0149] Step 301, determining the positions of the two temperature sensors;
[0150] Specifically, step 301 specifically includes:
[0151] Determining the distance of the temperature sensor from the vertical direction of the air conditioner; based on the distance of the temperature sensor from the vertical direction of the air conditioner, the temperature sensor close to the air conditioner can be defined as temperature sensor A, and the temperature sensor far away can be defined as temperature sensor B; as shown in FIG. 2(a)
[0152] And, determining the vertical position and horizontal position of temperature sensor A;
[0153] Determining the vertical position and horizontal position of temperature sensor B.
[0154] The determination of the horizontal position and vertical position has been specifically described in the method shown in Figure 1 , which will not be repeated here.
[0155] Step 302, obtaining the detection values of temperature sensor A and temperature sensor B, denoted as Ta and Tb respectively;
[0156] Step 303, judging whether |Ta-Tb|>Tx is satisfied; if not, maintaining the current running state; if yes, entering step 304;
[0157] Here, Tx is a certain temperature difference threshold value set in advance, which can be 1℃ for example, to judge whether the temperature difference is large, and to adjust the temperature control equipment in the case of being large.
[0158] Step 304, adjusting the air guiding direction to the middle point of temperature sensor A and temperature sensor B by adjusting the air guiding angle.
[0159] Step 304 specifically includes: adjusting the vertical air guiding plate to the middle point, adjusting the horizontal louver to the middle point.
[0160] Specifically, combined with FIG. 2(b), based on the vertical positions of temperature sensor A and temperature sensor B, the vertical air guiding plate, i.e. the up and down air guiding plate, is adjusted;
[0161] In the case of h A ≥h B , the up and down air guiding plate is adjusted upward to 1 / 2(h A -h B ) of the air guiding distance;
[0162] In the case of h A <h B , the up and down air guiding plate is adjusted downward to 1 / 2(h B -h A).
[0163] Specifically, referring to Figure 2(c), the horizontal louvers, i.e. the left and right louvers, are adjusted based on the horizontal positions of temperature sensor A and temperature sensor B.
[0164] in u A ≥u B In this case, adjust the left and right louvers to a distance of 1 / 2 (u) from the air guide distance. A -u B );
[0165] in u A <u B In this case, adjust the left and right louvers to a distance of 1 / 2 (u) from the air guide distance. B -u A ).
[0166] The method may further include:
[0167] Step 305: Compare Ta and Tb, and fine-tune the air guide angle based on the comparison results.
[0168] For example, in cooling mode, if Ta > Tb, determine h. A ≥h B Adjust the vertical air guide plate upwards at a certain angle; determine h. A <h B Adjust the vertical air guide plate downwards at a certain angle;
[0169] For the horizontal direction, adjust the left and right louvers towards the temperature sensor A at a certain angle. Specifically, adjust to the left or right depending on the position of the temperature sensor A. For example, in Figure 2(a), adjust to the left.
[0170] Regarding the heating mode, or the case where Ta is less than Tb, adjustments can be made, which will not be elaborated here.
[0171] Figure 4 This is a schematic diagram of a temperature control device adjustment apparatus provided in an embodiment of the present invention; the apparatus is applied to temperature control equipment, such as an air conditioner. Figure 4 As shown, the device includes:
[0172] An acquisition module is used to acquire a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor.
[0173] An adjustment module is used to compare the first temperature and the second temperature, and adjust the air guide angle based on the comparison result to direct the air supply direction toward the target air supply point; the target air supply point is related to the position of the first temperature sensor and the second temperature sensor.
[0174] In an embodiment, the adjusting module is configured to determine a difference between the first temperature and the second temperature.
[0175] When the difference exceeds a preset temperature threshold, the adjusting module is configured to adjust the air guide angle to direct the air supply direction to a target air supply point, the target air supply point being a middle point between the first temperature sensor and the second temperature sensor.
[0176] In an embodiment, the obtaining module is further configured to obtain a first vertical position of the first temperature sensor.
[0177] The obtaining module is further configured to obtain a second vertical position of the second temperature sensor.
[0178] The adjusting module is configured to adjust the air guide angle to direct the air supply direction to a middle point between the first vertical position and the second vertical position.
[0179] In an embodiment, the obtaining module is further configured to obtain a first horizontal position of the first temperature sensor.
[0180] The obtaining module is further configured to obtain a second horizontal position of the second temperature sensor.
[0181] The adjusting module is configured to adjust the air guide angle to direct the air supply direction to a middle point between the first horizontal position and the second horizontal position.
[0182] In an embodiment, the obtaining module is further configured to obtain a target temperature.
[0183] The adjusting module is configured to determine a first difference between the first temperature and the target temperature.
[0184] The adjusting module is configured to determine a second difference between the second temperature and the target temperature.
[0185] The adjusting module is configured to determine a larger value between the first difference and the second difference.
[0186] The adjusting module is configured to adjust the air guide angle to the temperature sensor corresponding to the larger value.
[0187] In an embodiment, the obtaining module is configured to obtain temperature values measured by at least two temperature sensors arranged according to a preset rule.
[0188] The adjusting module is configured to determine a first temperature and a second temperature from the temperature values measured by the at least two temperature sensors.
[0189] The first temperature and the second temperature are two temperature values with the largest difference in the temperature values measured by the at least two temperature sensors.
[0190] The preset rule includes one of the following:
[0191] The distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold.
[0192] The distance between the first temperature sensor and the temperature control device exceeds a second preset threshold, the distance between the second temperature sensor and the temperature control device exceeds a second preset threshold, and the distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold.
[0193] In one embodiment, the acquisition module is used to determine that when the temperature control device runs for a period of time exceeding a preset time threshold under the current operating mode, it acquires the temperature values measured by at least two temperature sensors set according to preset rules.
[0194] It should be noted that the temperature control device adjustment apparatus provided in the above embodiments is only illustrated by the division of the above-described program modules when implementing the corresponding temperature control device adjustment method. In practical applications, the above processing can be assigned to different program modules as needed, that is, the internal structure of the temperature control device can be divided into different program modules to complete all or part of the processing described above. In addition, the apparatus and the corresponding method embodiments provided in the above embodiments belong to the same concept, and their specific implementation process can be found in the method embodiments, which will not be repeated here.
[0195] Figure 5 This is a schematic diagram of another temperature control device adjustment apparatus provided in an embodiment of the present invention; as shown. Figure 5 As shown, the device 50 is applied to a temperature control equipment and includes: a processor 501 and a memory 502 for storing a computer program that can run on the processor; wherein, when the processor 501 runs the computer program, it performs the following: acquiring a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor; comparing the first temperature and the second temperature, and adjusting the air guide angle based on the comparison result to direct the airflow direction toward a target airflow point; the target airflow point is related to the positions of the first temperature sensor and the second temperature sensor.
[0196] In one embodiment, when the processor 501 is used to run the computer program, it also performs the following: determining the difference between a first temperature and a second temperature;
[0197] When the difference exceeds a preset temperature threshold, the air guide angle is adjusted to direct the airflow towards the target air delivery point; the target air delivery point is the midpoint between the first temperature sensor and the second temperature sensor.
[0198] In an embodiment, the processor 501, in operation of the computer program, further performs: obtaining a first vertical position of the first temperature sensor; obtaining a second vertical position of the second temperature sensor; and,
[0199] adjusting the air guiding angle to a middle point between the first vertical position and the second vertical position.
[0200] In an embodiment, the processor 501, in operation of the computer program, further performs: obtaining a first horizontal position of the first temperature sensor; obtaining a second horizontal position of the second temperature sensor; and,
[0201] adjusting the air guiding angle to a middle point between the first horizontal position and the second horizontal position.
[0202] In an embodiment, the processor 501, in operation of the computer program, further performs: obtaining a target temperature; determining a first difference between the first temperature and the target temperature; determining a second difference between the second temperature and the target temperature; determining a larger value between the first difference and the second difference; and,
[0203] adjusting the air guiding angle to the temperature sensor corresponding to the larger value.
[0204] In an embodiment, the processor 501, in operation of the computer program, further performs: obtaining temperature values measured by at least two temperature sensors arranged according to a preset rule;
[0205] determining a first temperature and a second temperature from the temperature values measured by the at least two temperature sensors;
[0206] wherein the two temperature values with the largest difference among the temperature values measured by the at least two temperature sensors are taken as the first temperature and the second temperature.
[0207] The preset rule comprises one of the following:
[0208] a distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold;
[0209] a distance between the first temperature sensor and the temperature control device exceeds a second preset threshold, a distance between the second temperature sensor and the temperature control device exceeds the second preset threshold, and a distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold.
[0210] In an embodiment, the processor 501, when used for running the computer program, further performs: determining that the temperature control device runs for a duration exceeding a preset duration threshold according to the current running mode, and obtaining temperature values measured by at least two temperature sensors set according to a preset rule.
[0211] It should be noted that the temperature control device adjustment apparatus and the temperature control device adjustment method provided by the above embodiments belong to the same concept, and the specific implementation process is detailed in the method embodiments, which will not be described here.
[0212] In actual application, the apparatus 50 can further include at least one network interface 503. The various components in the apparatus 50 are coupled together by a bus system 504. It can be understood that the bus system 504 is used to realize the connection and communication between the components. The bus system 504 includes not only a data bus, but also a power supply bus, a control bus and a status signal bus. However, for the purpose of clear illustration, all the buses are marked as the bus system 504 in the Figure 4 . The number of the processor 501 can be at least one. The network interface 503 is used for wired or wireless communication between the apparatus 50 and other devices.
[0213] The memory 502 in the embodiment of the present application is used to store various types of data to support the operation of the apparatus 50.
[0214] The method disclosed in the above embodiments of the present application can be applied to the processor 501 or implemented by the processor 501. The processor 501 can be an integrated circuit chip with a processing capability of signals. In the implementation process, each step of the above method can be completed by the integrated logic circuit of hardware in the processor 501 or the instruction in the form of software. The processor 501 mentioned above can be a general-purpose processor, a digital signal processor (DSP, DiGital Signal Processor), or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, etc. The processor 501 can realize or execute the disclosed methods, steps and logic block diagrams in the embodiments of the present application. The general-purpose processor can be a microprocessor or any conventional processor, etc. In combination with the steps of the method disclosed in the embodiments of the present application, the hardware decoding processor can be directly embodied to execute the above-mentioned method, or the hardware and software modules in the decoding processor can be combined to execute the above-mentioned method. The software module can be located in a storage medium, and the storage medium is located in the memory 502. The processor 501 reads the information in the memory 502 and combines the hardware to complete the steps of the above-mentioned method.
[0215] In exemplary embodiments, the apparatus 50 can be implemented by one or more Application Specific Integrated Circuits (ASICs), DSPs, Programmable Logic Devices (PLDs), Complex Programmable Logic Devices (CPLDs), Field-Programmable Gate Arrays (FPGAs), general-purpose processors, controllers, microcontrollers (MCUs), microprocessors (Microprocessors), or other electronic elements for executing the aforementioned methods.
[0216] The embodiment of the present application further provides a computer readable storage medium, which stores a computer program. When the computer program is run by a processor, the following operations are performed: obtaining a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor; comparing the first temperature and the second temperature, and adjusting a wind guide angle to direct an air supply direction to a target air supply point based on a comparison result; and the target air supply point is related to positions of the first temperature sensor and the second temperature sensor.
[0217] In an embodiment, when the computer program is run by the processor, the following operation is further performed: determining a difference between the first temperature and the second temperature.
[0218] When the difference exceeds a preset temperature threshold, the operation of adjusting the wind guide angle is performed to direct the air supply direction to the target air supply point; and the target air supply point is a middle point of the first temperature sensor and the second temperature sensor.
[0219] In an embodiment, when the computer program is run by the processor, the following operations are further performed: obtaining a first vertical position of the first temperature sensor; obtaining a second vertical position of the second temperature sensor; and
[0220] The air supply direction is adjusted to a middle point of the first vertical position and the second vertical position by adjusting the wind guide angle.
[0221] In an embodiment, when the computer program is run by the processor, the following operations are further performed: obtaining a first horizontal position of the first temperature sensor; obtaining a second horizontal position of the second temperature sensor; and
[0222] The air supply direction is adjusted to a middle point of the first horizontal position and the second horizontal position by adjusting the wind guide angle.
[0223] In an embodiment, the computer program, when executed by the processor, further performs: obtaining a target temperature; determining a first difference between the first temperature and the target temperature; determining a second difference between the second temperature and the target temperature; determining a larger value of the first difference and the second difference; and,
[0224] adjusting the air guide angle to the temperature sensor corresponding to the larger value.
[0225] In an embodiment, the computer program, when executed by the processor, further performs: obtaining temperature values measured by at least two temperature sensors arranged according to a preset rule;
[0226] determining a first temperature and a second temperature from the temperature values measured by the at least two temperature sensors;
[0227] wherein the two temperature values with the largest difference among the temperature values measured by the at least two temperature sensors are taken as the first temperature and the second temperature;
[0228] The preset rule includes one of the following:
[0229] The distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold;
[0230] The distance between the first temperature sensor and the temperature control device exceeds a second preset threshold, the distance between the second temperature sensor and the temperature control device exceeds the second preset threshold, and the distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold.
[0231] In an embodiment, the computer program, when executed by the processor, further performs: obtaining temperature values measured by at least two temperature sensors arranged according to a preset rule when the temperature control device is operated for a duration exceeding a preset duration threshold according to a current operation mode.
[0232] The computer program, when executed by the processor, performs the method provided by the above embodiments, which belongs to the same concept as the temperature control device adjustment method embodiments, and the specific implementation process is described in the method embodiments, which will not be repeated here.
[0233] In several embodiments provided in the present application, it should be understood that the disclosed apparatus and method can be implemented by other manners. The apparatus embodiments described above are merely illustrative, for example, the division of the units is merely a logical function division, and actual implementation can have another division manner, for example, a plurality of units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the displayed or discussed components can be indirect coupling or communication connection through some interfaces, devices or units, which can be electrical, mechanical or other forms.
[0234] The units described above as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, that is, they can be located in one place or distributed on a plurality of network units; part or all of the units can be selected according to actual needs to achieve the purpose of the embodiment.
[0235] In addition, each functional unit in each embodiment of the present application can be integrated into one processing unit, or each unit can be a separate unit, or two or more units can be integrated into one unit; the integrated unit can be realized in the form of hardware or hardware plus software functional unit.
[0236] Those skilled in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by program instruction related hardware, and the foregoing program can be stored in a computer readable storage medium, and the program executes the steps including the above-mentioned method embodiments when executed; and the foregoing storage medium includes mobile storage device, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disc or optical disc and various storage program codes.
[0237] Alternatively, the integrated unit of the present application, if implemented in the form of a software function module and sold or used as an independent product, can also be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the embodiments of the present application can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in the embodiments of the present application. The foregoing storage medium includes mobile storage device, ROM, RAM, magnetic disc or optical disc and various storage program codes.
[0238] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A temperature control device adjustment method characterized by, The method comprises: obtaining a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; the second temperature is detected by a second temperature sensor; comparing the first temperature and the second temperature, and adjusting the air guide angle to direct the air supply direction to a target air supply point based on the comparison result; the target air supply point is related to the positions of the first temperature sensor and the second temperature sensor; the obtaining of the first temperature and the second temperature comprises: obtaining temperature values measured by at least two temperature sensors arranged according to a preset rule; determining the first temperature and the second temperature from the temperature values measured by the at least two temperature sensors; wherein the two temperature values with the largest difference in the temperature values measured by the at least two temperature sensors are taken as the first temperature and the second temperature; the preset rule comprises one of the following: the distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold value; the distance between the first temperature sensor and the temperature control device exceeds a second preset threshold value, the distance between the second temperature sensor and the temperature control device exceeds the second preset threshold value, and the distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold value; the comparison of the first temperature and the second temperature comprises: determining the difference between the first temperature and the second temperature; when the difference exceeds a preset temperature threshold value, adjusting the air guide angle to direct the air supply direction to the target air supply point; the target air supply point is a middle point between the first temperature sensor and the second temperature sensor.
2. The method of claim 1, wherein, The method further comprises: obtaining a first vertical position of the first temperature sensor; obtaining a second vertical position of the second temperature sensor; the operation of adjusting the air guide angle to direct the air supply direction to the target air supply point comprises: adjusting the air guide angle to direct the air supply direction to a middle point between the first vertical position and the second vertical position.
3. The method of claim 1, wherein, The method further comprises: obtaining a first horizontal position of the first temperature sensor; obtaining a second horizontal position of the second temperature sensor; the operation of adjusting the air guide angle to direct the air supply direction to the target air supply point comprises: adjusting the air guide angle to direct the air supply direction to a middle point between the first horizontal position and the second horizontal position.
4. The method of claim 1, wherein, The comparison of the first temperature and the second temperature comprises: obtaining a target temperature; determining a first difference between the first temperature and the target temperature; determining a second difference between the second temperature and the target temperature; determining a larger value of the first difference and the second difference; the operation of adjusting the air guide angle to direct the air supply direction to the target air supply point based on the comparison result comprises: adjusting the air guide angle to the temperature sensor corresponding to the larger value.
5. The method of claim 1, wherein, The obtaining of the temperature values measured by the at least two temperature sensors arranged according to the preset rule comprises: when the temperature control device runs for a duration exceeding a preset duration threshold value in the current running mode, obtaining the temperature values measured by the at least two temperature sensors arranged according to the preset rule.
6. A temperature control device adjustment apparatus, characterized by, The device comprises: The acquisition module is configured to acquire a first temperature and a second temperature; the first temperature is detected by a first temperature sensor; and the second temperature is detected by a second temperature sensor. The adjustment module is configured to compare the first temperature and the second temperature, and adjust an air guide angle to direct an air supply direction to a target air supply point based on a comparison result; the target air supply point is related to positions of the first temperature sensor and the second temperature sensor. The acquisition module is configured to acquire temperature values measured by at least two temperature sensors arranged according to a preset rule. The first temperature and the second temperature are determined from the temperature values measured by the at least two temperature sensors. Among the temperature values measured by the at least two temperature sensors, two temperature values with the largest difference are taken as the first temperature and the second temperature. The preset rule includes one of the following: A distance between the first temperature sensor and the second temperature sensor exceeds a first preset threshold value. A distance between the first temperature sensor and the temperature control device exceeds a second preset threshold value, a distance between the second temperature sensor and the temperature control device exceeds the second preset threshold value, and a distance between the first temperature sensor and the second temperature sensor exceeds a third preset threshold value. The adjustment module is configured to determine a difference between the first temperature and the second temperature. When the difference exceeds a preset temperature threshold value, the adjustment module is configured to adjust the air guide angle to direct the air supply direction to the target air supply point; the target air supply point is a middle point of the first temperature sensor and the second temperature sensor.
7. A temperature control device adjustment apparatus, characterized by, The apparatus includes a processor and a memory for storing a computer program capable of running on the processor; wherein, The processor is configured to run the computer program to perform the steps of the method of any one of claims 1 to 5.
8. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the method of any one of claims 1 to 5.
Citation Information
Patent Citations
Air conditioner control system and method for electrical facility room
CN105066355A
Wall-mounted type air conditioner indoor unit and control method thereof
CN107514685A
Air supply method and control device for inter-column air conditioning system
CN107690263A