AN AIR CONDITIONING AND CONTROL METHOD
Patent Information
- Application Number
- TR202412449
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2026-06-22
Smart Images

Figure 00000011_0000 
Figure 00000011_0001
Abstract
Description
1 TARIFF AN AIR CONDITIONING AND CONTROL METHOD This invention allows for the automatic control of airflow to the user via remote control. It is related to an air conditioner that ensures proper airflow. 5 Ensuring the user stays cool effectively in both hot and cold weather. air is blown directly from the indoor unit into the room to heat it. It is preferable that it be accurate to the user. User location When you change it, the air is blown back towards you horizontally and vertically 10 The wings on the axes need to be moved to a specific position. The technique... In its known state, the camera uses a multi-pixel thermal sensor to achieve this. Image processing and modeling using sensors such as radar. Using these techniques, the person and their position in the environment are detected, and from the indoor unit... The blown air is automatically directed towards the user. 15 is provided. Chinese Patent No. CN107525237, regarding the prior art. In the application, it is stated whether or not there is a user in the environment to be air-conditioned. An air conditioner and 20 that use infrared sensors and radar to be detected. The control method is explained. Another document included in the prior art is... In International Patent Application No. WO2021057527, the person in the environment the number and the person's characteristics to be determined, and the ambient temperature and 25 containing an infrared sensor that allows control of the air blowing speed. An air conditioning and control method is described. Another document included in the prior art is JP2902611. In Japanese Patent Application No. 30, a human detection sensor is used to detect 30 people. horizontal and vertical louvers are controlled to direct the air towards the user. A method of air conditioning and control is described. 2 Japanese Patent No. JP6017207, concerning the prior art. In the application, it was stated that the user's location would be determined by a camera. a type of air conditioning and control method where air is blown in that direction 5 It is explained. The system detects people with a camera and then directs the airflow towards that location. Privacy, privacy violations, and similar issues arise in applications. It is emerging. In thermal, infrared and similar imaging methods, however, 10 Various problems arise as a result of misinterpreting the objectives. The purpose of this invention is to provide a remote control for controlling the direction of airflow. It is the implementation of an air conditioner that includes a remote control. The first step taken to achieve the purpose of this invention, and the steps taken to fulfill this request... The air conditioning system defined in the connected requests consists of an outdoor unit, an indoor unit, and a unit located in the indoor unit. The area has at least two sensors, located on the indoor unit and horizontally across which air is blown into the environment. and at least one steering wheel with vertically moving wings, a remote control that establishes wireless communication between the indoor unit and the remote control, 20 by at least one transmitter located on the remote control The signals sent are detected by the sensors, and the intensity of the signals is determined. The difference between them allows the location of the remote control to be determined and The router is moving towards the area where the remote control is located. by directing the air 25 degrees towards the location of the remote control. It includes a control unit that enables the blowing of air. In the application of the invention, the control unit is the transmitter on the remote control. The time it takes for signals sent by the aircraft to reach the sensors is called flight time. or calculating the phase difference and determining the position of the remote control 30 is being done. 3 In one application of the invention, the air conditioner shall have a primary one, preferably on the right side. The sensor has a second sensor on its left side. In the application of the invention, the first and second signals produced by the transmitter Depending on the magnitude of the phase difference between the times the sensors reach the target, right, 5 By turning the diverter towards the left and center areas, the air is directed towards the user. Blowing is ensured. In this application of the invention, the transmitter and the first The distance between the second sensor determines how the signals from the transmitter affect the first and second sensors. the time to reach the second sensor and the time between the first and second sensors Using the "triangulation method" created based on distance data, transmitter 10 the time it takes for the signals generated by the first sensor to reach the second sensor The phase difference between them is calculated. In another application of the invention, the air conditioner is connected to the remote control, transmitter, It is activated by a button on the remote control and the first and 15 This ensures that a signal is sent to the second sensor. When this button is pressed... air conditioners that automatically direct airflow towards the user. It switches to operating mode. With this invention, the signals sent from the transmitter on the remote control are 20 The intensity is detected by the first and second sensors, and the difference in signal intensities is determined. the difference is the position of the remote control and therefore the user. is determined. The magnitude of the signal between the first sensor and the transmitter, larger than the signal magnitude between the second sensor and transmitter when this happens, the remote control with the transmitter on it is connected to the air conditioner 25 It is determined that it is further to the right, depending on the direction it is looking. The magnitude of the signal between the first sensor and transmitter determines the signal between the second sensor and... the magnitude of the signal between the transmitter and receiver is equal to or determined by the manufacturer When it is within a difference value, the remote 30 where the transmitter is located The remote control is located on the opposite side of the air conditioner. 4 The magnitude of the signal between the first sensor and transmitter determines the signal between the second sensor and... when the magnitude of the signal between the transmitter and receiver is smaller than the magnitude of the signal on it depending on the direction the remote control, where the transmitter is located, is pointing towards the air conditioner. It is detected to be on the left. The signals are received by the first and second sensors. The value of the difference in the magnitude of the incoming signal is determined for different levels, right, 5 The number of regions designated as left and center is being increased. In the application of the invention, after the position of the remote control is determined... Then, by activating the steering mechanism, the wings are controlled remotely. Therefore, the air is directed towards the user so that it goes directly to the user's 10 It is made to blow into the area where it is located. This invention allows the user to operate without the need for cameras or similar sensors. remotely, without using personal information such as images, voice, etc. By determining the position of the commander and consequently the user, the air is 15 It is made to blow in that direction. This invention was created in the form of an air conditioner attached to the device in order to achieve its purpose. as shown, from these figures; Figure 1 – Schematic view of an air conditioner and its remote control. The parts in the figures are individually numbered, and these numbers... The answer is given below. 1. Air Conditioner 2. Indoor unit 3. Remote control 4. Transmitter 5. First sensor 30 6. Second sensor 7. Router 8. Control unit 9. Key Air conditioner (1), one outdoor unit, one indoor unit (2), at least one first located in the indoor unit (2) sensor (5) and at least one second sensor (6) located in the indoor unit (2) and emitting into the environment 5 It has vanes that move horizontally and vertically as air is blown in. There is a wireless communication between at least one router (7) and the indoor unit (2). a remote control (3), located on the remote control (3) with a small transmitter (4) and the first and second signals sent by transmitter (4) Detected by sensors (5 and 6), the difference in signal intensity is 10 from the difference, the location of the remote control (3) and the router (7) by moving the remote control towards the area where (3) is located, blowing air towards the location of the remote control (3) It includes a control unit (8) that provides (Figure 1). In the application of the invention, the control unit (8) is on the remote control (3). The signals sent by the transmitter (4) to the first and second sensors (5 and 6) arrival time, time of flight (TOF) or phase difference calculations and the position of the remote control (3) are determined. In one application of the invention, the air conditioner (1) has a separate unit on each side of the indoor unit (2). It contains two first and two second sensors (5 and 6). In this application of the invention, the signal emitted from the transmitter (4) is transmitted to the first sensor. (5) from the time to reach the second sensor (6) the time to reach the first 25 distance between sensor (5) and transmitter (4) and second sensor (6) and transmitter (4) the distance between the first sensor (5) and the transmitter (4) is calculated and the distance between the first sensor (5) and the transmitter (4) The distance of the second sensor (6) is greater than the distance of the transmitter (4). the remote control (3) on which the transmitter (4) is located, therefore It was decided that the user was on the first sensor side (5), 30 by turning the router (7) towards that side, so that the air is directed toward the user It is ensured that it is blown into. 6 In another application of the invention, the first sensor (5) is connected to the transmitter (4). if the distance of the second sensor (6) is less than the distance of the transmitter (4) the remote control (3) on which the transmitter (4) is located, therefore It was decided that the user was on the second sensor side (6), 5 by turning the router (7) towards that side, so that the air is directed toward the user It is ensured that it is blown into. In another application of the invention, the first sensor (5) is connected to the transmitter (4). the distance is equal to the distance of the second sensor (6) to the transmitter (4) or 10 If approximately equal, the transmitter (4) and therefore the user's first and second It was decided that the sensor was located in the area corresponding to the middle of (5 and 6), by turning the router (7) towards that side, so that the air is directed toward the user It is ensured that it is blown into. In the application of the invention, the control unit (8) is produced by the transmitter (4). between the times when the signals reach the first and second sensors (5 and 6) Depending on the magnitude of the phase difference, the router is directed to the right, left and middle regions (7) By rotating the device, the air is directed towards the user. This invention... In the application, the 20 between the transmitter (4) and the first and second sensors (5 and 6) distance, signals from the transmitter (4) to the first and second sensors (5 and 6) arrival times and distance between the first and second sensors (5 and 6) The transmitter (4) was created by the “triangulation method” based on the data. signals produced by the first and second sensors (5 and 6) reaching The phase difference between their durations is calculated. 25 In another application of the invention, the air conditioner (1) is on the remote control (3), activating the transmitter (4) and sending a signal to the first and second sensors (5 and 6) It contains a key (9) that enables sending. When this key (9) is pressed The transmitter (4) produces a signal. Then, as explained above, the first and 30 signals sent from transmitter (4) by second sensor (5 and 6) Calculations made taking into account the perception time result in remote... 7 the transmitter (4) on the remote control (3) and therefore the user in the environment The location is determined and the air is directed towards the user. Another application of the invention is in IR, ultrawideband (UWB). (UWB), ultrasonic, BLE (Bluetooth Low Energy), WiFi, RFID or magnetic 5 Field signal processing methods are used. In a sample application of the invention, the right side of the indoor unit (2) of the air conditioner (1) and On the left are the first and second sensors (5 and 6) in order. From a distance The intensity of the signals sent from the transmitter (4) on the remote control (3) is the first and 10 Detected by the second sensor (5 and 6), the difference between the intensity of the signals the position of the remote control (3) and therefore the user The signal between the first sensor (5) and transmitter (4) is determined. its magnitude is the magnitude of the signal between the second sensor (6) and the transmitter (4) when it is larger, remote 15 where the transmitter (4) is located. It was determined that the remote control (3) was to the right of the direction it was looking at the air conditioner (1). is being done. The magnitude of the signal between the first sensor (5) and the transmitter (4) is the magnitude of the signal between the second sensor. (6) and transmitter (4) are equal to the magnitude of the signal between them or 20 as determined by the manufacturer. when within a specified difference value, the transmitter (4) the remote control (3) is located opposite the air conditioner (1) It is being detected. The magnitude of the signal between the first sensor (5) and the transmitter (4) is 25 on the second sensor. when the magnitude of the signal between (6) and transmitter (4) is smaller than the magnitude of the signal between transmitter (4) the remote control (3) on which the transmitter (4) is located, to the air conditioner (1) It is determined that it is further to the left, depending on the direction it is looking. The first signal... and the value of the difference in signal magnitude reaching the second sensor (5 and 6) is different. The number of regions defined as right, left, and center, determined for each level, is 30. It can be increased. 8 After the position of the remote control (3) is determined in the application of the invention Then, by activating the router (7), the wings are controlled by the remote control (3) Therefore, the air is directed towards the user so that it blows directly onto the user. It is made to blow into the area where it is located. This invention allows the user to... without the use of cameras or similar sensors. remotely, without using personal information such as images, voice, etc. by determining the position of the commander (3) and consequently the user The air is directed to blow in that direction.
Claims
9 REQUESTS 1. One outdoor unit, one indoor unit (2), at least one first located in the indoor unit (2) sensor (5) and at least one second sensor (6) located in the indoor unit (2) and 5 moving horizontally and vertically as air is blown into the environment at least one router (7) with wings between it and the indoor unit (2), remote control (3) that establishes wireless communication with at least one transmitter (4) located on the remote control (3) and transmitter (4) signals sent by the first and second sensors (5 and 6) detected by, the difference in the intensity of the signals from a distance of 10 the location of the controller (3) and the router (7) move towards the area where the remote control (3) is located by being made to move the air to the position of the remote control (3) characterized by a control unit (8) which ensures accurate blowing an air conditioner (1). 15 2. Sent by the transmitter (4) on the remote control (3) The time it takes for signals to reach the first and second sensors (5 and 6), flight by calculating the duration or phase difference of the remote control (3) control unit (8) that enables the determination of its location and 20 An air conditioner as described in Claim 1 (1).
3. One first and second sensor (5) on each side of the indoor unit (2) an air conditioner as in Claim 1, characterized by (1) and 6).
4. The signals produced by the transmitter (4) are sent to the first and second sensors (5 and 6) right, according to the magnitude of the phase difference between the arrival times, By turning the directional guide (7) to the left and middle regions, the air with the control unit (8) that enables the air to blow towards the user An air conditioner as described in Claim 1 (1). 30 5. On the remote control (3), activate the transmitter (4) and the first and A button (9) that enables sending a signal to the second sensor (5 and 6) An air conditioner like the one in Claim 1, characterized by (1).
6. An air conditioner (1) as in any of the above requirements is suitable for a 5 It is a control method whereby the signal emitted from the transmitter (4) is sent to the first sensor. (5) from the time to reach the second sensor (6) from the time to reach the first sensor the distance between sensor (5) and transmitter (4) and the second sensor (6) and Calculation of the distance between the transmitter (4) and the first sensor (5) distance to the transmitter (4) second sensor (6) distance to the transmitter (4) 10 If the distance is greater than the transmitter (4) on the first sensor (5) side It was decided that the router (7) should be turned in that direction, a control that includes steps to blow air towards the user method.
7. The distance of the first sensor (5) to the transmitter (4), the distance of the second sensor (6) If the distance to the transmitter (4) is less than the distance to the transmitter (4) the remote control (3) and therefore the user's second It was decided that the sensor (6) was on the side of the router (7). by turning it to one side, the air is blown towards the user. 20 A control method like the one in Claim 6, which includes the steps.
8. The distance of the first sensor (5) to the transmitter (4), the distance of the second sensor (6) if it is equal to or approximately equal to the distance to the transmitter (4) 25 It was decided that the router (7) was in that area. by turning it, the steps involved in blowing air towards the user A control method like the one in claim 6.