Multifunctional three-dimensional column with taxi calling function by using clean energy

By designing a multi-functional three-dimensional column that utilizes clean energy, combining solar and wind power generation, it provides a variety of payment methods and ride-hailing functions, the existing smart screens are large in size, high power consumption and difficult to use by the elderly, and convenient, energy-saving and environmentally friendly ride-hailing services are achieved, improving coverage and user experience.

CN222867130UActive Publication Date: 2025-05-13SHANGHAI BOZHOUREN TECH CO LTD
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Patent Information

Application Number
CN202420637743.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-29
Publication Date
2025-05-13
Estimated Expiration
2034-03-29

AI Technical Summary

Technical Problem

The existing one-click ride-hailing smart screen is large in size, relies on wired power, consumes a lot of power, is fragile and has high replacement cost. The intelligent operation process affects the ride-hailing experience of the elderly, resulting in low coverage and cannot be promoted on a large scale.

Method used

Design a multi-functional three-dimensional column that utilizes clean energy, uses solar panels and wind energy to generate electricity, combining multiple payment methods and ride-hailing functions, including avatar collection, digital buttons, QR codes, coin-operated, NFC and fingerprint collection areas, providing convenient ride-hailing services.

Benefits of technology

It has realized convenient, energy-saving and environmentally friendly ride-hailing services, adapted to the payment methods needs of different users, solved the difficulties of the elderly using smart APP to call taxi, and improved the experience and coverage of middle-aged and elderly people in cities.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN222867130U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of intelligent transportation, and provides a multifunctional three-dimensional column with a taxi calling function by using clean energy, which comprises a column main body, a baffle plate and a power generation mechanism fixedly connected to the outer side wall of the column main body, and the power generation mechanism is arranged at the top end of the column main body and comprises a solar panel. The solar panels are installed on the outer side wall of the stand column body in multiple sets, a supporting rod is installed at the top end of the stand column body, a fixed bottom plate is installed at the end, away from the stand column body, of the supporting rod, and two connecting antennas are fixedly connected to the top end of the fixed bottom plate. According to the scheme, a polygonal three-dimensional column is adopted, and all functional interfaces are not placed on one side, so that a plurality of sides are conveniently erected on the ground like a tree outdoors, space is not occupied, traffic is not influenced, and compared with a one-key taxi calling intelligent screen, the single side has the advantages of small area, outdoor wind resistance and the like; the column body can be operated by multiple persons at the same time to call the taxi.
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Description

Technical Field

[0001] The utility model belongs to the technical field of intelligent transportation, in particular to a multifunctional three-dimensional column with a car-calling function utilizing clean energy. Background Art

[0002] With the acceleration of urbanization and the growing demand for transportation, traditional transportation infrastructure and travel service models can no longer meet the sustainable development needs of modern cities. In order to solve these problems, innovative urban transportation solutions are urgently needed. Among them, multifunctional infrastructure combining clean energy utilization and intelligent transportation systems has become a research hotspot;

[0003] At present, most elderly people do not know how to use smartphone APP to call a taxi. In order to respond to the "Notice on Effectively Solving the Difficulties of the Elderly in Using Intelligent Technology to Facilitate Daily Transportation for the Elderly" issued by the Ministry of Transport, the Ministry of Human Resources and Social Security and other 7 departments, a "one-click taxi-hailing smart screen" self-service machine for calling a taxi appeared on the market in 2021. However, the machine has the following disadvantages: large size, reliance on wired power supply, use of a power-consuming screen, large screen is fragile and has high replacement cost. At the same time, investigations found that the intelligent operation process of this screen still scares some elderly people. From 2021 to the present, the coverage rate of this all-in-one machine is very low. Because the large-screen machine cannot be promoted on a large scale, it seriously affects the taxi-hailing experience of urban middle-aged and elderly people.

[0004] To this end, those skilled in the art have proposed a multifunctional three-dimensional column that utilizes clean energy and has a car-hailing function to solve the problems raised by the background technology. Summary of the invention

[0005] In order to solve the above technical problems, the utility model provides a multifunctional three-dimensional column with a taxi-hailing function that utilizes clean energy, so as to solve the problems in the prior art that the one-button taxi-hailing smart screen is large in size, relies on wired power supply, uses a screen that consumes a lot of power, the large screen is fragile and has high replacement costs, and the intelligence affects the taxi-hailing experience of the elderly.

[0006] A multifunctional three-dimensional column with a car-calling function using clean energy, comprising a column body, an outer side wall of which is fixedly connected to a shielding plate;

[0007] A power generation mechanism is arranged at the top end of the column body.

[0008] The electric conversion mechanism is arranged inside the three-dimensional column body.

[0009] Preferably, the power generation mechanism includes solar panels, and the solar panels are installed in multiple groups on the outer wall of the column body. A support rod is installed on the top of the column body, and a fixed base plate is installed on the end of the support rod away from the column body. Two connecting antennas are fixedly connected to the top of the fixed base plate, and three power generation fans are installed on the outer wall of the support rod.

[0010] Preferably, the electrical conversion mechanism includes two groups of batteries, a wind-solar hybrid controller, and an inverter.

[0011] Preferably, the column body is hexagonal and each side is installed with a long energy-saving display screen, the outer wall of the column body is installed with a camera, the outer wall of the column body is installed with a plurality of numeric keys, the outer wall of the column body is installed with a coin insertion area, the outer wall of the column body is fixedly connected with a failed coin outlet, the outer wall of the column body is installed with an NFC card reader, the outer wall of the column body is installed with a fingerprint collection area, and the outer wall of the column body also has a QR code scanning area.

[0012] A multifunctional three-dimensional column system with a taxi-calling function using clean energy.

[0013] S1, head portrait collection area: recognize the user's head portrait through head portrait collection and start the taxi-hailing mode;

[0014] S2, digital buttons: Enter your mobile phone number and password through the digital buttons to start the taxi-hailing mode without a mobile phone;

[0015] S3, QR code area: scan the QR code with your mobile phone to pay for the function and start the taxi-hailing mode;

[0016] S4, Coin-operated area: You can start the taxi-hailing mode without a mobile phone by inserting coins to pay the function fee;

[0017] S5, NFC area: Use bus cards, mobile phones, watches, bracelets and other devices with NFC function to swipe the card to start the taxi-hailing mode;

[0018] S6, fingerprint collection area: identify the user's fingerprint through fingerprint collection and start the taxi-hailing mode;

[0019] Preferably, the step S1 specifically includes the following steps: S11, the user first successfully authenticates the avatar through the matching mobile phone APP software, and then authenticates by facing the camera with the face.

[0020] S12. Press the camera start button, select the taxi or online car-hailing button, and the green light will turn on when a car accepts the order, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display screen. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; when the red light is on, the passenger clicks the upper right corner to confirm the ride (the indicator light function is the same below, and is omitted below).

[0021] Preferably, the step S2 specifically includes the following steps: S21. The user first needs to download and install a specific taxi-hailing APP software on the mobile phone. When using it for the first time, the system will prompt the user to register. During the registration process, the user needs to enter his or her mobile phone number and set a payment password for subsequent taxi-hailing fee payment. This step is to ensure the security of the user's account and the smooth operation of the taxi-hailing service.

[0022] S22. After entering the mobile phone number and payment password, the user clicks the confirmation button, and the system starts processing the user's taxi request. At this time, the APP will send a taxi request signal to nearby drivers.

[0023] S23. When a driver accepts an order, the system will update the order status in real time and display the license plate number of the order-receiving vehicle, the distance from the user's current location, and the estimated time of arrival on the long energy-saving display screen. In this way, the user can clearly understand the relevant information of the order-receiving vehicle and arrange his waiting time reasonably. At the same time, this real-time display method also helps to enhance the user's trust and satisfaction with the taxi-hailing service.

[0024] S24. During the entire process, the system will continue to monitor the order status and vehicle location to ensure that users can obtain the latest order information in a timely and accurate manner. In addition, users can also communicate with the driver through the APP at any time to better coordinate ride matters.

[0025] Preferably, the step S3 specifically includes the following steps:

[0026] S31. Users can choose to pay the function fee by scanning the QR code to start the taxi service. This payment method is fast and convenient, providing users with more choices. Once the payment is successful, the system will immediately start processing the user's taxi request and send the order information to nearby drivers.

[0027] S32. While waiting for the driver to accept the order, the user can check the order status on the APP interface at any time to find out whether there is a driver accepting the order and the progress of the order. When a driver successfully accepts the order, the system will update the order status as soon as possible and display key information such as the license plate number of the order, the distance from the user's current location, and the estimated time of arrival on the long energy-saving display screen in real time.

[0028] S33. During the entire service process, users can also communicate with the driver in real time through the APP at any time. Whether it is to confirm the boarding location, adjust the driving route or understand the arrival time, they can get timely response and processing. This efficient and convenient communication method further enhances the convenience and comfort of the taxi service.

[0029] Preferably, the step S4 specifically includes the following steps:

[0030] S41. The coin slot is an important part of this multifunctional three-dimensional column system. It provides users with another payment method to enjoy transportation services. Users can choose to pay for services by inserting the corresponding amount into the coin slot. The coin slot is designed to be large enough to facilitate the insertion of coins and banknotes of various denominations. It is also equipped with an automatic recognition and counting system to ensure the accuracy and speed of transactions.

[0031] S42. After successfully inserting the coin, the user will be faced with two button choices: a taxi button and an online car-hailing button. The taxi button is used to call a traditional cruising taxi, which is suitable for users with specific needs for taxi services; the online car-hailing button is used to call a vehicle booked through an Internet platform, which is suitable for users who pursue convenience and efficiency.

[0032] S43. After the user presses the corresponding button, the system will immediately start processing the taxi request and send the order information to nearby drivers. At this time, the user only needs to wait patiently. The system will update the order status as soon as a car accepts the order. At the same time, the long energy-saving display screen will light up, clearly showing the license plate number of the order-receiving vehicle, the specific distance from the user's current location, and the estimated time required to arrive.

[0033] Preferably, the step S5 specifically includes the following steps:

[0034] S51. This multifunctional three-dimensional column system fully considers the diversified payment methods of users, and specially sets up a bus card swiping area and a device sensing area that supports NFC function. Users can directly use bus cards to pay for taxi fares on this system without additional operations or conversions, which greatly improves the convenience of use. At the same time, for those who are accustomed to using smart devices such as mobile phones or watches, as long as their devices support NFC function, they can easily complete the payment. This design not only improves the flexibility of payment, but also reflects the system's deep integration of modern technology applications.

[0035] S52. After completing the payment, the user is faced with two taxi-hailing options: a taxi button and an online taxi-hailing button. The taxi button calls a traditional cruising taxi with one click, meeting the user's needs for fast travel; the online taxi-hailing button connects to major online taxi-hailing platforms, providing users with more diversified travel options. The design of these two buttons fully considers the different needs and scenarios of users, making the taxi-hailing service more user-friendly.

[0036] S53. After the user makes a choice, the system will immediately start processing the taxi request and update the order status as soon as a car accepts the order. At this time, the long energy-saving display screen will clearly display the license plate number of the order-receiving vehicle, the specific distance between the vehicle and the user's current location, and the estimated time of arrival. This real-time feedback design allows users to see the progress of the taxi at a glance, and also enhances the user's trust in the system. In addition, the energy-saving design of the display screen also reflects the system's emphasis on environmental protection and energy conservation, which not only meets user needs but also reduces energy consumption.

[0037] Preferably, the step S6 specifically includes the following steps: S61, the user first successfully authenticates the fingerprint through the matching mobile phone APP software, and collects the fingerprint through the fingerprint collection area.

[0038] S62. Select the taxi or online car-hailing button. When a car accepts the order, the green light will turn on, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; when the red light is on, the passenger clicks the confirmation button in the upper right corner to board the car.

[0039] Compared with the prior art, the utility model has the following beneficial effects:

[0040] 1. This solution uses a polygonal three-dimensional column instead of placing all functional interfaces on one side. The reason is that multiple sides are easy to stand on the ground like a tree outdoors, which does not take up space and does not affect traffic. Because the area of ​​a single side is small, it has advantages such as outdoor wind resistance. Compared with the "one-button taxi call smart screen", this column can be operated by multiple people at the same time to call a taxi;

[0041] 2. Ensure that the elderly can call a taxi even if they cannot use smart apps, solving the problem of inconvenience and fear of travel for the elderly due to over-intelligent transportation in society;

[0042] 3. Make full use of existing technology, using solar panels and wind power to solve the limitation that ride-hailing hardware cannot be far away from limited indoor and outdoor power sources;

[0043] 4. Multiple taxi-hailing functions to meet the needs of different taxi-hailing methods;

[0044] 5. The three-dimensional column can form a fixed position due to its specific setting and marking, which can solve the problem of inaccurate positioning of existing taxi-hailing software, and can especially be used to solve the problem of inaccurate positioning of each building unit in the current community;

[0045] 6. Coordinate and solve the fixed location of the three-dimensional column, which can help solve the problem of random parking of taxis and online ride-hailing cars. For large construction companies facing the problem of random parking of online ride-hailing cars, the reason is that there is no fixed parking point for online ride-hailing cars, which makes the management of online ride-hailing cars chaotic. Online ride-hailing cars park on the road, causing traffic congestion at the railway station; similarly, call-up columns can be set up in hospitals, concentrated residential areas, important commercial areas and other places to provide convenient call-up services. Therefore, in areas or places where random parking of online ride-hailing cars and traffic congestion are solved, call-up columns can solve such problems;

[0046] 7. Each taxi-hailing pillar has a fixed number. The elderly can tell their children the number by phone. The children can use the mobile phone software APP to remotely control the taxi-hailing pillar and call a taxi based on the number of the taxi-hailing pillar. The APP can also be used to call a taxi at a precise location for the elderly and pay for the elderly. BRIEF DESCRIPTION OF THE DRAWINGS

[0047] Figure 1 It is a three-dimensional schematic diagram of the utility model;

[0048] Figure 2 For this utility model Figure 1 Schematic diagram of the structure viewed from above;

[0049] Figure 3 This is a schematic diagram of the solar and wind power generation system in the utility model;

[0050] Figure 4 For this utility model Figure 1 Schematic diagram of the internal electric energy conversion structure of the neutral column body;

[0051] Figure 5 For this utility model Figure 1 Schematic diagram of the structure of the S1 surface of the center column body;

[0052] Figure 6 For this utility model Figure 1 A schematic diagram of the structure of the S2 surface of the center column body;

[0053] Figure 7 For this utility model Figure 1 A schematic diagram of the structure of the S3 surface of the center column body;

[0054] Figure 8 For this utility model Figure 1 Schematic diagram of the structure of the S4 surface of the center column body;

[0055] Fig. 9 For this utility model Figure 1 A schematic diagram of the structure of the S5 surface of the center column body;

[0056] Fig.10 For this utility model Figure 1Schematic diagram of the structure of the S6 surface of the center column body.

[0057] In the figure: 1. column body; 11. shielding plate; 12. solar panel; 13. support rod; 14. fixed bottom plate; 15. connecting antenna; 16. power generating fan; 17. long energy-saving display screen; 2. camera; 22. numeric buttons; 23. coin insertion area; 24. failed coin outlet; 25. NFC card reader; 26 fingerprint collector; 27 QR code diagram. DETAILED DESCRIPTION

[0058] The following is a further detailed description of the implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but cannot be used to limit the scope of the present invention.

[0059] As attached Figure 1 To the attached picture 10 As shown:

[0060] Embodiment 1: The utility model provides a multifunctional three-dimensional column with a car-calling function using clean energy, comprising a column body 1, and a shielding plate 11 is fixedly connected to the outer side wall of the column body 1;

[0061] A power generation mechanism is arranged at the top of the column body 1, and the power generation mechanism includes a solar panel 12. The solar panels 12 are installed in multiple groups on the outer wall of the column body 1. A support rod 13 is installed at the top of the column body 1. A fixed base plate 14 is installed at the end of the support rod 13 away from the column body 1. Two connecting antennas 15 are fixedly connected to the top of the fixed base plate 14, and three power generation fans 16 are installed on the outer wall of the support rod 13.

[0062] Specifically, by disposing the solar panel 12 and the wind power generation mechanism 16 , electricity can be stored in the storage battery built into the column body 1 , so as to conveniently supply power to the column body 1 .

[0063] The column body 1 is hexagonal and each side is installed with a long energy-saving display screen 17, the outer wall of the column body 1 is installed with a camera 2, the outer wall of the column body 1 is installed with a plurality of digital buttons 22, the outer wall of the column body 1 is installed with a coin insertion area 23, the outer wall of the column body 1 is fixedly connected with a failed coin outlet 24, the outer wall of the column body 1 is also installed with an NFC card reader 25, the outer wall of the column body 1 is installed with a fingerprint collection area 26, and the outer wall of the column body 1 also has a QR code scanning area 27.

[0064] Specifically, the power generating fan 16 can continuously supply wind power to prevent the solar panel 12 from being out of sunlight for a long time, and the antenna 15 can be connected to provide a signal for the column body 1.

[0065] Working principle: the main body 1 of the column has six faces, namely S1, S2, S3, S4, S5 and S6. The function description of the head portrait collection area on the S1 face is as follows: (1) first authenticate the head portrait successfully through the matching mobile phone APP software, (2) aim the face at the camera, (3) press the camera start button, (4) select a taxi or online car-hailing button, (5) the green light will turn on when a car accepts the order, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display screen at the same time. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; (6) when the red light is on, the passenger clicks the confirmation button in the upper right corner to board the car.

[0066] Use of the digital keypad area on the S2 side: (1) First register your mobile phone number and use your payment password through the mobile phone APP software; (2) Enter your mobile phone number and payment password through the digital keys and click the confirmation button; (3) Select a taxi or online car-hailing button; (4) When a car accepts the order, the green light will turn on, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; (5) When the red light is on, the passenger clicks the confirmation button in the upper right corner to board the car.

[0067] Use of the QR code area on the S3 side: (1) Pay the usage fee through the QR code; (2) Select the taxi or online car-hailing button to start the taxi service. When a car accepts the order, the green light will turn on, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display screen; (3) When the car arrives, the red light will turn on, and the passenger will click the confirmation button in the upper right corner to board the car.

[0068] Use of the coin insertion area on the S4 side: (1) Insert coins into the coin slot; (2) Select the taxi button or online car-hailing button; (3) The green light will turn on when a car accepts the order, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display screen; (4) When the car arrives, the red light will turn on, and the passenger will click the confirmation button in the upper right corner to board the car.

[0069] Use of the NFC area on the S5: (1) Use bus cards or mobile phones and watches with NFC functions, (2) Select the taxi button or online car-hailing button; (3) When a car accepts the order, the green light will turn on, and the license plate number, distance and estimated arrival time of the car will be displayed on the long energy-saving display screen; (4) When the car arrives, the red light will turn on, and the passenger will click the confirmation button in the upper right corner to board the car.

[0070] To use the fingerprint area on the S6: (1) First authenticate your fingerprint through the matching mobile phone APP software, (2) collect your fingerprint through the fingerprint collection area; (3) Select a taxi or online car-hailing button, (4) When a car accepts the order, the green light will turn on, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; (5) When the red light is on, the passenger clicks the confirmation button in the upper right corner to board the car.

[0071] A multifunctional three-dimensional column system with a taxi-hailing function using clean energy, S1, head portrait collection area: recognizing the user's portrait through head portrait collection and starting the taxi-hailing mode;

[0072] S2, digital buttons: You can enter your mobile phone number and password through the digital buttons, and you can start the taxi-hailing mode without a mobile phone;

[0073] S3, QR code area: scan the QR code with your mobile phone to pay for the function and start the taxi-hailing mode;

[0074] S4, Coin-operated area: You can start the taxi-hailing mode without a mobile phone by inserting coins to pay the function fee;

[0075] S5, NFC area: Use bus cards, mobile phones, watches, bracelets and other devices with NFC function to swipe the card to start the taxi-hailing mode;

[0076] S6, fingerprint collection area: identify the user's fingerprint through fingerprint collection and start the taxi-hailing mode;

[0077] The step S1 specifically includes the following steps: S11, the user first successfully authenticates the head portrait through the matching mobile phone APP software, and authenticates by pointing the face to the camera;

[0078] S12. Press the camera start button, select the taxi or online car-hailing button, and the green light will turn on when a car accepts the order, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display screen. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; when the red light is on, the passenger clicks the upper right corner to confirm the ride (the indicator light function is the same below, and is omitted below).

[0079] Specifically, users can complete a taxi request with just a few simple clicks, and the system will automatically send a request signal to nearby drivers. When a driver accepts the order, the user can obtain real-time information about the vehicle, including license plate number, distance and estimated arrival time, which greatly improves the efficiency of taxi hailing and the user's waiting experience.

[0080] The step S2 specifically includes the following steps: S21, the user first needs to download and install a specific taxi hailing APP software on the mobile phone. When using it for the first time, the system will prompt the user to register. During the registration process, the user needs to enter his or her mobile phone number and set a payment password for subsequent taxi hailing fee payment. This step is to ensure the security of the user's account and the smooth operation of the taxi hailing service;

[0081] S22. After entering the mobile phone number and payment password, the user clicks the confirmation button, and the system starts processing the user's taxi request. At this time, the APP will send a taxi request signal to nearby drivers;

[0082] S23. When a driver accepts an order, the system will update the order status in real time and display the license plate number of the order-receiving vehicle, the distance from the user's current location, and the estimated time of arrival on the long energy-saving display screen. In this way, the user can clearly understand the relevant information of the order-receiving vehicle and arrange his waiting time reasonably. At the same time, this real-time display method also helps to enhance the user's trust and satisfaction with the taxi-hailing service.

[0083] S24. During the whole process, the system will continuously monitor the order status and vehicle location to ensure that users can obtain the latest order information in a timely and accurate manner. In addition, users can also communicate with the driver through the APP at any time to better coordinate the ride;

[0084] Specifically, through physical buttons, users can directly enter their mobile phone number and registration password, and easily call a taxi without relying on a mobile phone, which greatly improves the convenience of use.

[0085] The step S3 specifically comprises the following steps:

[0086] S31. Users can choose to pay the function fee by scanning the QR code to start the taxi-hailing service. This payment method is fast and convenient and provides users with more choices. Once the payment is successful, the system will immediately start processing the user's taxi-hailing request and send order information to nearby drivers.

[0087] S32. While waiting for the driver to accept the order, the user can check the order status on the APP interface at any time to find out whether there is a driver accepting the order and the progress of the order. When a driver successfully accepts the order, the system will update the order status as soon as possible and display key information such as the license plate number of the order, the distance from the user's current location, and the estimated time of arrival on the long energy-saving display screen in real time.

[0088] S33. During the entire service process, users can also communicate with the driver in real time through the APP at any time. Whether it is confirming the pick-up location, adjusting the driving route or understanding the arrival time, they can get timely responses and processing. This efficient and convenient communication method further improves the convenience and comfort of the taxi service.

[0089] Specifically, once the user pays successfully, the system will immediately start processing the taxi request and send order information to nearby drivers. While waiting for the driver to accept the order, the user can check the order status at any time to understand the progress of the taxi call. When a driver accepts the order, the system will update the order status in real time and display key information, so that the user can clearly understand the taxi call situation.

[0090] The step S4 specifically comprises the following steps:

[0091] S41. The coin slot is an important part of this multifunctional three-dimensional column system, which provides users with another payment method to enjoy transportation services. Users can choose to pay for services by inserting the corresponding amount into the coin slot. The coin slot is designed to be large enough to facilitate the insertion of coins and banknotes of various denominations. It is also equipped with an automatic recognition and counting system to ensure the accuracy and speed of transactions.

[0092] S42. After successfully inserting the coin, the user will be faced with two button choices: taxi button and online car-hailing button. The taxi button is used to call a traditional cruising taxi, which is suitable for users with specific needs for taxi services. The online car-hailing button is used to call a vehicle booked through an Internet platform, which is suitable for users who pursue convenience and efficiency.

[0093] S43. After the user presses the corresponding button, the system will immediately start processing the taxi request and send the order information to nearby drivers. At this time, the user only needs to wait patiently. The system will update the order status as soon as a car accepts the order. At the same time, the long energy-saving display screen will light up, clearly showing the license plate number of the order-receiving vehicle, the specific distance from the user's current location, and the estimated time required to arrive.

[0094] Specifically, the long energy-saving display screen will clearly show information such as the license plate number of the vehicle receiving the order, the specific distance from the user's current location, and the estimated time of arrival. This intuitive information display method enables users to understand the progress of the ride and vehicle information at any time, enhancing the user experience.

[0095] The step S5 specifically comprises the following steps:

[0096] S51, This multifunctional three-dimensional column system fully considers the diversified payment methods of users, and specially sets up a bus card swiping area and a device sensing area that supports NFC (near field communication) function. Users can directly use bus cards to pay for taxi fares on this system without additional operations or conversions, which greatly improves the convenience of use. At the same time, for those who are accustomed to using smart devices such as mobile phones or watches, as long as their devices support NFC function, they can easily complete the payment. This design not only improves the flexibility of payment, but also reflects the system's deep integration of modern technology applications.

[0097] S52. After completing the payment, the user is faced with two taxi-hailing options: a taxi button and an online taxi-hailing button. The taxi button calls a traditional cruising taxi with one click, meeting the user's needs for fast travel; the online taxi-hailing button connects to major online taxi-hailing platforms, providing users with more diversified travel options; the design of these two buttons fully considers the different needs and scenarios of users, making the taxi-hailing service more user-friendly.

[0098] S53. After the user makes a choice, the system will immediately start processing the taxi request and update the order status as soon as a car is available to accept the order. At this time, the long energy-saving display will clearly display the license plate number of the order-receiving vehicle, the specific distance between the vehicle and the user's current location, and the estimated time required to arrive. This real-time feedback design allows users to see the progress of the taxi at a glance, and also enhances the user's trust in the system. In addition, the energy-saving design of the display also reflects the system's emphasis on environmental protection and energy conservation, which not only meets user needs but also reduces energy consumption.

[0099] Specifically, the convenience and flexibility of payment: by setting up a bus card swiping area and a device sensing area that supports NFC function, the system provides users with a variety of payment options. Whether using a bus card or an NFC-enabled mobile phone, watch or other smart device, users can quickly complete payment without complicated operations or conversions. This design greatly improves the convenience and flexibility of payment and meets the payment needs of different users.

[0100] Preferably, the step S6 specifically includes the following steps: S61, the user first successfully authenticates the fingerprint through the matching mobile phone APP software, and collects the fingerprint through the fingerprint collection area.

[0101] S62. Select the taxi or online car-hailing button. When a car accepts the order, the green light will turn on, and the license plate number, distance and estimated arrival time will be displayed on the long energy-saving display. When the car is about to arrive, the indicator light will turn from green to yellow; when the car arrives, the indicator light will turn from yellow to red; when the red light is on, the passenger clicks the confirmation button in the upper right corner to board the car.

[0102] The embodiments of the present invention are provided for the purpose of illustration and description. Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations on the present invention. Ordinary technicians in this field can change, modify, replace and modify the above embodiments within the scope of the present invention.

Claims

1. A multifunctional three-dimensional column with a car-calling function using clean energy, characterized in that: It comprises a column body (1), the outer side wall of the column body (1) being fixedly connected with a shielding plate (11); A power generation mechanism, the power generation mechanism being arranged at the top end of the column body (1); An electric conversion mechanism is arranged inside a three-dimensional column body (1), the power generation mechanism comprises a solar panel (12), the solar panel (12) is installed on the outer wall of the column body (1) in a plurality of groups facing the direction of sunlight according to the local solar radiation angle, a support rod (13) is installed at the top of the column body (1), a fixed bottom plate (14) is installed at one end of the support rod (13) away from the column body (1), the top of the fixed bottom plate (14) is fixedly connected to two connection antennas (15), the outer wall of the support rod (13) is installed with three power generation fans (16), and the column The main body (1) is hexagonal and each side is equipped with a long energy-saving display screen (17); the outer wall of the column main body (1) is equipped with a camera (2); the outer wall of the column main body (1) is equipped with a plurality of digital keys (22); the outer wall of the column main body (1) is equipped with a coin slot (23); the outer wall of the column main body (1) is fixedly connected with a failed coin outlet (24); the outer wall of the column main body (1) is equipped with an NFC card reader (25); the outer wall of the column main body (1) is equipped with a fingerprint collection area (26); and the outer wall of the column main body (1) also has a QR code scanning area (27).