Intelligent urban subway passenger ticket equipment
A technology for urban railways and passenger tickets, applied to record carriers, instruments, and computer parts used by machines, etc., can solve problems such as missed transfer stations or destination stations, uncertain transfer information, and passengers' inability to accurately obtain stop station information, etc. , to achieve the effect of easy portability
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0036] Such as figure 1 As shown, the structural block diagram of the intelligent urban railway passenger ticket device of the present invention, it has the reminder function while having the existing passenger ticket function, and the existing passenger ticket function includes ticket purchase, recharge and ticket inspection, etc. figure 1 The shown intelligent urban railway ticket equipment includes a microprocessor 2, a communication unit 1, a memory 5, a loudspeaker 4, a display screen 3 and a power supply assembly. The communication unit 1, memory 5, loudspeaker 4 and display screen 3 are respectively connected with the microprocessor 2. The power supply component provides power supply for the microprocessor 2 , the communication unit 1 , the memory 5 , the speaker 4 and the display screen 3 . The microprocessor 2 stores the information from the ticketing system obtained by the communication unit 1 in the memory 5, and the microprocessor 2 compares the information from t...
Embodiment 2
[0046] The difference between this embodiment and the above embodiments is that the power supply device is a solar energy collection device 8 . The solar energy collection device is arranged on the outside of the urban railway carriage to collect solar energy. While ensuring the power supply of smart urban railway ticket equipment, it does not increase the power burden of urban railway carriages.
[0047] Due to the diversity of directions of urban railway lines, the solar collector 8 needs to flexibly adjust the direction function to ensure maximum solar energy acquisition. Such as figure 2 Shown is a schematic structural view of a solar energy collection device 8 provided in this embodiment. The solar collection device includes a solar tube 81 , an adjustment device 83 , a position module 85 , a processor 86 and a guide device 87 . The solar tube 81 is used to collect solar energy; the guide device 87 and the position module 85 are used to obtain the sun position informa...
Embodiment 3
[0053] Such as Figure 4A and Figure 4B As shown, the difference between this embodiment and the above-mentioned embodiments is that the number of light-guiding surfaces on the refraction layer 875 of this embodiment is set to five, including a first light-guiding surface 8753, two second light-guiding surfaces 8754 and The two third light-introduction surfaces 8755 and the five light-introduction surfaces are arranged in a semicircle, which is beneficial to fully collect solar energy.
[0054] Such as Figure 4A As shown, when the sun directly shines on the first light-guiding surface 8753 located in the middle part of the section of the guide device 87, the incident light of the sun is perpendicular to the first light-guiding surface 8753 and enters the refraction layer 875, and then irradiates on the heat-absorbing layer after entering the refraction layer 875 871 on the position corresponding to the first light-guiding surface 8753; on the heat-absorbing layer 871 oppos...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


