Intelligent remote control opening and closing high-performance window system
Through multi-sensor fusion, dual power supply system and enhanced window frame design, the existing smart window system has solved the shortcomings in wind pressure resistance, sensor functions, power supply reliability and safety, and a high-performance smart window system has been realized.
Patent Information
- Application Number
- CN202510735876.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-07-18
AI Technical Summary
The existing smart window systems have shortcomings in wind pressure resistance, sensor functions, power supply reliability, adaptability and safety, especially the traditional window frame materials are prone to deformity, the sensor functions are single, the power supply system is unstable, and the lack of active anti-clip and anti-theft mechanisms.
It adopts multi-sensor fusion, dual power supply system, adaptive transmission structure and reinforced window frame design, including carbon fiber or aluminum alloy window frame reinforcement ribs, multiple sensor combinations, electromagnetic locks and solar lithium batteries dual power supply to achieve wind pressure balance and safety protection.
It improves the system's wind pressure resistance, enhances sensor functions, ensures power supply stability, adapts to different window installation needs, and provides efficient safety protection measures.
Smart Images

Figure CN120331594A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of building doors and windows, and particularly relates to an intelligent remote control switch high-performance window system. Background Art
[0002] An intelligent remote control door and window system is a system that realizes remote or automatic control of doors and windows through intelligent technology. Users can remotely control doors and windows within a certain distance through a wireless remote control to realize functions such as opening, closing, pausing, and locking of doors and windows, which is convenient and fast.
[0003] Chinese invention patent CN116163622A specifically discloses an intelligent outward-opening system window with remote control of opening and closing angle, including a window frame, a window sash, glass, a control processing device, and a remote terminal. The window sash is connected to the window frame. A driving device is arranged on the window frame. A cavity is formed on the window frame. A sliding rheostat and a current sensor are arranged in the cavity. A detection circuit is arranged between the sliding rheostat and the current sensor. A strip-shaped sliding opening is formed on the window frame. A slide rail parallel to the strip-shaped sliding opening is arranged on the window frame. A slider is arranged on the slide rail. The lower end of the slider is provided with an insulating connection block that passes through the strip-shaped sliding opening and is connected to the sliding piece on the sliding rheostat. The upper end of the slider is connected with a rotating support bar, and the end of the rotating support bar is rotatably connected to the window sash. The foregoing solution and existing intelligent window systems generally have the following problems: 1. Insufficient wind pressure resistance: Traditional window frame materials (such as ordinary aluminum alloy) are difficult to meet the wind pressure resistance requirements of high-rise buildings and are prone to deformation, resulting in a decrease in sealing performance. 2. Single sensor function: Most systems only integrate temperature and humidity or rain sensors and lack comprehensive monitoring of air quality (PM2.5, CO2), safety (anti-theft, anti-pinch). 3. Low power supply reliability: Relying on a single power source, it cannot operate when power is cut off, and the solar power supply system is not efficiently coordinated with the lithium battery. 4. Poor adaptability: The design of the transmission device is fixed and it is difficult to adapt to various types such as sliding windows and casement windows. 5. Safety defects: Lack of active anti-pinch and anti-theft mechanisms, there are usage risks.
[0004] The present invention solves the above technical pain points through multi-sensor fusion, dual power supply systems, adaptive transmission structures, and strengthened window frame designs. Summary of the Invention
[0005] Aiming at the problems raised in the above background art, the purpose of the present invention is: to provide an intelligent remote control switch high-performance window system with multi-sensor fusion, dual power supply systems, adaptive transmission structures, and strengthened window frame designs.
[0006] To achieve the above technical purpose, the technical solution adopted by the present invention is as follows:
[0007] An intelligent remote control switch high-performance window system, comprising a window sash assembly, a window frame assembly and a latch assembly. The window sash assembly includes a first window sash and a second window sash. The window frame assembly includes a top window frame, a bottom window frame and side window frames. A sliding track is provided between the window sash assembly and the window frame assembly. Sliding rollers and stepping motors are provided at the bottoms of the first window sash and the second window sash. The first window sash and the second window sash are respectively connected to the top window frame, the bottom window frame and the side window frames through the sliding track and the sliding rollers. The stepping motors are connected to the sliding rollers through a transmission structure to connect the first window sash and the second window sash. The stepping motors are used to drive the sliding rollers;
[0008] The latch assembly includes a first latch assembly and a second latch assembly which are oppositely arranged. The first latch assembly is fixedly arranged on the side wall of the first window sash, and the second latch assembly is fixedly arranged on the side wall of the second window sash. The latch assembly is used to achieve multi-point locking when the window sash assembly is closed;
[0009] It further includes a sensor module and a control unit. The sensor module and the control unit are embedded in the middle frame. The sensor module includes an environmental sensor group and a safety sensor group. The sensor module is communicatively connected to the control unit and the stepping motors.
[0010] Further defined, the environmental sensor group includes a temperature and humidity sensor, a rain sensor and a PM2.5 sensor, and the safety sensor group includes an infrared proximity sensor and a vibration sensor.
[0011] Further defined, the control unit includes a main control chip and a power management module; the main control chip receives the data of the sensor module and controls the operation of the stepping motors. The power management module includes a solar panel and a lithium battery pack. The solar panel is embedded on the outer side of the top window frame. The solar panel is connected to the lithium battery pack through a DC-DC converter.
[0012] Further defined, the top window frame, the bottom window frame and the side window frames are made of carbon fiber or aluminum alloy materials, and reinforcing rib structures are respectively embedded inside.
[0013] Further defined, the transmission device includes a detachable gear set and a pulley. Such a structural design can adapt to the installation requirements of different window types.
[0014] Further defined, the first latch assembly and the second latch assembly are electromagnetic drive type and are automatically locked when powered off.
[0015] Further defined, the power management module is used for solar power supply priority and automatically switches to the lithium battery after power failure.
[0016] Further defined, both the first window sash and the second window sash adopt double-layer insulating glass.
[0017] It is further defined that the infrared proximity sensor of the safety sensor group is arranged at the edge of the window frame, and the vibration sensor is embedded in the window sash.
[0018] It is further defined that the side window frame has a built-in pressure controller, and the pressure controller balances the wind pressure difference by adjusting the air pressure in the enclosed space.
[0019] Beneficial effects of the present invention:
[0020] Environmental adaptability: Multi-sensor fusion realizes intelligent ventilation, rain protection, and air purification linkage.
[0021] High wind pressure resistance: The pressure controller is set to balance the wind pressure difference by adjusting the air pressure in the enclosed space. Aluminum alloy or carbon fiber window frames plus air pressure balance technology can withstand high-level winds.
[0022] Dual power supply guarantee: By setting up dual energy supply of solar energy and lithium battery, the battery life is guaranteed, and the lithium battery pack takes over the battery life when the power is cut off.
[0023] Safety protection: By setting up an infrared proximity sensor, the false trigger rate of infrared anti-pinch is less than 0.1%. By setting up a vibration sensor, the sensitivity of vibration anti-theft is adjustable to reduce the risk of theft. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The present invention can be further illustrated by the non-limiting examples given in the accompanying drawings;
[0025] Figure 1 It is a structural schematic diagram of an embodiment of an intelligent remote control switch high-performance window system of the present invention;
[0026] Figure 2 It is a front view of an embodiment of an intelligent remote control switch high-performance window system of the present invention;
[0027] Figure 3 A side view of an embodiment of an intelligent remote control switch high-performance window system of the present invention;
[0028] Figure 4 It is a DD cross-sectional view of an embodiment of an intelligent remote control switch high-performance window system of the present invention;
[0029] Figure 5 This is a schematic diagram of the structure of a single window sash of an embodiment of an intelligent remote control switch high-performance window system of the present invention.
[0030] The symbols of the main components are explained as follows: first window sash 1, second window sash 2, first locking assembly 3, second locking assembly 4, top window frame 5, bottom window frame 6, side window frame 7, sliding roller 8, sensor module 9, middle frame 10, control unit 11, stepper motor 12, pressure controller 301, infrared proximity sensor 501, vibration sensor 502, solar cell panel 701, lithium battery 702. Detailed implementation mode
[0031] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. In addition, the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more.
[0032] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood through specific situations.
[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0034] As Figure 1 shown, a high-performance window system of an intelligent remote control switch according to the present invention includes a window sash assembly, a window frame assembly, and a lock catch assembly. The window sash assembly includes a first window sash 1 and a second window sash 2. The window frame assembly includes a top window frame 5, a bottom window frame 6, and a side window frame 7. A sliding track is provided between the window sash assembly and the window frame assembly. Sliding rollers 8 and stepping motors 12 are provided at the bottoms of the first window sash 1 and the second window sash 2. The first window sash 1 and the second window sash 2 are respectively connected to the top window frame 5, the bottom window frame 6, and the side window frame 7 through the sliding track and the sliding rollers 8. The stepping motors 12 are connected to the sliding rollers 8 through a transmission structure to connect the first window sash 1 and the second window sash 2. The stepping motors 12 are used to drive the sliding rollers 8;
[0035] The latch assembly includes a first latch assembly 3 and a second latch assembly 4 which are oppositely arranged. The first latch assembly 3 is fixedly arranged on the side wall of the first window sash 1, and the second latch assembly 4 is fixedly arranged on the side wall of the second window sash 2. The latch assembly is used to achieve multi-point locking when the window sash assembly is closed.
[0036] It further includes a sensor module 9 and a control unit 11. The sensor module 9 and the control unit 11 are embedded in the middle frame 10. The sensor module 9 includes an environmental sensor group and a safety sensor group. The sensor module 9 is communicatively connected to the control unit 11 and the stepping motor 12.
[0037] In the practical application of this embodiment, the environmental sensor group includes a temperature and humidity sensor, a rain sensor, and a PM2.5 sensor, and the safety sensor group includes an infrared proximity sensor and a vibration sensor.
[0038] In the practical application of this embodiment, the control unit 11 includes a main control chip and a power management module; the main control chip receives the data of the sensor module 9 and controls the operation of the stepping motor 12. The power management module includes a solar panel 701 and a lithium battery pack. The solar panel 701 is embedded outside the top window frame 5, and the solar panel 701 is connected to the lithium battery pack through a DC-DC converter.
[0039] In the practical application of this embodiment, the top window frame 5, the bottom window frame 6, and the side window frames 7 are made of carbon fiber or aluminum alloy materials, and reinforcing rib structures are respectively embedded inside.
[0040] In the practical application of this embodiment, the transmission device includes a detachable gear set and a pulley. Such a structural design can adapt to the installation requirements of different window types.
[0041] In the practical application of this embodiment, the first latch assembly 3 and the second latch assembly 4 are electromagnetically driven and automatically locked when powered off.
[0042] In the practical application of this embodiment, the power management module is used for solar power supply with priority, and automatically switches to the lithium battery 702 after power failure.
[0043] In the practical application of this embodiment, both the first window sash 1 and the second window sash 2 adopt double-layer insulating glass.
[0044] In the practical application of this embodiment, the infrared proximity sensor 501 of the safety sensor group is arranged at the edge of the window frame, and the vibration sensor 502 is embedded inside the window sash.
[0045] In the practical application of this embodiment, a pressure controller 301 is embedded in the side window frame 7, and the pressure controller 301 adjusts the air pressure in the closed space to balance the wind pressure difference.
[0046] The working principle of the present invention is as follows:
[0047] The sensor module 9 collects data in real time. The temperature and humidity sensor model is SHT30: monitors the indoor and outdoor temperature difference, and triggers ventilation when the indoor CO2 concentration > 800 ppm; the rain sensor identifies raindrops through the infrared reflection intensity (the sensitivity threshold can be set to 0.1 mm rainfall).
[0048] The main control chip model is ESP32. The stepping motor 12 receives the PWM signal to drive the gear set to push the sliding roller 8 and the window frame assembly. In the casement window mode, the output torque ≥ 5 N·m (pushing the 50 kg window sash assembly); when the window sash assembly is closed, it is electrified and adsorbed (locking force > 200 N), and automatically mechanically locked when powered off.
[0049] Solar power supply: The solar panel 701 is a monocrystalline silicon panel. The monocrystalline silicon panel is integrated on the outside of the top window frame 5 (conversion efficiency 22%); the daily power generation ≥ 100 Wh; Lithium battery pack: 12V / 20Ah ternary lithium battery, supporting 72-hour battery life, and the DC-DC converter achieves a charge and discharge efficiency > 93%; when the mains power is cut off, it switches to the lithium battery within 20 ms, with seamless connection.
[0050] The technical effects are as follows
[0051]
[0052] The specific usage process is as follows:
[0053] Initialization settings: The user calibrates the sensor (such as setting the PM2.5 safety threshold to 35 μg / m 3 )
[0054] Automatic operation mode: The temperature and humidity sensor detects 28°C + 60% humidity indoors → The main control chip starts to open the window (opening angle 50%) → The stepping motor 12 drives the window sash to the specified position;
[0055] Emergency response process: The rain sensor alarms → The main control chip closes the window within 8 seconds → The vibration sensor detects hail impact → Pushes an alarm.
[0056] Anti-theft mechanism: In the armed mode, the vibration sensor detects vibrations with a frequency above 5 Hz → Triggers an alarm.
[0057] Implementation mode
[0058] Embodiment 1: Application of high-rise buildings against wind pressure
[0059] The interior of the carbon fiber window frame is provided with a "cross-shaped" titanium alloy reinforcing rib (compressive strength ≥ 500 MPa); the first locking component 3 and the second locking component 4 form an 8-point locking at the four corners of the window sash (each point can bear a weight of 80 kg); after verification, the displacement of the window sash is < 0.1 mm under a 10-level strong wind, and there is no whistling noise.
[0060] Embodiment 2: Smart Home Energy Linkage
[0061] The same parts of this embodiment and Embodiment 1 will not be described in detail. The differences are as follows: Through device collaboration, the window is interconnected with the home photovoltaic system, and the window will automatically open for ventilation when there is a surplus of solar energy (reducing air conditioning energy consumption). An STM32 chip is set to analyze the peak and valley of the electricity price. It is charged with mains electricity during low-price periods and switched to solar power during peak periods. After testing, the air conditioning energy consumption is reduced by 30% in summer.
[0062] Embodiment 3: Rainstorm Self-Protection System
[0063] The same parts of this embodiment and Embodiment 1 will not be described in detail. The differences are as follows: Through sensor linkage, the rain sensor detects rainfall → the temperature and humidity sensor detects the current humidity → the motor closes the window at a speed of 0.4 m / s; an anti-mistrigger mechanism is set: the action is only executed when both "rainfall lasts for 10 seconds + humidity > 90%" are met.
[0064] The above embodiments only exemplarily illustrate the principles and effects of the present invention, rather than limiting the present invention. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or changes completed by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present invention should still be covered by the claims of the present invention.
Claims
1. An intelligent remote control switch high-performance window system, characterized in that: It includes a sash component, a window frame component and a latch component. The sash component includes a first sash (1) and a second sash (2). The window frame component includes a top window frame (5), a bottom window frame (6) and side window frames (7). There is a sliding track between the sash component and the window frame component. Both the bottom of the first sash (1) and the second sash (2) are provided with sliding rollers (8) and stepper motors (12). The first sash (1) and the second sash (2) are respectively connected to the top window frame (5), the bottom window frame (6) and the side window frames (7) through the sliding track and the sliding rollers (8). The stepper motor (12) and the sliding roller (8) are connected by a transmission structure to the first sash (1) and the second sash (2). The stepper motor (12) is used to drive the sliding roller (8). The latch component includes a first latch component (3) and a second latch component (4) which are oppositely arranged. The first latch component (3) is fixedly arranged on the side wall of the first sash (1). The second latch component (4) is fixedly arranged on the side wall of the second sash (2). The latch component is used to achieve multi-point locking when the sash component is closed. It also includes a sensor module (9) and a control unit (11). The sensor module (9) and the control unit (11) are embedded in the middle frame (10). The sensor module (9) includes an environmental sensor group and a safety sensor group. The sensor module (9) is communicatively connected to the control unit (11) and the stepper motor (12).
2. The high-performance window system of an intelligent remote control switch according to claim 1, wherein: The environmental sensor group includes a temperature and humidity sensor, a rain sensor and a PM2.5 sensor. The safety sensor group includes an infrared proximity sensor and a vibration sensor.
3. The high-performance window system of an intelligent remote control switch according to claim 1, wherein: The control unit (11) includes a main control chip and a power management module. The main control chip receives the data of the sensor module (9) and controls the operation of the stepper motor (12). The power management module includes a solar panel (701) and a lithium battery pack. The solar panel (701) is embedded outside the top window frame (5). The solar panel (701) is connected to the lithium battery pack through a DC-DC converter.
4. The high-performance window system of an intelligent remote control switch according to claim 1, characterized in that: The top window frame (5), the bottom window frame (6) and the side window frames (7) are made of carbon fiber or aluminum alloy materials, and reinforcing rib structures are respectively embedded inside.
5. An intelligent remote control switch high-performance window system according to claim 2, characterized in that: The transmission device includes a detachable gear set and a pulley.
6. The high-performance window system of an intelligent remote control switch according to claim 1, characterized in that: The first latch component (3) and the second latch component (4) are electromagnetic drive type and are automatically locked when powered off.
7. An intelligent remote control switch high-performance window system according to claim 3, characterized in that: The power management module is used for solar power supply with priority and automatically switches to the lithium battery (702) after power failure.
8. An intelligent remote control switch high-performance window system according to claim 1, characterized in that: Both the first sash (1) and the second sash (2) adopt double-layer insulating glass.
9. An intelligent remote control switch high-performance window system according to claim 2, characterized in that: The infrared proximity sensor (501) of the safety sensor group is arranged at the edge of the window frame, and the vibration sensor (502) is embedded inside the sash.
10. The high-performance window system of an intelligent remote control switch according to claim 1, characterized in that: A pressure controller (301) is embedded in the side window frame (7). The pressure controller (301) adjusts the air pressure in the closed space to balance the wind pressure difference.
Citation Information
Patent Citations
Intelligent outward turning system window with opening and closing angle remotely controlled
CN116163622A