Temperature control method and system for beauty massager
By real-time temperature collection and calculation of the temperature control adjustment coefficient, the massager can determine whether to move based on the temperature change difference and select an adaptive temperature control mode, solving the temperature control problem of beauty massagers in different positions and skin conditions, and achieving precise temperature management and user safety.
Patent Information
- Application Number
- CN202410889524.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2044-07-04
AI Technical Summary
During use, the beauty massager cannot respond to changes in the user's skin temperature in real time due to the fixed temperature control mode, resulting in skin overheating or discomfort.
By collecting temperature in real time and calculating the temperature control adjustment coefficient, the massager can determine whether to move based on the temperature change difference, and select the adaptive temperature control mode for targeted temperature adjustment.
This enables precise temperature control of the massager in different positions and skin conditions, avoiding skin overheating or discomfort and improving user experience and safety.
Smart Images

Figure CN118860016B_ABST
Abstract
Description
Technical Field
[0001] The invention provides a temperature control method and system for a beauty massager, and relates to the technical field of temperature control. Background Art
[0002] With the advancement of science and technology and the improvement of people's living standards, beauty massagers, as a household electronic product that can help people beautify themselves and promote blood circulation, have been favored by consumers. However, during the use of beauty massagers, since the contact temperature between the beauty massager and the massaged surface (such as human skin) is difficult to accurately control, it may cause skin overheating or discomfort, thereby affecting the user experience and massage effect. Most massagers currently available on the market use a fixed temperature control mode and cannot be dynamically adjusted according to the real-time temperature changes of the massaged surface. Since the skin temperature of different users or the same user in different parts of the body varies, the fixed temperature control mode is difficult to meet the needs of all users. After the beauty massager is moved, it is difficult to respond to the new position and adjust the temperature control mode in real time. Since the massager may move relative to the massaged surface during use, resulting in changes in contact temperature, the fixed temperature control mode cannot respond to such changes in time, which may cause skin overheating or discomfort. Summary of the Invention
[0003] The present invention provides a temperature control method and system for a beauty massager, which aims to solve the problem that a fixed temperature control mode cannot meet the needs of all users due to the fact that skin temperatures vary between different users or different parts of the same user. Furthermore, when the beauty massager is moved, it is difficult to adjust the temperature control mode in real time to the new position. Furthermore, since the massager may move relative to the massaged surface during use, causing changes in contact temperature, the fixed temperature control mode cannot respond to such changes in a timely manner, which may lead to skin overheating or discomfort.
[0004] The present invention provides a temperature control method and system for a beauty massager, the method comprising:
[0005] S1. Using a massager to collect the temperature of a measured surface, performing temperature range judgment on the collected real-time temperature data, obtaining a risk judgment result, and obtaining an adjustment judgment result based on the risk judgment result;
[0006] S2. Calculating a temperature control adjustment coefficient based on the adjustment judgment result, adjusting the temperature of the massager based on the temperature control adjustment coefficient, calculating a temperature change difference after adjustment, comparing the temperature change difference with a preset change difference threshold, and then determining whether the massager should be moved, obtaining a movement judgment result, and selecting a temperature control mode type based on the movement judgment result;
[0007] S3. Perform targeted temperature control adjustments at the new position and the original position according to the temperature control mode type.
[0008] Furthermore, the S1 includes:
[0009] The massager is used to collect the real-time temperature of the measured surface and obtain real-time temperature data;
[0010] Acquire a preset temperature range, wherein the preset temperature range includes a temperature danger range and a temperature buffer range;
[0011] Determine whether the real-time temperature data is within the temperature danger range or the temperature buffer range to obtain risk judgment results;
[0012] A judgment is made on whether the temperature should be adjusted based on the risk judgment result to obtain an adjustment judgment result.
[0013] Furthermore, the S2 includes:
[0014] Calculating a temperature control adjustment coefficient according to the adjustment judgment result, and adjusting the temperature of the massager by the temperature control adjustment coefficient to obtain adjustment data;
[0015] After adjusting the temperature of the massager, real-time temperature data of the surface of the measured object is obtained again;
[0016] Calculating the difference between the adjustment data and the real-time temperature data to obtain a temperature change difference;
[0017] Comparing the temperature change difference with a preset change difference threshold to obtain a comparison result;
[0018] A judgment is made as to whether the massager is moving based on the comparison result to obtain a movement judgment result, and a temperature control mode type is selected based on the movement judgment result.
[0019] Furthermore, determining whether the massager is moving based on the comparison result to obtain a movement determination result, and selecting a temperature control mode type based on the movement determination result, includes:
[0020] When the temperature change difference is greater than the preset change difference threshold, determining that the massager is moving;
[0021] When the temperature change difference is less than or equal to the preset change difference threshold, determining that the massager is not moving;
[0022] When the massager moves, it enters the new position temperature control mode;
[0023] When the massager is not moved, the massager operates in the original position temperature control mode;
[0024] The new position temperature control mode and the original position temperature control mode are types of temperature control modes.
[0025] Furthermore, the S4 includes:
[0026] When the massager is in the new position temperature control mode, real-time temperature collection is performed on the new position to obtain the temperature data of the new position;
[0027] Calculating a temperature control coefficient for the new position based on the temperature data of the new position, and performing temperature control adjustment on the new position based on the temperature control coefficient for the new position;
[0028] When the massager is in the original position temperature control mode, the real-time temperature of the original position is collected to obtain the original position temperature data;
[0029] A risk judgment result of the original position temperature data is obtained, and a judgment is made on whether the temperature should be adjusted according to the risk judgment result to obtain an adjustment judgment result.
[0030] Furthermore, the system includes:
[0031] A range adjustment judgment module is used to collect the temperature of the measured surface through the massager, perform temperature range judgment on the collected real-time temperature data, obtain a risk judgment result, and obtain an adjustment judgment result based on the risk judgment result;
[0032] a coefficient movement determination module, configured to calculate a temperature control adjustment coefficient based on the adjustment determination result, adjust the temperature of the massager based on the temperature control adjustment coefficient, calculate a temperature change difference after adjustment, compare the temperature change difference with a preset change difference threshold, and then determine whether the massager should be moved, obtain a movement determination result, and select a temperature control mode type based on the movement determination result;
[0033] The mode-specific adjustment module is used to perform targeted temperature control adjustment at the new position and the original position according to the type of the temperature control mode.
[0034] Furthermore, the range adjustment judgment module includes:
[0035] The data acquisition module is used to collect the real-time temperature of the measured surface through the massager to obtain real-time temperature data;
[0036] Acquire a preset temperature range, wherein the preset temperature range includes a temperature danger range and a temperature buffer range;
[0037] The range judgment module is used to judge whether the real-time temperature data is within the temperature danger range or the temperature buffer range, and obtain the risk judgment result;
[0038] The adjustment judgment module is used to judge whether the temperature should be adjusted according to the risk judgment result, and obtain an adjustment judgment result.
[0039] Furthermore, the coefficient movement judgment module includes:
[0040] a calculation and adjustment module, configured to calculate a temperature control adjustment coefficient according to the adjustment judgment result, and adjust the temperature of the massager by the temperature control adjustment coefficient to obtain adjustment data;
[0041] The change calculation module is used to obtain the real-time temperature data of the surface of the measured object again after the massager temperature is adjusted;
[0042] Calculating the difference between the adjustment data and the real-time temperature data to obtain a temperature change difference;
[0043] A comparison module, configured to compare the temperature change difference with a preset change difference threshold to obtain a comparison result;
[0044] The movement mode judgment module is used to judge whether the massager is moving according to the comparison result, obtain a movement judgment result, and select a temperature control mode type according to the movement judgment result.
[0045] Furthermore, the movement mode determination module includes:
[0046] a movement determination module, configured to determine that the massager is moving when the temperature change difference is greater than the preset change difference threshold;
[0047] When the temperature change difference is less than or equal to the preset change difference threshold, determining that the massager is not moving;
[0048] A mode determination module is used to determine whether the massager enters a new position temperature control mode when the massager moves;
[0049] When the massager is not moved, the massager operates in the original position temperature control mode;
[0050] The new position temperature control mode and the original position temperature control mode are types of temperature control modes.
[0051] Furthermore, the mode includes, for the adjustment module:
[0052] A new position adjustment module is used to collect real-time temperature data of the new position when the massager is in the new position temperature control mode;
[0053] Calculating a temperature control coefficient for the new position based on the temperature data of the new position, and performing temperature control adjustment on the new position based on the temperature control coefficient for the new position;
[0054] The original position adjustment module is used to collect the real-time temperature of the original position and obtain the original position temperature data when the massager is in the original position temperature control mode;
[0055] A risk judgment result of the original position temperature data is obtained, and a judgment is made on whether the temperature should be adjusted according to the risk judgment result to obtain an adjustment judgment result.
[0056] Beneficial effects of the present invention: The massager can make intelligent judgments based on real-time temperature data and a preset temperature range, automatically adjust the temperature, and ensure the safety and comfort of user use. By calculating the temperature control adjustment coefficient and performing targeted temperature adjustment, the massager can achieve more precise temperature control and improve the massage effect. The massager can judge whether to move based on the temperature change difference and automatically select the corresponding temperature control mode to meet the needs of different positions and skin conditions. It can indirectly judge whether the massager has moved based on the temperature change. Through intelligent temperature management and dynamic adaptability, the massager can provide a better massage experience, avoid overheating or discomfort of the skin, and increase user satisfaction. Through the preset temperature range and temperature adjustment mechanism, the massager can reduce the risk of skin burns and ensure the safety of user use. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] Figure 1 The figure is a schematic diagram of a temperature control method for a beauty massager. DETAILED DESCRIPTION
[0058] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0059] In one embodiment of the present invention, a temperature control method and system for a beauty massager are provided, the method comprising:
[0060] S1. Using a massager to collect the temperature of a measured surface, performing temperature range judgment on the collected real-time temperature data, obtaining a risk judgment result, and obtaining an adjustment judgment result based on the risk judgment result;
[0061] S2. Calculating a temperature control adjustment coefficient based on the adjustment judgment result, adjusting the temperature of the massager based on the temperature control adjustment coefficient, calculating a temperature change difference after adjustment, comparing the temperature change difference with a preset change difference threshold, and then determining whether the massager should be moved, obtaining a movement judgment result, and selecting a temperature control mode type based on the movement judgment result;
[0062] S3. Perform targeted temperature control adjustments at the new position and the original position according to the temperature control mode type.
[0063] The working principle of the above technical solution is as follows: The massager uses a built-in temperature sensor to collect real-time temperature data from the measured surface. The collected real-time temperature data is compared with a preset temperature range (including a temperature danger range and a temperature buffer range) to generate a risk assessment result. Based on the risk assessment result, the massager determines whether temperature adjustment is necessary and calculates a temperature adjustment coefficient accordingly. The temperature adjustment coefficient is applied to the massager temperature and the adjusted temperature data is recorded. The difference between the adjusted temperature data and the real-time temperature data collected again is calculated, i.e., the temperature change difference. The calculated temperature change difference is compared with a preset temperature change difference threshold. If the temperature change difference exceeds the threshold, the massager is determined to have moved and the new position temperature control mode is selected. If the temperature change difference does not exceed the threshold, the massager is determined to have not moved and the original position temperature control mode is selected. Based on the selected temperature control mode (new position or original position), the massager performs targeted temperature control adjustments. For the new position temperature control mode, the massager re-collects temperature data from the new position, calculates a new temperature control adjustment coefficient, and performs the corresponding temperature adjustment. For the original position temperature control mode, the massager will continue to monitor the temperature data of the original position and adjust the temperature as needed.
[0064] The technical effect of the above technical solution is that the massager can make intelligent judgments based on real-time temperature data and a preset temperature range, automatically adjust the temperature, and ensure the safety and comfort of user use. By calculating the temperature control adjustment coefficient and performing targeted temperature adjustment, the massager can achieve more precise temperature control and improve the massage effect. The massager can determine whether to move based on the temperature change difference and automatically select the corresponding temperature control mode to adapt to the needs of different positions and skin conditions. It can indirectly determine whether the massager has moved based on the temperature change. Through intelligent temperature management and dynamic adaptability, the massager can provide a better massage experience, avoid overheating or discomfort of the skin, and increase user satisfaction. Through the preset temperature range and temperature adjustment mechanism, the massager can reduce the risk of skin burns and ensure the safety of user use.
[0065] In one embodiment of the present invention, the S1 includes:
[0066] The massager is used to collect the real-time temperature of the measured surface and obtain real-time temperature data;
[0067] Acquire a preset temperature range, wherein the preset temperature range includes a temperature danger range and a temperature buffer range;
[0068] Determine whether the real-time temperature data is within the temperature danger range or the temperature buffer range to obtain risk judgment results;
[0069] A judgment is made on whether the temperature should be adjusted based on the risk judgment result to obtain an adjustment judgment result.
[0070] The working principle of the above technical solution is as follows: the massager collects the real-time temperature of the measured surface to obtain real-time temperature data;
[0071] Get a preset temperature range, which includes a temperature danger range and a temperature buffer range; the temperature danger range is a range that may cause burns to the skin, and the temperature danger range is larger than the temperature buffer range. For example, if the temperature danger range is 43.5 degrees to 45 degrees, the temperature buffer range may be 42 degrees to 43.5 degrees.
[0072] Determine whether the real-time temperature data is within the temperature danger range or the temperature buffer range to obtain risk judgment results;
[0073] A judgment is made on whether the temperature should be adjusted based on the risk judgment result to obtain an adjustment judgment result.
[0074] When the real-time temperature data is within the temperature danger range or the temperature buffer range, the temperature is adjusted;
[0075] When the real-time temperature data is not within the temperature danger range or the temperature buffer range, no adjustment is performed.
[0076] The technical effect of the above technical solution is: through real-time monitoring and timely adjustment of skin temperature, it is ensured that the massager will not cause skin burns during use, greatly improving the safety of the user. By maintaining the skin within a comfortable temperature range, the user can have a more pleasant and comfortable experience when using the massager. The massager can automatically judge and adjust the temperature without manual intervention by the user, improving the convenience and intelligence of use. The setting of the temperature buffer range enables the massager to perform preventive temperature adjustments before the temperature approaches the dangerous range, avoiding possible safety hazards. The temperature-controlled beauty massager reflects comprehensive consideration of user safety and comfort, providing users with a safer, more comfortable and intelligent massage experience.
[0077] In one embodiment of the present invention, the S2 includes:
[0078] The temperature control adjustment coefficient is calculated according to the adjustment judgment result, and the temperature of the massager is adjusted by the temperature control adjustment coefficient to obtain adjustment data; when the real-time temperature data is within the temperature danger range or the temperature buffer range, the temperature control adjustment coefficient is calculated.
[0079] The calculation formula of the temperature control adjustment coefficient is:
[0080]
[0081] Where WT is the temperature control adjustment coefficient, SW is the real-time temperature data, EMAX is the maximum value of the temperature danger range, HMAX is the maximum value of the temperature buffer range, and HMIN is the minimum value of the temperature buffer range. When (SW - EMAX) or (SW - HMAX) in the formula is a negative number, set the result to zero.
[0082] After adjusting the temperature of the massager, real-time temperature data of the surface of the measured object is obtained again;
[0083] Calculating the difference between the adjustment data and the real-time temperature data to obtain a temperature change difference;
[0084] Comparing the temperature change difference with a preset change difference threshold to obtain a comparison result;
[0085] A judgment is made as to whether the massager is moving based on the comparison result to obtain a movement judgment result, and a temperature control mode type is selected based on the movement judgment result.
[0086] The working principle of the above technical solution is as follows: the massager continuously collects real-time temperature data from the measured surface. The massager determines whether the real-time temperature data is within a preset temperature danger range or temperature buffer range. If the real-time temperature data is within the temperature danger range or temperature buffer range, the massager calculates a temperature control adjustment coefficient. The massager's temperature is adjusted using the calculated temperature control adjustment coefficient. The adjustment process can be to gradually lower the temperature or to gradually increase or decrease the intensity of other temperature control elements (such as wind speed, heat output, etc.). After the temperature is adjusted, the massager collects real-time temperature data from the measured surface again. The difference between the adjusted temperature and the real-time temperature data collected again is calculated to obtain a temperature change difference. The calculated temperature change difference is compared with a preset change difference threshold. If the temperature change difference exceeds the preset threshold, the massager may be in a moving state. Based on the movement determination result, the massager can select different temperature control modes to adapt to the temperature control method of the massager whether it is moving or not.
[0087] The technical effects of the above technical solution are as follows: through the collection of real-time temperature data and the calculation of the temperature control adjustment coefficient, the massager can achieve more precise temperature control to ensure that the skin is within a safe and comfortable temperature range. The massager can dynamically adjust the temperature control strategy according to the changes in real-time temperature data, thereby maintaining the best massage effect in different skin areas or ambient temperatures. Through timely temperature adjustment and position movement judgment, the massager can avoid being unable to adapt to temperature control changes in new areas and new positions during movement. The massager can automatically select the type of temperature control mode based on the temperature change difference, realize intelligent temperature management, and reduce the user's manual intervention and operation complexity. Through the preset temperature danger range and temperature buffer range, as well as timely temperature adjustment and position movement judgment, the massager can significantly reduce the risk of skin burns and enhance user safety.
[0088] In one embodiment of the present invention, determining whether the massager is moving based on the comparison result, obtaining a movement determination result, and selecting a temperature control mode type based on the movement determination result include:
[0089] When the temperature change difference is greater than the preset change difference threshold, determining that the massager is moving;
[0090] When the temperature change difference is less than or equal to the preset change difference threshold, determining that the massager is not moving;
[0091] When the massager moves, it enters the new position temperature control mode;
[0092] When the massager is not moved, the massager operates in the original position temperature control mode;
[0093] The new position temperature control mode and the original position temperature control mode are types of temperature control modes.
[0094] The working principle of the above technical solution is as follows: the massager continuously monitors the real-time temperature data of the measured surface and reacquires the real-time temperature data after making temperature adjustments. The difference between the adjusted data and the reacquired real-time temperature data is calculated, namely the temperature change difference. The calculated temperature change difference is compared with a preset change difference threshold. If the temperature change difference is greater than the preset change difference threshold, the massager is determined to need to be moved. If the temperature change difference is less than or equal to the preset change difference threshold, the massager is determined to not need to be moved. When the massager needs to be moved, it enters a new position temperature control mode. This may involve adjusting the temperature control strategy, resetting the temperature target value, or changing other temperature control-related parameters to adapt to the skin conditions or environment at the new location. When the massager does not need to be moved, it continues to control the temperature at the original location, namely, using the original position temperature control mode. This mode may involve maintaining the current temperature control strategy and target value to ensure that the skin remains within the ideal temperature range.
[0095] The technical effect of the above technical solution is as follows: by making movement judgments based on the temperature change difference, the massager can control the temperature more accurately to ensure that the ideal massage effect can be achieved in different positions. The massager can automatically adjust the temperature control strategy according to the changes in the position of the skin, avoiding the inability to adapt to the skin temperature of the new area during movement. The massager can automatically determine whether it needs to be moved and automatically switch the temperature control mode according to the judgment result, realizing intelligent management and reducing the user's manual operation. Through timely movement judgment and temperature control mode adjustment, the massager can avoid the risk of overheating or burns of the skin and enhance the safety of user use. The massager can automatically adjust the temperature control strategy according to the skin conditions or environmental changes in different positions. It has strong adaptability and flexibility and can meet the needs of different users.
[0096] In one embodiment of the present invention, the S4 includes:
[0097] When the massager is in the new position temperature control mode, real-time temperature collection is performed on the new position to obtain the temperature data of the new position;
[0098] Calculating a temperature control coefficient for the new position based on the temperature data of the new position, and performing temperature control adjustment on the new position based on the temperature control coefficient for the new position;
[0099] The calculation formula of the temperature control coefficient of the new position is:
[0100]
[0101] Where XT is the temperature control coefficient at the new position, XW is the temperature data at the new position, EMAX is the maximum value of the temperature danger range, HMAX is the maximum value of the temperature buffer range, and HMIN is the minimum value of the temperature buffer range. When (XW - EMAX) or (XW - HMAX) in the formula is a negative number, set the result to zero.
[0102] Compare the temperature control coefficient of the new position with the preset new position threshold. When the temperature control coefficient of the new position is greater than the preset new position threshold, perform temperature control adjustment on the new position according to the temperature control coefficient of the new position. When the temperature control coefficient of the new position is less than or equal to the preset new position threshold, do not perform temperature control adjustment on the new position.
[0103] When the massager is in the original position temperature control mode, the real-time temperature of the original position is collected to obtain the original position temperature data;
[0104] A risk judgment result of the original position temperature data is obtained, and a judgment is made on whether the temperature should be adjusted according to the risk judgment result to obtain an adjustment judgment result.
[0105] The working principle of the above technical solution is as follows: when the massager determines that it has moved to a new location, it immediately collects real-time temperature data at the new location. Based on the temperature data at the new location, the massager calculates a new temperature control coefficient. This coefficient ensures that the massager provides a more appropriate temperature at the new location. Using the new temperature control coefficient, the massager adjusts the temperature at the new location to achieve the desired temperature effect. If the massager determines that it has not moved, it continues to collect real-time temperature data at the original location to obtain the latest original location temperature data. Based on the original location temperature data, the massager performs another risk assessment to determine whether the current temperature is within the preset temperature danger range or temperature buffer range. Based on the risk assessment result, the massager determines whether to adjust the temperature. If the current temperature is within the danger range or buffer range, the massager adjusts the temperature; otherwise, the current temperature remains unchanged.
[0106] The technical effect of the above technical solution is that the massager can automatically adjust the temperature control coefficient and temperature control strategy according to the real-time temperature data of different positions, realize intelligent temperature management, and ensure that users can get the best massage experience in different positions. Through real-time temperature collection and risk judgment, the massager can promptly detect and avoid the risk of overheating or scalding of the skin, greatly improving the safety of user use. The massager can automatically adjust the temperature and massage strategy according to the changes in the user's skin temperature and position, ensuring that users can get a comfortable and safe massage experience in different positions. Whether it is a new position or the original position, the massager can quickly adapt to the current environment and user needs through real-time temperature collection and temperature control adjustment, reflecting strong flexibility and adaptability. The user does not need to manually adjust the temperature and position of the massager. The massager can complete these operations automatically, which greatly reduces the complexity of the user's operation and improves the convenience of use.
[0107] In one embodiment of the present invention, the system includes:
[0108] A range adjustment judgment module is used to collect the temperature of the measured surface through the massager, perform temperature range judgment on the collected real-time temperature data, obtain a risk judgment result, and obtain an adjustment judgment result based on the risk judgment result;
[0109] a coefficient movement determination module, configured to calculate a temperature control adjustment coefficient based on the adjustment determination result, adjust the temperature of the massager based on the temperature control adjustment coefficient, calculate a temperature change difference after adjustment, compare the temperature change difference with a preset change difference threshold, and then determine whether the massager should be moved, obtain a movement determination result, and select a temperature control mode type based on the movement determination result;
[0110] The mode-specific adjustment module is used to perform targeted temperature control adjustment at the new position and the original position according to the type of the temperature control mode.
[0111] The working principle of the above technical solution is as follows: The massager uses a built-in temperature sensor to collect real-time temperature data from the measured surface. The collected real-time temperature data is compared with a preset temperature range (including a temperature danger range and a temperature buffer range) to generate a risk assessment result. Based on the risk assessment result, the massager determines whether temperature adjustment is necessary and calculates a temperature adjustment coefficient accordingly. The temperature adjustment coefficient is applied to the massager temperature and the adjusted temperature data is recorded. The difference between the adjusted temperature data and the real-time temperature data collected again is calculated, i.e., the temperature change difference. The calculated temperature change difference is compared with a preset temperature change difference threshold. If the temperature change difference exceeds the threshold, the massager is determined to have moved and the new position temperature control mode is selected. If the temperature change difference does not exceed the threshold, the massager is determined to have not moved and the original position temperature control mode is selected. Based on the selected temperature control mode (new position or original position), the massager performs targeted temperature control adjustments. For the new position temperature control mode, the massager re-collects temperature data from the new position, calculates a new temperature adjustment coefficient, and performs the corresponding temperature adjustment. For the original position temperature control mode, the massager will continue to monitor the temperature data of the original position and adjust the temperature as needed.
[0112] The technical effect of the above technical solution is that the massager can make intelligent judgments based on real-time temperature data and a preset temperature range, automatically adjust the temperature, and ensure the safety and comfort of user use. By calculating the temperature control adjustment coefficient and performing targeted temperature adjustment, the massager can achieve more precise temperature control and improve the massage effect. The massager can determine whether to move based on the temperature change difference and automatically select the corresponding temperature control mode to adapt to the needs of different positions and skin conditions. It can indirectly determine whether the massager has moved based on the temperature change. Through intelligent temperature management and dynamic adaptability, the massager can provide a better massage experience, avoid overheating or discomfort of the skin, and increase user satisfaction. Through the preset temperature range and temperature adjustment mechanism, the massager can reduce the risk of skin burns and ensure the safety of user use.
[0113] In one embodiment of the present invention, the range adjustment determination module includes:
[0114] The data acquisition module is used to collect the real-time temperature of the measured surface through the massager to obtain real-time temperature data;
[0115] Get a preset temperature range, which includes a temperature danger range and a temperature buffer range; the temperature danger range is a range that may cause burns to the skin, and the temperature danger range is larger than the temperature buffer range. For example, if the temperature danger range is 43.5 degrees to 45 degrees, the temperature buffer range may be 42 degrees to 43.5 degrees.
[0116] The range judgment module is used to judge whether the real-time temperature data is within the temperature danger range or the temperature buffer range, and obtain the risk judgment result;
[0117] The adjustment judgment module is used to judge whether the temperature should be adjusted according to the risk judgment result, and obtain an adjustment judgment result.
[0118] When the real-time temperature data is within the temperature danger range or the temperature buffer range, the temperature is adjusted;
[0119] When the real-time temperature data is not within the temperature danger range or the temperature buffer range, no adjustment is performed.
[0120] The working principle of the above technical solution is as follows: The massager's built-in temperature sensor continuously collects real-time temperature data from the measured surface (such as skin). The massager has preset temperature ranges, including a danger zone and a buffer zone. These ranges are based on skin safety research and ensure that the skin is not harmed during the massage. This range defines the temperature range within which skin may be burned. For example, a range of 43.5-45°C means that when the massager's temperature reaches or exceeds this range, there is a risk of burns. This range is set below the danger zone, but still close to the danger zone. For example, a range of 42-43.5°C. When the massager's temperature enters this range, while not immediately posing a burn risk, temperature adjustment is required to prevent further approaching the danger zone. The massager compares the real-time collected temperature data with the preset temperature ranges to determine whether the current temperature is within the danger zone or the buffer zone, thereby determining a risk assessment result. If the real-time temperature data is within the danger zone or the buffer zone, the massager adjusts the temperature to lower it to prevent skin damage. If the real-time temperature data is not within these two ranges, the massager will not adjust the temperature and will continue to work in the current state.
[0121] The technical effect of the above technical solution is: through real-time monitoring and timely adjustment of skin temperature, it is ensured that the massager will not cause skin burns during use, greatly improving the safety of the user. By maintaining the skin within a comfortable temperature range, the user can have a more pleasant and comfortable experience when using the massager. The massager can automatically judge and adjust the temperature without manual intervention by the user, improving the convenience and intelligence of use. The setting of the temperature buffer range enables the massager to perform preventive temperature adjustments before the temperature approaches the dangerous range, avoiding possible safety hazards. The temperature-controlled beauty massager reflects comprehensive consideration of user safety and comfort, providing users with a safer, more comfortable and intelligent massage experience.
[0122] In one embodiment of the present invention, the coefficient movement determination module includes:
[0123] The calculation and adjustment module is used to calculate the temperature control adjustment coefficient according to the adjustment judgment result, adjust the temperature of the massager by the temperature control adjustment coefficient, and obtain adjustment data; when the real-time temperature data is within the temperature danger range or the temperature buffer range, the temperature control adjustment coefficient is calculated.
[0124] The calculation formula of the temperature control adjustment coefficient is:
[0125]
[0126] Where WT is the temperature control adjustment coefficient, SW is the real-time temperature data, EMAX is the maximum value of the temperature danger range, HMAX is the maximum value of the temperature buffer range, and HMIN is the minimum value of the temperature buffer range. When (SW - EMAX) or (SW - HMAX) in the formula is a negative number, set the result to zero.
[0127] The change calculation module is used to obtain the real-time temperature data of the surface of the measured object again after the massager temperature is adjusted;
[0128] Calculating the difference between the adjustment data and the real-time temperature data to obtain a temperature change difference;
[0129] A comparison module, configured to compare the temperature change difference with a preset change difference threshold to obtain a comparison result;
[0130] The movement mode judgment module is used to judge whether the massager is moving according to the comparison result, obtain a movement judgment result, and select a temperature control mode type according to the movement judgment result.
[0131] The working principle of the above technical solution is as follows: the massager continuously collects real-time temperature data from the measured surface. The massager determines whether the real-time temperature data is within a preset temperature danger range or temperature buffer range. If the real-time temperature data is within the temperature danger range or temperature buffer range, the massager calculates a temperature control adjustment coefficient. The massager's temperature is adjusted using the calculated temperature control adjustment coefficient. The adjustment process can be to gradually lower the temperature or to gradually increase or decrease the intensity of other temperature control elements (such as wind speed, heat output, etc.). After the temperature is adjusted, the massager collects real-time temperature data from the measured surface again. The difference between the adjusted temperature and the real-time temperature data collected again is calculated to obtain a temperature change difference. The calculated temperature change difference is compared with a preset change difference threshold. If the temperature change difference exceeds the preset threshold, the massager may be in a moving state. Based on the movement determination result, the massager can select different temperature control modes to adapt to the temperature control method of the massager whether it is moving or not.
[0132] The technical effects of the above technical solution are as follows: through the collection of real-time temperature data and the calculation of the temperature control adjustment coefficient, the massager can achieve more precise temperature control to ensure that the skin is within a safe and comfortable temperature range. The massager can dynamically adjust the temperature control strategy according to the changes in real-time temperature data, thereby maintaining the best massage effect in different skin areas or ambient temperatures. Through timely temperature adjustment and position movement judgment, the massager can avoid being unable to adapt to temperature control changes in new areas and new positions during movement. The massager can automatically select the type of temperature control mode based on the temperature change difference, realize intelligent temperature management, and reduce the user's manual intervention and operation complexity. Through the preset temperature danger range and temperature buffer range, as well as timely temperature adjustment and position movement judgment, the massager can significantly reduce the risk of skin burns and enhance user safety.
[0133] In one embodiment of the present invention, the movement mode determination module includes:
[0134] a movement determination module, configured to determine that the massager is moving when the temperature change difference is greater than the preset change difference threshold;
[0135] When the temperature change difference is less than or equal to the preset change difference threshold, determining that the massager is not moving;
[0136] A mode determination module is used to determine whether the massager enters a new position temperature control mode when the massager moves;
[0137] When the massager is not moved, the massager operates in the original position temperature control mode;
[0138] The new position temperature control mode and the original position temperature control mode are types of temperature control modes.
[0139] The working principle of the above technical solution is as follows: the massager continuously monitors the real-time temperature data of the measured surface and reacquires the real-time temperature data after making temperature adjustments. The difference between the adjusted data and the reacquired real-time temperature data is calculated, namely the temperature change difference. The calculated temperature change difference is compared with a preset change difference threshold. If the temperature change difference is greater than the preset change difference threshold, the massager is determined to need to be moved. If the temperature change difference is less than or equal to the preset change difference threshold, the massager is determined to not need to be moved. When the massager needs to be moved, it enters a new position temperature control mode. This may involve adjusting the temperature control strategy, resetting the temperature target value, or changing other temperature control-related parameters to adapt to the skin conditions or environment at the new location. When the massager does not need to be moved, it continues to control the temperature at the original location, namely, using the original position temperature control mode. This mode may involve maintaining the current temperature control strategy and target value to ensure that the skin remains within the ideal temperature range.
[0140] The technical effect of the above technical solution is as follows: by making movement judgments based on the temperature change difference, the massager can control the temperature more accurately to ensure that the ideal massage effect can be achieved in different positions. The massager can automatically adjust the temperature control strategy according to the changes in the position of the skin, avoiding the inability to adapt to the skin temperature of the new area during movement. The massager can automatically determine whether it needs to be moved and automatically switch the temperature control mode according to the judgment result, realizing intelligent management and reducing the user's manual operation. Through timely movement judgment and temperature control mode adjustment, the massager can avoid the risk of overheating or burns of the skin and enhance the safety of user use. The massager can automatically adjust the temperature control strategy according to the skin conditions or environmental changes in different positions. It has strong adaptability and flexibility and can meet the needs of different users.
[0141] In one embodiment of the present invention, the mode for the adjustment module includes:
[0142] A new position adjustment module is used to collect real-time temperature data of the new position when the massager is in the new position temperature control mode;
[0143] Calculating a temperature control coefficient for the new position based on the temperature data of the new position, and performing temperature control adjustment on the new position based on the temperature control coefficient for the new position;
[0144] The calculation formula of the temperature control coefficient of the new position is:
[0145]
[0146] Where XT is the temperature control coefficient at the new position, XW is the temperature data at the new position, EMAX is the maximum value of the temperature danger range, HMAX is the maximum value of the temperature buffer range, and HMIN is the minimum value of the temperature buffer range. When (XW - EMAX) or (XW - HMAX) in the formula is a negative number, set the result to zero.
[0147] The original position adjustment module is used to collect the real-time temperature of the original position and obtain the original position temperature data when the massager is in the original position temperature control mode;
[0148] A risk judgment result of the original position temperature data is obtained, and a judgment is made on whether the temperature should be adjusted according to the risk judgment result to obtain an adjustment judgment result.
[0149] The working principle of the above technical solution is as follows: when the massager determines that it has moved to a new location, it immediately collects real-time temperature data at the new location. Based on the temperature data at the new location, the massager calculates a new temperature control coefficient. This coefficient ensures that the massager provides a more appropriate temperature at the new location. Using the new temperature control coefficient, the massager adjusts the temperature at the new location to achieve the desired temperature effect. If the massager determines that it has not moved, it continues to collect real-time temperature data at the original location to obtain the latest original location temperature data. Based on the original location temperature data, the massager performs another risk assessment to determine whether the current temperature is within the preset temperature danger range or temperature buffer range. Based on the risk assessment result, the massager determines whether to adjust the temperature. If the current temperature is within the danger range or buffer range, the massager adjusts the temperature; otherwise, the current temperature remains unchanged.
[0150] The technical effect of the above technical solution is that the massager can automatically adjust the temperature control coefficient and temperature control strategy according to the real-time temperature data of different positions, realize intelligent temperature management, and ensure that users can get the best massage experience in different positions. Through real-time temperature collection and risk judgment, the massager can promptly detect and avoid the risk of overheating or scalding of the skin, greatly improving the safety of user use. The massager can automatically adjust the temperature and massage strategy according to the changes in the user's skin temperature and position, ensuring that users can get a comfortable and safe massage experience in different positions. Whether it is a new position or the original position, the massager can quickly adapt to the current environment and user needs through real-time temperature collection and temperature control adjustment, reflecting strong flexibility and adaptability. The user does not need to manually adjust the temperature and position of the massager. The massager can complete these operations automatically, which greatly reduces the complexity of the user's operation and improves the convenience of use.
[0151] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.
Claims
1. A temperature control method for a beauty massager, characterized in that: The method comprises: S1. Using a massager to collect the temperature of a measured surface, performing temperature range judgment on the collected real-time temperature data, obtaining a risk judgment result, and obtaining an adjustment judgment result based on the risk judgment result; S2. Calculating a temperature control adjustment coefficient based on the adjustment judgment result, adjusting the temperature of the massager based on the temperature control adjustment coefficient, calculating a temperature change difference after adjustment, comparing the temperature change difference with a preset change difference threshold, and then determining whether the massager should be moved, obtaining a movement judgment result, and selecting a temperature control mode type based on the movement judgment result; S3. Perform targeted temperature control adjustments at the new position and the original position according to the temperature control mode type.
2. The temperature control method of a beauty massager according to claim 1, characterized in that: Said S1 comprises: The massager is used to collect the real-time temperature of the measured surface and obtain real-time temperature data; Acquire a preset temperature range, wherein the preset temperature range includes a temperature danger range and a temperature buffer range; Determine whether the real-time temperature data is within the temperature danger range or the temperature buffer range to obtain risk judgment results; A judgment is made on whether the temperature should be adjusted based on the risk judgment result to obtain an adjustment judgment result.
3. The temperature control method of a beauty massager according to claim 1, characterized in that: The S2 includes: Calculating a temperature control adjustment coefficient according to the adjustment judgment result, and adjusting the temperature of the massager by the temperature control adjustment coefficient to obtain adjustment data; After adjusting the temperature of the massager, real-time temperature data of the surface of the measured object is obtained again; Calculating the difference between the adjustment data and the real-time temperature data to obtain a temperature change difference; Comparing the temperature change difference with a preset change difference threshold to obtain a comparison result; A judgment is made as to whether the massager is moving based on the comparison result to obtain a movement judgment result, and a temperature control mode type is selected based on the movement judgment result.
4. The temperature control method of a beauty massager according to claim 3, characterized in that: The step of determining whether the massager is moving based on the comparison result to obtain a movement determination result, and selecting a temperature control mode type based on the movement determination result, includes: When the temperature change difference is greater than the preset change difference threshold, determining that the massager is moving; When the temperature change difference is less than or equal to the preset change difference threshold, determining that the massager is not moving; When the massager moves, it enters the new position temperature control mode; When the massager is not moved, the massager operates in the original position temperature control mode; The new position temperature control mode and the original position temperature control mode are types of temperature control modes.
5. The temperature control method of a beauty massager according to claim 1, characterized in that: The S3 includes: When the massager is in the new position temperature control mode, real-time temperature collection is performed on the new position to obtain the temperature data of the new position; Calculating a temperature control coefficient for the new position based on the temperature data of the new position, and performing temperature control adjustment on the new position based on the temperature control coefficient for the new position; When the massager is in the original position temperature control mode, the real-time temperature of the original position is collected to obtain the original position temperature data; A risk judgment result of the original position temperature data is obtained, and a judgment is made on whether the temperature should be adjusted according to the risk judgment result to obtain an adjustment judgment result.
6. A temperature control system for a beauty massager, characterized in that: The system comprises: A range adjustment judgment module is used to collect the temperature of the measured surface through the massager, perform temperature range judgment on the collected real-time temperature data, obtain a risk judgment result, and obtain an adjustment judgment result based on the risk judgment result; a coefficient movement determination module, configured to calculate a temperature control adjustment coefficient based on the adjustment determination result, adjust the temperature of the massager based on the temperature control adjustment coefficient, calculate a temperature change difference after adjustment, compare the temperature change difference with a preset change difference threshold, and then determine whether the massager should be moved, obtain a movement determination result, and select a temperature control mode type based on the movement determination result; The mode-specific adjustment module is used to perform targeted temperature control adjustment at the new position and the original position according to the type of the temperature control mode.
7. The temperature control system of a beauty massager according to claim 6, characterized in that: The range adjustment judgment module includes: The data acquisition module is used to collect the real-time temperature of the measured surface through the massager to obtain real-time temperature data; Acquire a preset temperature range, wherein the preset temperature range includes a temperature danger range and a temperature buffer range; The range judgment module is used to judge whether the real-time temperature data is within the temperature danger range or the temperature buffer range, and obtain the risk judgment result; The adjustment judgment module is used to judge whether the temperature should be adjusted according to the risk judgment result, and obtain an adjustment judgment result.
8. The temperature control system of a beauty massager according to claim 6, characterized in that: The coefficient movement judgment module includes: a calculation and adjustment module, configured to calculate a temperature control adjustment coefficient according to the adjustment judgment result, and adjust the temperature of the massager by the temperature control adjustment coefficient to obtain adjustment data; The change calculation module is used to obtain the real-time temperature data of the surface of the measured object again after the massager temperature is adjusted; Calculating the difference between the adjustment data and the real-time temperature data to obtain a temperature change difference; A comparison module, configured to compare the temperature change difference with a preset change difference threshold to obtain a comparison result; The movement mode judgment module is used to judge whether the massager is moving according to the comparison result, obtain a movement judgment result, and select a temperature control mode type according to the movement judgment result.
9. The temperature control system of a beauty massager according to claim 8, characterized in that: The movement mode judgment module includes: a movement determination module, configured to determine that the massager is moving when the temperature change difference is greater than the preset change difference threshold; When the temperature change difference is less than or equal to the preset change difference threshold, determining that the massager is not moving; A mode determination module is used to determine whether the massager enters a new position temperature control mode when the massager moves; When the massager is not moved, the massager operates in the original position temperature control mode; The new position temperature control mode and the original position temperature control mode are types of temperature control modes.
10. The temperature control system of a beauty massager according to claim 6, characterized in that: The mode includes for the adjustment module: A new position adjustment module is used to collect real-time temperature data of the new position when the massager is in the new position temperature control mode; Calculating a temperature control coefficient for the new position based on the temperature data of the new position, and performing temperature control adjustment on the new position based on the temperature control coefficient for the new position; The original position adjustment module is used to collect the real-time temperature of the original position and obtain the original position temperature data when the massager is in the original position temperature control mode; A risk judgment result of the original position temperature data is obtained, and a judgment is made on whether the temperature should be adjusted according to the risk judgment result to obtain an adjustment judgment result.
Citation Information
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