Intelligent vehicle washing monitoring system
Through the intelligent car wash monitoring system, data synchronization is achieved using cloud servers and wireless transmission communication protocols, the existing car wash system is solved for the cleaning dissatisfaction caused by misjudgment of vehicle cleanliness, and the consistency of remote monitoring and service information is achieved.
Patent Information
- Application Number
- PCT/CN2023/140097
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-20
- Publication Date
- 2025-06-26
AI Technical Summary
During the operation, existing car washing systems are prone to mismatching the cleanliness of the vehicle due to misjudgment of the vehicle's cleanliness, resulting in poor cleanliness of the vehicle's appearance after washing, which in turn causes disputes between merchants and customers.
Design an intelligent car wash monitoring system, including a cloud server unit, a remote monitoring unit, a verification unit, a verification unit and a car wash unit, and realize the synchronous transmission of data and signals through wireless transmission communication protocols to ensure the consistency of service information between the client and the management end.
Remote monitoring and data synchronization are realized, the service information consistency between the client and the management side is improved, and the problem of dissatisfaction with the car wash caused by misjudgment of cleanliness is avoided.
Smart Images

Figure CN2023140097_26062025_PF_FP_ABST
Abstract
Description
Intelligent car wash monitoring system Technical Field
[0001] The present invention relates to the field of monitoring technology, and in particular to a car wash monitoring system. Background Art
[0002] Currently, car wash systems are generally set up in gas stations or in open areas near them. After a predetermined matching program is set through a central control device, the system begins to perform processes such as water washing, foam washing, water wax washing and air drying on vehicles in the predetermined parking position or on the track, truly demonstrating the high efficiency and convenience of the existing car wash system.
[0003] However, the aforementioned car wash systems are still mostly based on manual operation of the system's central control equipment during actual operation, which often causes the operator to misjudge the cleanliness of the vehicle's exterior before cleaning, and then set incompatible related programs and perform the car wash process. As a result, after the vehicle has gone through the car wash process, the cleanliness of some parts of the vehicle's exterior is still not complete, which indirectly leads to unnecessary disputes between merchants and customers.
[0004] Therefore, how to effectively overcome the problems existing in the conventional car washing system as mentioned above is indeed the purpose of the present invention to be optimized and improved.
[0005] Summary of the Invention
[0006] In order to improve the problems existing in the prior art, the present invention provides an intelligent car wash monitoring system that is suitable for installation and application and can be electrically controlled in existing car wash systems. This system mainly uses a cloud server unit contained therein to transmit information wirelessly according to the wireless transmission communication protocol. This technical feature allows the client and the management end to synchronously obtain the same information content such as relevant data or signals. Therefore, in addition to effectively achieving the effect of remote monitoring, it can also significantly improve the consistency of service information between the client and the management end.
[0007] To achieve the above-mentioned objectives, the present invention provides an intelligent car wash monitoring system, which includes a tunnel-shaped car wash unit, a remote monitoring unit, a verification unit, an inspection unit and a cloud server unit; the cloud server unit wirelessly matches and electrically controls the car wash unit, the remote monitoring unit, the verification unit and the inspection unit according to a wireless transmission communication protocol (including but not limited to a Wi-Fi communication protocol, an NFC communication protocol or a base station), and the remote monitoring unit electrically controls the car wash unit, the verification unit and the inspection unit according to the wireless transmission communication protocol (including but not limited to a Wi-Fi communication protocol, an NFC communication protocol or a base station), wherein the verification unit and the inspection unit are respectively arranged at two opposite ports of the tunnel-shaped car wash unit.
[0008] The intelligent car wash monitoring system disclosed in the present invention uses the cloud server unit to transmit data or signals to the remote monitoring unit, the verification unit and the inspection unit respectively by wireless communication according to the wireless transmission communication protocol, and then displays them respectively through the remote monitoring unit, the verification unit or the inspection unit. At this time, the management end holding the remote monitoring unit can obtain relevant data or signals, thereby achieving the goal of allowing the client and the management end to simultaneously obtain the same information content such as relevant data or signals. Therefore, in addition to effectively achieving the effect of remote monitoring, it can also significantly improve the consistency of service information between the client and the management end. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] FIG1 is a perspective schematic diagram of a preferred embodiment of the present invention, mainly disclosing an intelligent car wash monitoring system suitable for installation and application and electrically controlled in an existing car wash system, and the status of a vehicle before washing.
[0010] FIG2 is similar to FIG1 , mainly showing the state of the vehicle being cleaned.
[0011] FIG3 is similar to FIG2 , and mainly shows the state of the vehicle after cleaning.
[0012] FIG4 is a schematic diagram of the overall system architecture of FIG1 .
[0013] FIG5 is a schematic diagram of the system architecture of another intelligent car wash monitoring system suitable for installation and application and electrically controllable in an existing car wash system according to another preferred embodiment of the present invention.
[0014] Explanation of symbols: 1, 1A: Intelligent car wash monitoring system 10, 10A: Car wash unit 11: Microprocessor module 13, 13A: Transmission module 15: Frame 16: Area to be verified 17: Cleaning device 171: Spray arm 173: Nozzle 18: Area to be inspected 20, 20A: Remote monitoring unit 21: Microprocessor module 23, 23A: Transmission module 25: Remote monitoring interactive interface display module 30, 30A: Verification unit 31: Verification camera module 33, 33A: Transmission module 35: Verification interactive interface display module 40, 40A: Inspection unit 41: Inspection camera module 43, 43A: Transmission module 45: Inspection interactive interface display module 50, 50A: Cloud server unit 51: Cloud microprocessor module 53, 53A: Transmission module 55: Cloud database module 60A: Base station 90: Vehicle DETAILED DESCRIPTION
[0015] The applicant first explains that throughout the entire specification, including the embodiments introduced below and the claims of the patent application, the directional terms are based on the directions of the various figures listed in the [Simple Description of Figures] of this case. Secondly, in the embodiments and figures to be introduced below, the same component numbers represent the same or similar components or their structural features. Moreover, the detailed structure, characteristics, assembly or use, manufacturing and other methods of the present invention will be described in the subsequent detailed description of the implementation method. However, those with ordinary knowledge in the field of the present invention should understand that such detailed descriptions and the embodiments listed in the present invention are only used to support the explanation of how the present invention can be implemented, and are not used to limit the scope of the patent application of the present invention.
[0016] Please refer to Figures 1 to 4, which illustrate an intelligent car wash monitoring system 1 suitable for installation and application in an existing car wash system and electrically controlled according to a preferred embodiment of the present invention. The system comprises a tunnel-shaped car wash unit 10, a remote monitoring unit 20 (e.g., a smartphone or a smart tablet), a verification unit 30 (e.g., a smart tablet), a testing unit 40 (e.g., a smart tablet), and a cloud server unit 50 (e.g., a smart tablet or a resident smart cloud server host). The remote monitoring unit 20 is electrically connected to the car wash unit 10, the verification unit 30, the inspection unit 40 and the cloud server unit 50, respectively, and the remote monitoring unit 20 electrically controls the car wash unit 10, the verification unit 30 and the inspection unit 40, respectively. In addition, the remote monitoring unit 20 wirelessly matches the car wash unit 10, the verification unit 30, the inspection unit 40 and the cloud server unit 50 according to a wireless transmission communication protocol (for example, a Wi-Fi communication protocol or an NFC communication protocol) (this is a network configuration).
[0017] 1 and 4 , the car wash unit 10 includes a microprocessor module 11, a transmission module 13, an elongated frame 15 in a tunnel shape, and a cleaning device 17 pivotally mounted on the top of the elongated frame 15. The microprocessor module 11 is electrically connected to and electrically controls the transmission module 13 and the cleaning device 17, so that the cleaning device 17 can exhibit reciprocating sliding motion based on the long side of the top of the elongated frame 15 toward the two opposite short sides. The cleaning device 17 is pivotally mounted with a spray arm 171 extending a predetermined length toward the bottom of the elongated frame 15. The spray arm 171 is provided with a plurality of nozzles 173 arranged at intervals and can spray liquid (e.g., water, cleaning foam, or water wax, etc.) toward one side of a vehicle 90 to be washed in the frame 15. Or blowing and air-drying, etc., preferably, the spray arm 171 of the cleaning device 17 can rotate around the body of the vehicle 90 to be cleaned, and at the same time, the nozzles 173 of the spray arm 171 can spray liquid (for example, clean water, cleaning foam or water wax and other liquids) or blow and air-drying, etc. in the direction of the body of the vehicle 90 to be cleaned in the frame 15, and this is the existing technology, so it will not be elaborated here; in addition, the verification unit 30 and the inspection unit 40 are respectively arranged at the two opposite ends of the long axis of the tunnel-type car washing unit 10, preferably, the verification unit 30 is arranged near a preset area to be verified 16 planned at one end of the car washing unit 10, and the inspection unit 40 can be arranged near a preset area to be inspected 18 planned at the other opposite end of the car washing unit 10. It is worth mentioning that the transmission module 13 of the car wash unit 10 can selectively transmit data or signals based on the wireless transmission communication protocol according to the actual situation, including but not limited to the wireless transmission communication protocol such as Wi-Fi communication protocol or NFC communication protocol (Near Field Communication) as the function of transmitting data or signals. In addition, the aforementioned data is basically composed of text, voice, multimedia video or a combination thereof.
[0018] Continuing with the above, please refer to Figures 1 to 4 . The remote monitoring unit 20 includes a microprocessor module 21, a transmission module 23, and a remote monitoring interactive interface display module 25. The microprocessor module 21 is electrically connected to and controls the transmission module 23 and the remote monitoring interactive interface display module 25. It is worth noting that the transmission module 23 of the remote monitoring unit 20 can selectively transmit data or signals based on a wireless transmission communication protocol, including but not limited to Wi-Fi or NFC (Near Field Communication) protocols, depending on the actual environment. Furthermore, the aforementioned data is generally composed of text, voice, multimedia video, or a combination thereof. It is worth mentioning that the remote monitoring unit 20 can electrically match and electrically control the transmission module 13 of the car wash unit 10 (this is the network configuration) through the transmission module 23 and according to the wireless transmission communication protocol (for example, the Wi-Fi communication protocol or the NFC communication protocol) in a wireless transmission manner, thereby achieving the effect of remote wireless control of the cleaning device 17 of the car wash unit 10.
[0019] 1 to 4 , the verification unit 30 includes four verification camera modules 31, a transmission module 33, and a verification interactive interface display module 35, and the transmission module 33 is electrically connected to the verification camera module 31 and the verification interactive interface display module 35, respectively. The transmission module 33 of the verification unit 30 may selectively transmit data or signals based on the wireless transmission communication protocol depending on the actual field, including but not limited to the Wi-Fi communication protocol or the NFC communication protocol (Near Field Communication) as the function of transmitting data or signals. In addition, the aforementioned data is basically composed of text, voice, multimedia video, or a combination thereof. It is worth mentioning that the remote monitoring unit 20 can electrically match and electrically control the transmission module 33 of the verification unit 30 (this is the network configuration) through the transmission module 23 and according to the wireless transmission communication protocol (for example, the Wi-Fi communication protocol or the NFC communication protocol) in a wireless transmission manner, thereby achieving the function of remote wireless control of the verification camera module 31 and the verification interactive interface display module 35 of the verification unit 30; of course, the number of the verification camera module 31 can also be set to only one depending on the actual field.
[0020] As mentioned above, please refer to Figures 1 to 4 again. The inspection unit 40 includes an inspection camera module 41, a transmission module 43 and an inspection interactive interface display module 45, and the transmission module 43 is electrically connected to the inspection camera module 41 and the inspection interactive interface display module 45 respectively; and the transmission module 43 of the inspection unit 40 may be selectively based on the wireless transmission communication protocol as the transmission of data or signals depending on the actual field, which includes but is not limited to the function of transmitting data or signals by wireless transmission communication protocols such as Wi-Fi communication protocol or NFC communication protocol (Near Field Communication). In addition, the data mentioned above is basically composed of text, voice, multimedia video or a combination thereof. It is worth mentioning that the remote monitoring unit 20 can electrically match and electrically control the transmission module 43 of the inspection unit 40 (this is the network configuration) through the transmission module 23 and according to the wireless transmission communication protocol (for example, the Wi-Fi communication protocol or the NFC communication protocol) in a wireless transmission manner, thereby achieving the function of remote wireless control of the inspection camera module 41 and the inspection interactive interface display module 45 of the inspection unit 40; of course, the number of the inspection camera module 41 can also be set to only one depending on the actual field.
[0021] 1 to 4 , the cloud server unit 50 includes a cloud microprocessor module 51, a transmission module 53, and a cloud database module 55. The cloud microprocessor module 51 is electrically connected to the transmission module 53 and the cloud database module 55, and the cloud microprocessor module 51 has a first calculation logic 511, a second calculation logic 512, a third calculation logic 513, and a fourth calculation logic 514. The first calculation logic 511 is basically used to calculate the operation of the first operation logic 511. It is composed of analyzing and operating the image recognition calculation logic and generating a service menu information; wherein, the second calculation logic 512 is basically used to analyze and operate the first calculation logic and generate an updated basic information; wherein, the third calculation logic 513 is basically used to analyze and operate the first calculation logic and generate an expected car wash signal; wherein, the fourth calculation logic 514 is basically used to analyze and operate the first calculation logic 511, the second calculation logic 512 and the third calculation logic 513 and generate a feedback menu information. The transmission module 53 of the cloud server unit 50 may selectively transmit data or signals based on the wireless transmission communication protocol, depending on the actual environment, including but not limited to wireless transmission communication protocols such as Wi-Fi communication protocol or NFC communication protocol (Near Field Communication). In addition, the aforementioned data is basically composed of text, voice, multimedia video, or a combination thereof, and may be stored in the cloud database module 55 of the cloud server unit 50. It is worth mentioning that the cloud server unit 50 uses the transmission module 53 to electrically match and electrically control the transmission module 23 of the remote monitoring unit 20 in a wireless transmission manner according to the wireless transmission communication protocol (i.e., for example, Wi-Fi communication protocol or NFC communication protocol), thereby achieving the function of remotely electrically controlling the microprocessor module 21 of the remote monitoring unit 20.
[0022] The above are the technical features of the intelligent car wash monitoring system 1 and its various sub-components disclosed in the preferred embodiment of the present invention. The following will further disclose the main operations and intended effects achieved by installing and applying the intelligent car wash monitoring system 1 disclosed in the preferred embodiment of the present invention and electrically controlling it in an existing car wash system:
[0023] First, please refer to Figures 1 and 4 again. First, when the vehicle 90 to be washed travels to the verification area 16 of the tunnel-shaped vehicle washing unit 10 of the intelligent vehicle washing monitoring system 1, the verification camera module 31 of the verification unit 30 close to one of the ports of the vehicle washing unit 10 first takes a picture of the basic data of the vehicle 90 to be washed (for example, license plate, vehicle model, vehicle length, vehicle width, vehicle height or other data sufficient to identify the vehicle 90 to be washed), and then transmits the picture to the transmission module 33 of the verification unit 30 according to the wireless transmission communication protocol (for example, Wi-Fi communication protocol). The basic data of the vehicle to be washed 90 is transmitted to the transmission module 53 of the cloud server unit 50 by wireless transmission (using a wireless communication protocol or NFC communication protocol). At this time, when the cloud microprocessor module 51 of the cloud server unit 50 executes a technical feature of a first calculation logic 511, the first calculation logic 511 of the cloud microprocessor module 51 is able to perform a logical operation based on the initial customer data stored in the cloud database module 55 of the cloud server unit 50 to generate a service menu information (including but not limited to a car wash method and a corresponding price menu). , customer basic data addition / update menu, vehicle basic data addition / update menu, recent promotion menu and other service menu information), and again transmit the service menu information to the transmission module 23 of the remote monitoring unit 20 and the transmission module 33 of the verification unit 30 by wireless communication transmission according to the wireless transmission communication protocol through the transmission module 53 of the cloud server unit 50, and then display it through the remote monitoring interactive interface display module 25 of the remote monitoring unit 20 and the verification interactive interface display module 35 of the verification unit 30 respectively. At this time, it will make way The client of the vehicle 90 to be washed in the verification area 16 of the car wash unit 10 can obtain the service menu information through the verification interactive interface display module 35 of the verification unit 30. At the same time, the management terminal holding the remote monitoring unit 20 can also obtain the service menu information through the remote monitoring interactive interface display module 25 of the remote monitoring unit 20, thereby achieving the goal of allowing the client and the management terminal to simultaneously obtain the same information content of the service menu information. Therefore, in addition to effectively achieving the function of remote monitoring, the consistency of service information between the client and the management terminal can be significantly improved.
[0024] Secondly, please refer to Figures 1, 2 and 4 again. As mentioned above, when the client of the vehicle to be washed 90 located in the verification area 16 of the car wash unit 10 directly selects the service menu information displayed in the verification interactive interface display module 35 of the verification unit 30, and directly confirms that the service item to be performed is the customer basic data addition / update or the vehicle basic data addition / update service item, then the verification unit 30 transmits the service item to the transmission module 53 of the cloud server unit 50 in a wireless transmission manner according to the wireless transmission communication protocol (i.e., for example, the Wi-Fi communication protocol or the NFC communication protocol). At this time, the cloud microprocessor module 51 of the cloud server unit 50 executes a second calculation logic 512 of this technical feature. In this way, the second calculation logic 512 of the cloud microprocessor module 51 is able to perform a logical operation based on the initial customer data stored in the cloud database module 55 of the cloud server unit 50 to generate an updated basic information (including but not limited to the customer basic data addition / update or vehicle basic data addition / update). The updated basic information (e.g., basic data addition / update) is then transmitted again by the transmission module 53 of the cloud server unit 50 to the transmission module 23 of the remote monitoring unit 20 and the transmission module 33 of the verification unit 30 by wireless communication according to the wireless transmission communication protocol. The updated basic information is then displayed by the remote monitoring interactive interface display module 25 of the remote monitoring unit 20 and the verification interactive interface display module 35 of the verification unit 30, respectively. At this point, the client of the vehicle 90 to be washed in the verification area 16 of the car wash unit 10 can learn the updated basic information through the verification interactive interface display module 35 of the verification unit 30. At the same time, the management terminal holding the remote monitoring unit 20 can learn the updated basic information through the remote monitoring interactive interface display module 25 of the remote monitoring unit 20. This allows the client and the management terminal to simultaneously learn the same information content of the updated basic information. Similarly, in addition to effectively achieving the remote monitoring function, the consistency of updated information between the client and the management terminal can be significantly improved.
[0025] Third, please refer to Figures 1, 2 and 4 again. As mentioned above, when the client of the vehicle to be washed 90 located in the verification area 16 of the car wash unit 10 directly selects the service menu information displayed in the verification interactive interface display module 35 of the verification unit 30, and directly confirms that the service item to be performed is the expected car wash method and the corresponding price menu, it is immediately transmitted to the transmission module 53 of the cloud server unit 50 by wireless transmission according to the wireless transmission communication protocol (i.e., for example, Wi-Fi communication protocol or NFC communication protocol). At this time, the cloud microprocessor module 51 of the cloud server unit 50 generates an expected car wash signal (including but not limited to the expected car wash signal of the process of water washing, cleaning foam washing, water wax washing, blowing and air drying or its permutation and combination) by executing a third calculation logic 513 for logical operation. ) This technical feature, in this way, the expected car washing signal is again transmitted to the transmission module 13 of the car washing unit 10 by wireless communication transmission according to the wireless transmission communication protocol through the transmission module 53 of the cloud server unit 50. At this time, the vehicle to be washed 90 originally located in the verification area 16 of the car washing unit 10 will be gradually guided by the tunnel-type car washing unit 10 to a predetermined car washing area, so that the cleaning device 17 of the car washing unit 10 and its various sub-components (such as the spray arm 171 and the nozzle 173) can be directed toward one side of the vehicle to be washed in the car washing area of the car washing unit 10 or rotate around the vehicle to be washed 90 according to the expected car washing signal to perform a car washing process (including but not limited to water washing, clean foam washing, water wax washing, blowing and air drying or their arrangements and combinations thereof). As a result, the effect of intelligent remote monitoring of car washing can be effectively achieved. In addition, preferably, the transmission module 53 of the cloud server unit 50 transmits the expected car wash signal to the transmission module 23 of the remote monitoring unit 20 and the transmission module 33 of the verification unit 30 by wireless communication according to the wireless transmission communication protocol, and then displays them through the remote monitoring interactive interface display module 25 of the remote monitoring unit 20 and the verification interactive interface display module 35 of the verification unit 30 respectively. Similarly, the client and the management end can synchronously obtain the same information content of the expected car wash signal. In addition to effectively achieving the effect of remote monitoring, it can also significantly improve the effect of updating information consistency between the client and the management end.
[0026] Fourthly, please refer to FIG3 and FIG4 together. As mentioned above, when the washed vehicle 90 in the washing area of the car washing unit 10 completes the washing process, it will be gradually guided to the inspection area 18 by the tunnel-shaped car washing unit 10. At this time, the inspection camera module 41 of the inspection unit 40 at the other end of the car washing unit 10 will take a picture of the basic data of the washed vehicle 90 (such as license plate, vehicle model, vehicle length, vehicle width, vehicle height or other data sufficient to identify the washed vehicle 90) and then pass it to the inspection area 18. The basic data of the cleaned vehicle 90 is transmitted to the transmission module 53 of the cloud server unit 50 by wireless transmission according to the wireless transmission communication protocol (i.e., for example, the Wi-Fi communication protocol or the NFC communication protocol). At this time, when the cloud microprocessor module 51 of the cloud server unit 50 executes the technical features of the fourth calculation logic 514, the fourth calculation logic 514 of the cloud microprocessor module 51 is able to be based on the data stored earlier in the cloud. The cloud database module 55 of the cloud server unit 50 performs logical operations on the basic data of the vehicle 90 to be washed, thereby generating the feedback menu information (including but not limited to a car wash method and corresponding stored value balance price menu, a customer feedback satisfaction survey menu, or a recent promotion menu, etc.). The feedback menu information is then transmitted again by the transmission module 53 of the cloud server unit 50 to the transmission module 23 of the remote monitoring unit 20 and the transmission module 43 of the inspection unit 40 via wireless communication according to the wireless transmission communication protocol. The feedback menu information is then displayed on the remote monitoring interactive interface display module 25 of the remote monitoring unit 20 and the inspection interactive interface display module 45 of the inspection unit 40, respectively. At this time, the client of the washed vehicle 90 located in the inspection area 18 of the car wash unit 10 can obtain the feedback menu information through the inspection interactive interface display module 45 of the inspection unit 40, effectively achieving the effect of pre-wash and post-wash feedback of the intelligent car wash monitoring system 1. In addition, preferably, the management terminal holding the remote monitoring unit 20 can also obtain the feedback menu information again through the remote monitoring interactive interface display module 25 of the remote monitoring unit 20. Similarly, the client and the management terminal can simultaneously obtain the same information content of the feedback menu information. In addition to effectively achieving the effect of remote monitoring, it can also significantly improve the consistency of service information between the client and the management terminal.
[0027] Please refer to FIG5 , which shows another preferred embodiment of the present invention, which is suitable for installation and application in an existing car wash system and can be electrically controlled. The main structure, technical features, and functions of the intelligent car wash monitoring system 1A are similar to those of the aforementioned preferred embodiment, namely, it includes a tunnel-shaped car wash unit 10A, a remote monitoring unit 20A (e.g., a smartphone or a smart tablet), a verification unit 30A (e.g., a smart tablet), a verification unit 40A (e.g., a smart tablet), and a cloud server unit 50A (e.g., a smart tablet or a resident intelligent cloud server). Compared with the aforementioned preferred embodiment, the differences are as follows:
[0028] The transmission module 53A of the cloud server unit 50A matches the signal or data to the transmission module 13A of the car wash unit 10A, the transmission module 23A of the remote monitoring unit 20A, the transmission module 33A of the verification unit 30A and the transmission module 43A of the inspection unit 40A according to the technical characteristics of the wireless transmission communication protocol (e.g., 4G, 5G, 6G, 6.5G, etc.) supported by a base station 60A, and the transmission module 23A of the remote monitoring unit 20A can also match the signal or data to the transmission module 13A of the car wash unit 10A, the transmission module 23A of the remote monitoring unit 20A, the transmission module 33A of the verification unit 30A and the transmission module 43A of the inspection unit 40A according to the technical characteristics of the wireless transmission communication protocol (e.g., 4G, 5G, 6G, 6.5G, etc.) supported by the base station 60A. : 4G, 5G, 6G, 6.5G, etc.), and respectively match the signal or data to the transmission module 13A corresponding to the car wash unit 10A, the transmission module 33A of the verification unit 30A, and the transmission module 43A of the inspection unit 40A. In this way, the car wash unit 10A, the remote monitoring unit 20A, the verification unit 30A, the inspection unit 40A and the cloud server unit 50A can all be based on the wireless transmission communication protocol supported by the base station 60A, thereby substantially achieving the effect of remote intelligent car wash monitoring data or signal transmission.
Claims
1. An intelligent car wash monitoring system, characterized in that, Comprising: A car wash unit (10) in a tunnel shape, a remote monitoring unit (20), a verification unit (30), an inspection unit (40), and a cloud server unit (50); and the cloud server unit (50) is respectively radio-electrically matched and electrically controlled with the car wash unit (10), the remote monitoring unit (20), the verification unit (30), and the inspection unit (40) according to a wireless transmission communication protocol, and the remote monitoring unit (20) electrically controls the car wash unit (10), the verification unit (30), and the inspection unit (40) respectively according to the wireless transmission communication protocol, and the verification unit (30) and the inspection unit (40) are respectively arranged at two opposite ports of the car wash unit (10) in a tunnel shape.
2. The intelligent car wash monitoring system according to claim 1, characterized in that, The car wash unit (10) includes a microprocessor module (11), a transmission module (13), a long frame body (15) in a tunnel shape, and a cleaning device (17) pivotally arranged at the top of the long frame body (15); and the microprocessor module (11) of the car wash unit (10) is respectively electrically connected to and electrically controls the transmission module (13) and the cleaning device (17), so that the cleaning device (17) performs a reciprocating sliding motion along the long side at the top of the long frame body (15) towards the directions of two opposite short sides.
3. The intelligent car wash monitoring system according to claim 2, characterized in that, The cleaning device (17) of the car wash unit (10) is pivotally provided with a spraying arm (171) extending a predetermined length towards the bottom of the long frame body (15), and the spraying arm (171) is provided with a plurality of nozzles (173) arranged at intervals.
4. The intelligent car wash monitoring system according to claim 2, characterized in that, The remote monitoring unit (20) includes a microprocessor module (21), a transmission module (23), and a remote monitoring interactive interface display module (25), and the microprocessor module (21) is respectively electrically connected to and electrically controls the transmission module (23) and the remote monitoring interactive interface display module (25); wherein, the transmission module (23) of the remote monitoring unit (20) is electrically matched and electrically controlled with the transmission module (13) of the car wash unit (10) by radio-electrically transmitting according to the wireless transmission communication protocol.
5. The intelligent car wash monitoring system according to claim 4, wherein The verification unit (30) includes a verification camera module (31), a transmission module (33), and a verification interactive interface display module (35), and the transmission module (33) is respectively electrically connected to the verification camera module (31) and the verification interactive interface display module (35); wherein, the transmission module (23) of the remote monitoring unit (20) is electrically matched and electrically controlled with the transmission module (33) of the verification unit (30) by radio-electrically transmitting according to the wireless transmission communication protocol.
6. The intelligent car wash monitoring system according to claim 5, wherein, The inspection unit (40) includes an inspection camera module (41), a transmission module (43), and an inspection interactive interface display module (45), and the transmission module (43) is electrically connected to the inspection camera module (41) and the inspection interactive interface display module (45) respectively; wherein, the transmission module (23) of the remote monitoring unit (20) electrically matches and electrically controls the transmission module (43) of the inspection unit (40) in a radio electrical transmission manner according to the wireless transmission communication protocol.
7. The intelligent car wash monitoring system according to claim 6, wherein, The cloud server unit (50) includes a cloud microprocessor module (51), a transmission module (53), and a cloud database module (55), and the cloud microprocessor module (51) is electrically connected to the transmission module (53) and the cloud database module (55) respectively; wherein, the transmission module (53) of the cloud server unit (50) electrically matches and electrically controls the transmission module (13) of the car wash unit (10), the transmission module (23) of the remote monitoring unit (20), the transmission module (33) of the verification unit (30), and the transmission module (43) of the inspection unit (40) in a radio electrical transmission manner according to the wireless transmission communication protocol.
8. The intelligent car wash monitoring system according to claim 7, wherein, The cloud microprocessor module (51) of the cloud server unit (50) has a first calculation logic (511), which is basically used to analyze and calculate the image recognition calculation logic and generate a service menu information.
9. The intelligent car wash monitoring system according to claim 8, wherein The cloud microprocessor module (51) of the cloud server unit (50) has a fourth calculation logic (514), which is basically used to analyze and calculate the first calculation logic (511) and generate a feedback menu information.
10. The intelligent car wash monitoring system according to any one of claims 1 to 9, characterized in that, It further includes a base station (60A). The cloud server unit (50A) electrically matches and electrically controls the car wash unit (10A), the remote monitoring unit (20A), the verification unit (30A), and the inspection unit (40A) respectively in a radio electrical transmission manner according to the wireless transmission communication protocol supported by the base station (60A), and the remote monitoring unit (20A) electrically matches and electrically controls the car wash unit (10A), the verification unit (30A), and the inspection unit (40A) respectively in a radio electrical transmission manner according to the wireless transmission communication protocol supported by the base station (60A).
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