Self-power-generation rising clothes airing control system and method
By adding a self-generating control module to the drying rod assembly, the automatic lifting and lowering of the drying rod is solved, and the problem of poor convenience of traditional clothes drying machines is improved.
Patent Information
- Application Number
- CN202510587069.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-08-08
AI Technical Summary
Traditional clothes drying racks require manual operation and cannot be controlled in time, resulting in poor convenience and affecting the user experience.
The self-generating control module is added to the drying rod assembly, including a self-generating unit, a power management unit and a wireless communication unit. The voltage is generated by touching the operation and the drying rod rise signal is sent to control the automatic lifting and lowering of the drying rod assembly.
It improves the convenience of clothes drying, and users can directly act on the drying rod assembly for rising control, simplifying the operation process.
Smart Images

Figure CN120443449A_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the field of equipment control technology, and in particular to a self-generating rising clothes drying control system and method. Background Art
[0002] Traditional clothes drying racks rely on manual cranking to dry and collect clothes, which is labor-intensive and limited in functionality. This fails to meet people's demands for efficient and convenient clothes drying. The rapid development of equipment control technology has provided technical support for intelligent clothes drying racks. Smart clothes drying racks can automatically raise and lower the clothes drying rack according to user needs, easily adjusting to the appropriate height for convenient drying and collecting clothes.
[0003] In related art, smart clothes drying machines require users to control the machine's lifting and lowering via a mobile device or remote control. Because the mobile device or remote control is not fixed, users may temporarily be unable to find the mobile device or remote control to control the clothes drying machine, resulting in inconvenience and a poor user experience. Summary of the Invention
[0004] The embodiment of the present application provides a self-generating rising clothes drying control system and method, which solves the problems in related technologies such as the inability to perform clothes drying control in a timely manner, poor convenience, and impact on user experience. By adding a self-generating control module to the clothes drying rod assembly, it is beneficial for users to directly act on the clothes drying rod assembly to perform rising clothes drying control, thereby improving the convenience of clothes drying.
[0005] In a first aspect, an embodiment of the present application provides a self-generating rising clothes drying control system, comprising:
[0006] A first control module is provided on the main unit of the clothes drying machine;
[0007] a self-generating control module, which is provided on the clothes drying rod assembly of the clothes drying machine and is in communication with the first control module. The self-generating control module includes a self-generating unit, a power management unit, and a wireless communication unit. The power management unit is electrically connected to the self-generating unit and the wireless communication unit respectively;
[0008] The self-generating unit is configured to provide a supply voltage to the power management unit when a touch operation is received;
[0009] The power management unit is configured to convert the supply voltage into an operating voltage and provide the operating voltage to the wireless communication unit;
[0010] The wireless communication unit is configured to send a drying rod rising signal to the first control module when performing normal operations based on the operating voltage;
[0011] The first control module is configured to control the drying rod assembly to rise when receiving the drying rod rising signal.
[0012] Optionally, the self-generating rising clothes drying control system further includes:
[0013] A second control module and a drive module are provided on the drying rod assembly, the drying rod assembly including a main drying rod and a movable drying rod sleeved on the main drying rod, and a drying detection module is provided in the movable drying rod. The second control module is electrically connected to the drive module and the drying detection module respectively, and the second control module is in communication with the first control module;
[0014] The drying detection module is configured to feed back a first detection signal to the second control module when no drying objects are detected;
[0015] The first control module is further configured to synchronize the drying rod rising signal to the second control module;
[0016] The second control module is configured to send a first driving signal to the driving module when receiving the rising signal of the drying rod and the first detection signal and determining that the movable drying rod is in the extended state;
[0017] The driving module is configured to control the movable drying rod to retract to a first preset position when receiving the first driving signal.
[0018] Optionally, the self-generating rising clothes drying control system further includes:
[0019] a tilt detection module, provided on the drying rod assembly and electrically connected to the second control module;
[0020] The tilt detection module is configured to provide the second control module with a tilt measurement result for determining whether the drying rod assembly is in an unbalanced state;
[0021] The second control module is further configured to send the tilt measurement result to the first control module;
[0022] The first control module is further configured to control the drying rod assembly to stop moving and output a first warning message when the tilt measurement result indicates that the drying rod assembly is in an unbalanced state.
[0023] Optionally, the first control module is further configured to send a synchronous drying rod descending signal to the second control module;
[0024] The second control module is further configured to send a second driving signal to the driving module when receiving the drying rod descending signal and the first detection signal and determining that the movable drying rod is in the retracted state;
[0025] The driving module is further configured to control the movable drying rod to extend to a second preset position when receiving the second driving signal.
[0026] Optionally, the drying detection module includes a signal receiving unit and a signal sending unit, the signal receiving unit and the signal sending unit are respectively arranged at two ends of the movable drying rod, and the signal receiving unit is electrically connected to the second control module;
[0027] The signal sending unit is configured to transmit a preset signal to the signal receiving unit;
[0028] The signal receiving unit is configured to feed back a first detection signal to the second control module upon receiving the preset signal.
[0029] Optionally, the self-generating rising clothes drying control system further includes:
[0030] A charging socket is provided on the host;
[0031] A power supply module is provided on the drying rod assembly, and the power supply module is provided with a charging interface;
[0032] The charging socket is configured to be connected to the charging interface when the clothes drying rod assembly rises to the top position to charge the power supply module.
[0033] Optionally, the self-generating rising clothes drying control system further includes:
[0034] an obstacle detection unit, provided on the host and electrically connected to the first control module;
[0035] the obstacle detection unit is configured to provide an obstacle detection result to the first control module;
[0036] The first control module is further configured to control the drying rod assembly to stop moving and output a second warning message when the obstacle detection result is that an obstacle is detected.
[0037] Optionally, the self-generating rising clothes drying control system further includes:
[0038] a hanging weight detection unit, provided on the host and electrically connected to the first control module;
[0039] The hanging weight detection unit is configured to provide the first control module with a hanging weight detection value of the drying rod assembly;
[0040] The first control module is further configured to control the drying rod assembly to stop moving and output a third warning message when the hanging weight detection value exceeds a preset hanging weight threshold.
[0041] Optionally, the self-generating rising clothes drying control system further includes:
[0042] a position detection unit, provided on the host and electrically connected to the first control module;
[0043] The position detection unit is configured to provide the first control module with a position detection result of the drying rod assembly;
[0044] The first control module is further configured to control the drying rod assembly to move to a preset position according to the position detection result.
[0045] In a second aspect, the embodiments of the present application further provide a method for controlling self-generated rising clothes drying, comprising:
[0046] When the self-generating unit receives a touch operation, it provides a power supply voltage to the power management unit;
[0047] The power management unit converts the supply voltage into an operating voltage and provides the operating voltage to the wireless communication unit;
[0048] When the wireless communication unit operates normally based on the operating voltage, the wireless communication unit sends a drying rod rising signal to the first control module;
[0049] When the first control module receives the drying rod rising signal, it controls the drying rod assembly to rise.
[0050] In an embodiment of the present application, a first control module is provided on the main unit of the clothes drying machine; a self-generating control module is provided on the clothes drying rod assembly of the clothes drying machine and is in communication connection with the first control module. The self-generating control module includes a self-generating unit, a power management unit and a wireless communication unit. The power management unit is electrically connected to the self-generating unit and the wireless communication unit respectively. The self-generating unit is configured to provide a power supply voltage to the power management unit when a touch operation is received; the power management unit is configured to convert the power supply voltage into an operating voltage and provide the operating voltage to the wireless communication unit; the wireless communication unit is configured to send a clothes drying rod rising signal to the first control module when performing normal operation based on the operating voltage; the first control module is configured to control the clothes drying rod assembly to rise when the clothes drying rod rising signal is received. The above scheme can facilitate users to directly act on the clothes drying rod assembly to control the clothes drying rising by adding a self-generating control module to the clothes drying rod assembly, thereby improving the convenience of clothes drying. BRIEF DESCRIPTION OF THE DRAWINGS
[0051] Figure 1 This is a structural diagram of a self-generating rising clothes drying control system provided in an embodiment of the present application;
[0052] Figure 2 A schematic structural diagram of a clothes drying machine provided in an embodiment of the present application;
[0053] Figure 3 A schematic structural diagram of a self-generating unit provided in an embodiment of the present application;
[0054] Figure 4 A circuit schematic diagram of a power management unit provided in an embodiment of the present application;
[0055] Figure 5 A circuit schematic diagram of a wireless communication unit provided in an embodiment of the present application;
[0056] Figure 6 A schematic structural diagram of another clothes drying machine provided in an embodiment of the present application;
[0057] Figure 7 This is a flow chart of a self-generating rising clothes drying control method provided in an embodiment of the present application. DETAILED DESCRIPTION
[0058] The following is a further detailed description of the embodiments of the present application in conjunction with the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely for the purpose of explaining the embodiments of the present application, and are not intended to limit the embodiments of the present application. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions of the embodiments of the present application, rather than all structures.
[0059] The terms "first," "second," and the like in the specification and claims of this application are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than that illustrated or described herein, and that the objects distinguished by "first," "second," and the like are generally of the same type, and do not limit the number of objects; for example, the first object can be one or more. In addition, the term "and / or" in the specification and claims refers to at least one of the connected objects, and the character " / " generally indicates that the objects connected are in an "or" relationship.
[0060] Figure 1 This is a structural diagram of a self-generating rising clothes drying control system provided in an embodiment of the present application. Figure 1As shown, the self-generating rising clothes drying control system includes a first control module 101 and a self-generating control module 102, wherein the self-generating control module 102 includes a self-generating unit 1021, a power management unit 1022 and a wireless communication unit 1023, wherein the self-generating control module 102 is connected to the first control module 101 in communication, specifically, it can be a Bluetooth connection, a wifi connection, etc., which is not limited in this application. The power management unit 1022 is electrically connected to the self-generating unit 1021 and the wireless communication unit 1023 respectively. The self-generating rising clothes drying control system can be applied to clothes drying machines, Figure 2 A structural diagram of a clothes drying machine provided in an embodiment of the present application is shown in FIG. Figure 2 As shown, the clothes drying machine may include a main unit 201 and a clothes drying rod assembly 202. The main unit 201 may be installed on the indoor ceiling. The clothes drying rod assembly 202 may be arranged below the main unit 201 through a steel wire rope 203 or other lifting parts. The clothes drying rod assembly 202 may be used to place items for drying. The first control module 101 is arranged on the main unit 201 of the clothes drying machine, and the self-generating control module 102 is arranged on the clothes drying rod assembly 202 of the clothes drying machine.
[0061] Wherein, the self-generating unit is configured to provide a power supply voltage to the power management unit when a touch operation is received. In one embodiment, Figure 3 This is a schematic diagram of the structure of a self-generating unit provided in an embodiment of the present application. The self-generating unit may include a button 10211, a permanent magnet 10212, and a power generation coil 10213. When the touch operation is pressing the button 10211, the permanent magnet 10212 connected to the button 10211 will be displaced within the cavity of the power generation coil 10213, thereby generating a supply voltage. In one embodiment, the self-generating unit may include an elastic pressing sheet and a piezoelectric ceramic sheet. When the touch operation is pressing the elastic pressing sheet, the piezoelectric ceramic connected to the elastic pressing sheet will be compressed and deformed, thereby generating a supply voltage.
[0062] The power management unit is configured to convert the supply voltage into an operating voltage and provide the operating voltage to the wireless communication unit. Figure 4 This is a schematic diagram of a power management unit provided in an embodiment of the present application. The power management unit includes a power management chip and multiple matching capacitors. The power management chip U5 receives a 5V supply voltage from a self-generating unit and converts it into the 3.3V operating voltage required for the normal operation of the wireless communication unit.
[0063] The wireless communication unit is configured to send a drying rod rising signal to the first control module when performing normal operation based on the operating voltage. Figure 5This is a circuit schematic diagram of a wireless communication unit provided in an embodiment of the present application. The wireless communication unit may include a wireless RF chip U6, a crystal oscillator circuit including a crystal oscillator X1, an antenna circuit including an antenna PA1, and matching capacitors and inductors. The wireless RF chip U6 can operate normally based on the operating voltage of 3.3V and transmit a drying pole rising signal to the first control module via the antenna PA1.
[0064] The first control module is configured to control the drying rod assembly to rise when receiving a drying rod rising signal. Specifically, the main unit of the clothes drying machine can be provided with a driving module, and the first control module can control the wire rope or other lifting parts to perform the lifting movement through the driving module.
[0065] As mentioned above, by adding a self-generating control module to the clothes drying rod assembly, the user can directly act on the clothes drying rod assembly to control the rise of clothes drying, thereby improving the convenience of clothes drying.
[0066] Figure 6 This is a structural diagram of another clothes drying machine provided in an embodiment of the present application. Figure 2 On the basis of Figure 6 As shown, the self-generating rising clothes drying control system also includes a second control module 103 and a driving module 104, which are arranged on the clothes drying rod assembly. The clothes drying rod assembly includes a main clothes drying rod 2021 and a movable clothes drying rod 2022 mounted on the main clothes drying rod 2021. It also includes a drying detection module 105, which is arranged in the movable clothes drying rod 2022. The second control module 103 is electrically connected to the driving module 104 and the drying detection module 105 respectively, and the second control module 103 is communicatively connected to the first control module 101.
[0067] Among them, the drying detection module is configured to feed back a first detection signal to the second control module when no drying objects are detected. Specifically, the drying detection module can be a laser sensor module, an infrared sensor module or an ultrasonic sensor module, which is not limited in this application. The drying detection module can include a signal receiving unit and a signal sending unit, which are respectively arranged at both ends of the movable drying rod, and the signal receiving unit is electrically connected to the second control module. The signal sending unit is configured to transmit a preset signal to the signal receiving unit. The signal receiving unit is configured to feed back a first detection signal to the second control module when receiving a preset signal. Taking the infrared sensor module as an example, the signal receiving unit can be an infrared receiving unit, and the signal sending unit can be an infrared transmitting unit. When there is no drying object on the movable drying rod, the signal receiving unit will receive the signal sent by the signal sending unit, and accordingly, the first detection signal can be fed back to the second control module, and the first detection signal can indicate that no drying object is detected. When the clothes hanger is hung and partially enters the movable drying rod, the signal transmission between the signal sending unit and the signal receiving unit will be blocked. The signal receiving unit will not be able to receive the signal and generate a characteristic level change. Correspondingly, a second detection signal can be fed back to the second control module, and the second detection signal can indicate that the drying items have been detected.
[0068] The first control module is further configured to synchronize a rod-raising signal with the second control module. The first control module can receive the rod-raising signal from the self-generating control module and synchronize the rod-raising signal with the second control module, thereby notifying the second control module that the rod assembly is currently being raised, allowing the second control module to adjust the position of the movable rod accordingly.
[0069] The second control module is configured to, upon receiving the rod-raising signal and the first detection signal and determining that the movable rod is in the extended state, send a first drive signal to the drive module. If both the rod-raising signal and the first detection signal are received, it can be assumed that there is no drying item on the movable rod and that the rod assembly is in the raised state. Furthermore, if it is determined that the movable rod is in the extended state, the first drive signal can be sent to the drive module to control the retraction of the movable rod.
[0070] The driving module is configured to control the movable drying rod to retract to a first preset position when receiving a first driving signal.
[0071] In one embodiment, the self-generating rising clothes-drying control system further includes a tilt detection module. The tilt detection module is provided on the clothes-drying rod assembly and is electrically connected to the second control module. The tilt detection module is configured to provide the second control module with a tilt measurement result for determining whether the clothes-drying rod assembly is in an unbalanced state. The tilt detection module may be a gyroscope, an inclination sensor, etc., which is not limited in this application. The second control module is further configured to send the tilt measurement result to the first control module. The first control module is further configured to control the clothes-drying rod assembly to stop moving and output a first warning message when the tilt measurement result indicates that the clothes-drying rod assembly is in an unbalanced state, and output a first warning message. The first warning message may be an audible and visual prompt signal, or a prompt message sent to a terminal device, which is not limited in this application. Thus, the auxiliary host determines whether the clothes-drying rod assembly may be unbalanced in weight or encounter an obstacle, and brakes the clothes-drying rod assembly in time to avoid damage to the clothes-drying rod assembly or the falling of the clothes to be dried, thereby improving the safety of clothes-drying.
[0072] In one embodiment, the first control module is further configured to synchronize the drying rod descending signal to the second control module. By synchronizing the drying rod descending signal to the second control module, the second control module can be notified that the drying rod assembly is currently being controlled to descend, so that the second control module can adjust the position of the movable drying rod accordingly. The second control module is further configured to send a second drive signal to the drive module when it receives the drying rod descending signal and the first detection signal and determines that the movable drying rod is in a retracted state. If the drying rod descending signal and the first detection signal are received, it can be regarded that there is no drying object on the movable drying rod, and the drying rod assembly is in a descending state. Then, when it is determined that the movable drying rod is in a retracted state, it can be selected to send a second drive signal to the drive module to control the movable drying rod to extend, so as to facilitate users to dry clothes. The drive module is also configured to control the movable drying rod to extend to a second preset position when it receives the second drive signal.
[0073] As described above, by providing a movable drying rod and adapting to the lifting control state of the drying rod assembly and the unfolded state of the movable drying rod, the movable drying rod can be automatically extended or retracted, which can simplify user operations and improve ease of use.
[0074] In one embodiment, the self-generating ascending clothes drying control system further includes a charging socket and a power supply module. The charging socket is located on the main unit, and the power supply module is located on the clothes drying rod assembly and is provided with a charging interface. The charging socket is configured to connect to the charging interface when the clothes drying rod assembly reaches the top position to charge the power supply module. This ensures proper power supply to the second control module, drive module, and other components of the clothes drying rod assembly.
[0075] In one embodiment, the self-generating rising clothes drying control system also includes an obstacle detection unit. The obstacle detection unit is provided on the host and is electrically connected to the first control module. The obstacle detection unit is configured to provide the obstacle detection result to the first control module. The obstacle detection unit can specifically be a camera, a laser radar, etc., which is not limited in this application. The first control module is also configured to control the clothes drying rod assembly to stop moving and output a second early warning message when the obstacle detection result is that an obstacle is detected. The second early warning message can be an audio-visual prompt signal, or a prompt message sent to the terminal device, which is not limited in this application. In this way, obstacles on the lifting path of the clothes drying rod assembly can be identified in advance, and the clothes drying rod assembly can be braked in time to avoid damage to the clothes drying rod assembly and improve the safety of clothes drying.
[0076] In one embodiment, the self-generating rising clothes drying control system also includes a hanging weight detection unit. The hanging weight detection unit is provided on the host and is electrically connected to the first control module. The hanging weight detection unit is configured to provide the first control module with a hanging weight detection value of the clothes drying rod assembly. The hanging weight detection unit can be a tension sensor, etc., which is not limited in this application. The first control module is also configured to control the clothes drying rod assembly to stop moving and output a third warning message when the hanging weight detection value exceeds a preset hanging weight threshold. The third warning message can be an audible and visual prompt signal, or a prompt message sent to the terminal device, which is not limited in this application. Thus, an early warning is given to the overload phenomenon of the clothes drying rod assembly in a timely manner, prompting the user to adjust the hanging weight to avoid damage to the clothes drying machine.
[0077] In one embodiment, the self-generating rising clothes drying control system further includes a limit unit. The limit unit is provided on the host and is electrically connected to the first control module. The limit unit is configured to provide a limit trigger result to the first control module. The limit unit may be a limit switch, etc., which is not limited in this application. The first control module is further configured to control the clothes drying rod assembly to stop moving when the limit trigger result is in a triggered state. Thereby, the clothes drying rod assembly is prevented from moving beyond the allowable travel range, and the risk of collision between the clothes drying rod assembly and the host is reduced.
[0078] In one embodiment, the self-generating rising clothes drying control system also includes a position detection unit. The position detection unit is provided on the host and is electrically connected to the first control module. The position detection unit is configured to provide the first control module with the position detection result of the clothes drying rod assembly. The position detection unit can be a laser ranging module, an ultrasonic ranging module, etc., which is not limited in this application. The first control module is also configured to control the clothes drying rod assembly to move to a preset position based on the position detection result. Thereby, reliable position reference information is provided to the host, assisting the host to accurately control the movement of the clothes drying rod assembly to a preset position.
[0079] Figure 7This is a flow chart of a self-generated rising clothes drying control method provided in an embodiment of the present application. The self-generated rising clothes drying control method is applied to a clothes drying machine, which includes a host and a clothes drying rod assembly. The first control module is provided on the host, and the self-generated control module is provided on the clothes drying rod assembly and is in communication connection with the first control module. The self-generated control module includes a self-generated unit, a power management unit and a wireless communication unit. The power management unit is electrically connected to the self-generated unit and the wireless communication unit respectively. Figure 7 As shown, the self-generating rising clothes drying control method includes:
[0080] S101 : When receiving a touch operation, the self-generating unit provides a supply voltage to the power management unit.
[0081] In which, the self-generating unit is provided in the drying rod assembly. When the drying rod assembly descends to a position where the user can place the drying items, the user can touch the self-generating unit after completing the placement of the drying items, thereby conveniently triggering the rising control of the drying rod assembly. In one embodiment, the self-generating unit may include a button, a permanent magnet, and a power generation coil. When the touch operation is pressing the button, the permanent magnet connected to the button will be displaced in the cavity of the power generation coil, thereby generating a power supply voltage. In one embodiment, the self-generating unit may include an elastic pressing sheet and a piezoelectric ceramic sheet. When the touch operation is pressing the elastic pressing sheet, the piezoelectric ceramic connected to the elastic pressing sheet will be compressed and deformed, thereby generating a power supply voltage.
[0082] S102: The power management unit converts the supply voltage into an operating voltage, and provides the operating voltage to the wireless communication unit.
[0083] The power management unit may include a power management chip and matching peripheral circuits. Since the wireless communication unit requires a rated operating voltage for normal operation, the power management unit may perform voltage conversion to convert the received supply voltage into an operating voltage sufficient to drive the wireless communication unit for normal operation.
[0084] S103. When the wireless communication unit operates normally based on the operating voltage, the wireless communication unit sends a drying rod rising signal to the first control module.
[0085] The wireless communication unit may include a radio frequency chip and a matching peripheral circuit. When the wireless communication unit is connected to the working voltage and operates normally, it may actively send a drying rod rising signal to the first control module provided in the host.
[0086] S104: Upon receiving the drying rod rising signal, the first control module controls the drying rod assembly to rise.
[0087] Among them, after the first control module receives the rising signal of the drying rod, it can control the wire rope or other lifting parts to perform rising and falling movements through the driving module, so as to achieve the purpose of controlling the rising of the drying rod assembly.
[0088] As mentioned above, the first control module receives the drying rod rising signal sent by the self-generating control module added to the drying rod assembly, and controls the drying rod assembly to rise accordingly, which can help users directly act on the drying rod assembly to control the rising of clothes and improve the convenience of drying clothes.
[0089] The self-generating rising clothes drying control method in the embodiment of the present application is applied to the self-generating rising clothes drying control system. The entire scheme has been described in detail in the relevant embodiments of the self-generating rising clothes drying control system. For any incomplete description in the self-generating rising clothes drying control method, please refer to the embodiments of the self-generating rising clothes drying control system. The self-generating rising clothes drying control method has the same technical effect.
[0090] It is worth noting that in the embodiment of the above-mentioned control device, the various units and modules included are only divided according to functional logic, but are not limited to the above-mentioned division, as long as the corresponding functions can be achieved; in addition, the specific names of the functional units are only for the convenience of distinguishing each other, and are not configured to limit the scope of protection of the embodiments of this application.
[0091] It should be noted that the numbering of each step in this solution is only used to describe the overall design framework of this solution, and does not represent the necessary order relationship between the steps. On the basis that the overall implementation process conforms to the overall design framework of this solution, it all belongs to the protection scope of this solution, and the order of precedence in the form of text when describing is not an exclusive limitation on the specific implementation process of this solution. Those skilled in the art should understand that the embodiments of the present application can be provided as methods, systems, or computer program products. In a typical configuration, the computing device includes one or more processors (CPU), input / output interface, network interface and memory. The memory may include non-permanent memory in a computer-readable medium, random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash memory (flash RAM). The memory is an example of a computer-readable medium.
[0092] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.
[0093] Note that the above are only preferred embodiments of the present invention and the technical principles employed. Those skilled in the art will appreciate that the present invention is not limited to the specific embodiments herein, and that various obvious changes, readjustments, and substitutions are possible for those skilled in the art without departing from the scope of protection of the present invention. Therefore, although the present invention has been described in detail through the above embodiments, the present invention is not limited to the above embodiments and may include many other equivalent embodiments without departing from the scope of the present invention. The scope of the present invention is determined by the scope of the appended claims.
Claims
1. A self-generating rising clothes drying control system, characterized in that: include: A first control module is provided on the main unit of the clothes drying machine; a self-generating control module, which is provided on the clothes drying rod assembly of the clothes drying machine and is in communication with the first control module. The self-generating control module includes a self-generating unit, a power management unit, and a wireless communication unit. The power management unit is electrically connected to the self-generating unit and the wireless communication unit respectively; The self-generating unit is configured to provide a supply voltage to the power management unit when a touch operation is received; The power management unit is configured to convert the supply voltage into an operating voltage and provide the operating voltage to the wireless communication unit; The wireless communication unit is configured to send a drying rod rising signal to the first control module when performing normal operations based on the operating voltage; The first control module is configured to control the drying rod assembly to rise when receiving the drying rod rising signal.
2. The self-generating rising clothes drying control system according to claim 1, characterized in that: Also includes: The second control module and the driving module are provided on the drying rod assembly, wherein the drying rod assembly includes a main drying rod and a movable drying rod sleeved on the main drying rod; a drying detection module, disposed in the movable drying rod, wherein the second control module is electrically connected to the driving module and the drying detection module respectively, and the second control module is in communication connection with the first control module; The drying detection module is configured to feed back a first detection signal to the second control module when no drying objects are detected; The first control module is further configured to synchronize the drying rod rising signal to the second control module; The second control module is configured to send a first driving signal to the driving module when receiving the rising signal of the drying rod and the first detection signal and determining that the movable drying rod is in the extended state; The driving module is configured to control the movable drying rod to retract to a first preset position when receiving the first driving signal.
3. The self-generating rising clothes drying control system according to claim 2, characterized in that: Also includes: a tilt detection module, provided on the drying rod assembly and electrically connected to the second control module; The tilt detection module is configured to provide the second control module with a tilt measurement result for determining whether the drying rod assembly is in an unbalanced state; The second control module is further configured to send the tilt measurement result to the first control module; The first control module is further configured to control the drying rod assembly to stop moving and output a first warning message when the tilt measurement result indicates that the drying rod assembly is in an unbalanced state.
4. The self-generating rising clothes drying control system according to claim 2, characterized in that: The first control module is further configured to send a synchronous drying rod descending signal to the second control module; The second control module is further configured to send a second driving signal to the driving module when receiving the drying rod descending signal and the first detection signal and determining that the movable drying rod is in the retracted state; The driving module is further configured to control the movable drying rod to extend to a second preset position when receiving the second driving signal.
5. The self-generating rising clothes drying control system according to claim 2, characterized in that: The drying detection module includes a signal receiving unit and a signal sending unit, the signal receiving unit and the signal sending unit are respectively arranged at two ends of the movable drying rod, and the signal receiving unit is electrically connected to the second control module; The signal sending unit is configured to transmit a preset signal to the signal receiving unit; The signal receiving unit is configured to feed back a first detection signal to the second control module upon receiving the preset signal.
6. The self-generating rising clothes drying control system according to claim 1, characterized in that: Also includes: A charging socket is provided on the host; A power supply module is provided on the drying rod assembly, and the power supply module is provided with a charging interface; The charging socket is configured to be connected to the charging interface when the clothes drying rod assembly rises to the top position to charge the power supply module.
7. The self-generating rising clothes drying control system according to claim 1, characterized in that: Also includes: an obstacle detection unit, provided on the host and electrically connected to the first control module; the obstacle detection unit is configured to provide an obstacle detection result to the first control module; The first control module is further configured to control the drying rod assembly to stop moving and output a second warning message when the obstacle detection result is that an obstacle is detected.
8. The self-generating rising clothes drying control system according to claim 2, characterized in that: Also includes: a hanging weight detection unit, provided on the host and electrically connected to the first control module; The hanging weight detection unit is configured to provide the first control module with a hanging weight detection value of the drying rod assembly; The first control module is further configured to control the drying rod assembly to stop moving and output a third warning message when the hanging weight detection value exceeds a preset hanging weight threshold.
9. The self-generating rising clothes drying control system according to claim 1, characterized in that: Also includes: a position detection unit, provided on the host and electrically connected to the first control module; The position detection unit is configured to provide the first control module with a position detection result of the drying rod assembly; The first control module is further configured to control the drying rod assembly to move to a preset position according to the position detection result.
10. A method for controlling self-generated rising clothes drying, characterized in that: include: When the self-generating unit receives a touch operation, it provides a supply voltage to the power management unit; The power management unit converts the supply voltage into an operating voltage and provides the operating voltage to the wireless communication unit; When the wireless communication unit operates normally based on the operating voltage, the wireless communication unit sends a drying rod rising signal to the first control module; When the first control module receives the drying rod rising signal, it controls the drying rod assembly to rise.