Large health data analysis system based on plant-based protein
By generating and scanning QR codes for payment verification, merging expense details and generating electronic invoices, the problem of time-consuming invoice issuance during medical treatment is solved, achieving convenient and efficient electronic invoice management.
Patent Information
- Application Number
- CN202511080836.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2025-11-21
AI Technical Summary
Getting an invoice when seeking medical treatment takes a lot of time, and there are cases where payment receipts are lost, resulting in poor convenience.
Payment verification is performed by generating and scanning QR codes, merging fee details and generating electronic receipts, verifying identity using information verification units and sending electronic receipts via email, reducing the need for queuing with physical receipts.
It improves the convenience of the medical treatment process, reduces queuing time, and lowers the risk of lost receipts.
Smart Images

Figure CN120998439A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of electronic ticket management, and in particular to a big health data analysis system based on plant-based proteins. Background Technology
[0002] With the introduction of smart healthcare, we can now register online, make appointments with doctors, and so on through various means, making it faster and more convenient for people to seek medical treatment.
[0003] Typically, doctors prescribe medication based on their experience and the patient's symptoms, or they prescribe medication after examining the patient using testing equipment. Patients then use the prescription receipt and the testing equipment usage receipt to obtain an invoice for reimbursement. However, the long queues for invoices at medical clinics result in significant time commitments. This not only wastes time queuing but also leads to lost receipts, making the process inconvenient. Summary of the Invention
[0004] To address the aforementioned technical problems, this invention provides a plant-based protein-based big health data analysis system that eliminates the need for patients to hold receipts while queuing, thus improving convenience.
[0005] The present invention discloses a big health data analysis system based on plant-based proteins, including an information input unit for doctors to input patients' names, identity information, costs of testing equipment, and costs of medications. The system generates and sends a QR code A containing the patient's name, identity information, and costs of testing equipment, and generates and sends a QR code B containing the patient's name, identity information, and costs of medications. The payment printing unit extracts and prints the A and B QR codes generated by the information entry unit. After printing, patients can pay by scanning the A and B QR codes. The device payment verification unit is used to receive the QR code A sent by the information entry unit and verify whether the patient has paid. After detecting that the patient has paid, the QR code A is sent. The drug payment verification unit is used to receive the B QR code sent by the information entry unit and verify whether the patient has paid. After detecting that the patient has paid, the B QR code is sent. The information storage unit is used to receive the A QR code sent by the device payment verification unit and the B QR code sent by the drug payment verification unit, and to merge the A QR code and B QR code with the same patient name and identity information to generate a detailed expense statement and store it. The information verification unit is used to verify the identities of the person printing the receipt and the patient. The unit scans the person's ID card information and compares it with the patient's information from the expense statement. If the two match successfully, the unit generates and sends an electrical signal "1"; if the match fails, it generates and sends an electrical signal "0". The electronic invoice generation unit is used to receive the electrical signal "1" sent by the information verification unit, extract the expense details from the information storage unit, and generate an electronic invoice. The information alarm unit is used to receive the electrical signal "0" sent by the information verification unit. When the same person's identity information is verified by the information verification unit three times and the information verification unit's electrical signal is "0" three times, the information alarm unit will sound an alarm to attract the attention of relevant personnel. The document sending unit is used to receive and store electronic documents generated by the electronic document generation unit, and to send the stored electronic documents to the email address entered by the patient; the information entry unit is used to generate and send a QR code A for the patient's name, identity information, cost of testing equipment and cost of medication, and a QR code B for the patient's name, identity information and cost of testing equipment. The payment printing unit extracts and prints the A and B QR codes generated by the information entry unit. After printing, patients can pay by scanning the A and B QR codes. The device payment verification unit receives the QR code A sent by the information entry unit and verifies whether the patient has paid. After detecting that the patient has paid, the QR code A is sent. The drug payment verification unit receives the B QR code sent by the information entry unit and verifies whether the patient has paid. After detecting that the patient has paid, the B QR code is sent. The information storage unit receives the A QR code sent by the device payment verification unit and the B QR code sent by the drug payment verification unit. It merges the A QR code and B QR code with the same patient name and identity information, generates a detailed expense statement, and stores it. The information verification unit verifies the identities of the person printing the receipt and the patient. The unit scans the person's ID card information and compares it with the patient's information from the expense statement. If the two match, the information verification unit generates and sends an electrical signal "1"; if the match fails, it generates and sends an electrical signal "0". The electronic invoice generation unit receives the electrical signal "1" sent by the information verification unit, extracts the expense details from the information storage unit, and generates an electronic invoice. The information alarm unit receives an electrical signal of "0" from the information verification unit. When the same person's identity information is verified by the information verification unit three times and the information verification unit's electrical signal is "0" three times, the information alarm unit will sound an alarm to attract the attention of relevant personnel. The ticket sending unit receives and stores the electronic tickets generated by the electronic ticket generation unit, and then sends the stored electronic tickets to the email address entered by the patient, so that the patient no longer needs to queue with a receipt in hand, thus improving convenience.
[0006] Preferably, it also includes an information correction unit for correcting patient information. The doctor corrects the name and identity information of the patient's fee name corresponding to the information storage unit based on the patient's identity information. The information correction unit corrects patient information. In special circumstances, the patient's caregiver may register their information at the hospital. When correction is needed, the doctor corrects the name and identity information of the patient's fee name corresponding to the information storage unit based on the patient's identity information, thereby improving convenience.
[0007] Preferably, the information alarm unit is a buzzer; the buzzer emits a buzzing alarm sound to attract the attention of staff.
[0008] Preferably, it also includes a ticket printing unit for extracting and printing the electronic ticket generated by the electronic ticket generation unit; the ticket printing unit extracts and prints the electronic ticket generated by the electronic ticket generation unit.
[0009] Preferably, it also includes a cloud storage unit for backing up the expense details of the information storage unit in the cloud; the cloud storage unit backs up the expense details of the information storage unit in the cloud to prevent loss in case of accidents.
[0010] Preferably, it also includes a USE interface, and the storage unit is equipped with a USE interface; staff can use a USB flash drive to connect to the information storage unit through the USE interface and copy the expense details according to specific work needs.
[0011] This invention provides a method for electronic management of medical invoices based on blockchain technology. The doctor enters the patient's name, identity information, cost of testing equipment, and cost of medication. The patient's name, identity information, and cost of testing equipment are used to generate QR code A and sent. The patient's name, identity information, and cost of medication are used to generate QR code B and sent. Extract and print QR codes A and B. Patients can then scan QR codes A and B to make payment. Receive information A QR code and verify whether the patient has paid. Once payment is detected, send QR code A. Receive the B QR code and verify whether the patient has paid. Once payment is detected, send the B QR code. Receive and send QR codes A and B, merge the information of QR codes A and B with the same patient name and identity information, generate a detailed cost statement and store it; The system verifies the identities of the person printing the receipt and the patient. The information verification unit scans the person's ID card information and compares it with the patient's information from the expense details sheet. If the two match successfully, an electrical signal "1" is generated and sent; if the two do not match successfully, an electrical signal "0" is generated and sent. Receive electrical signal "1", retrieve the expense details and generate an electronic invoice; When the same person's identity information is verified by the information verification unit, if the three electrical signals are all "0", an alarm will sound to attract the attention of relevant staff. Receive and store electronic tickets, and send the stored electronic tickets to the email address entered by the patient. Compared with the prior art, the beneficial effects of the present invention are as follows: the doctor in the information entry unit generates and sends a QR code A for the patient's name, identity information, cost of using the testing equipment, and cost of the medicine; and generates and sends a QR code B for the patient's name, identity information, and cost of using the testing equipment. The payment printing unit extracts and prints the A and B QR codes generated by the information entry unit. After printing, patients can pay by scanning the A and B QR codes. The device payment verification unit receives the QR code A sent by the information entry unit and verifies whether the patient has paid. After detecting that the patient has paid, the QR code A is sent. The drug payment verification unit receives the B QR code sent by the information entry unit and verifies whether the patient has paid. After detecting that the patient has paid, the B QR code is sent. The information storage unit receives the A QR code sent by the device payment verification unit and the B QR code sent by the drug payment verification unit. It merges the A QR code and B QR code with the same patient name and identity information, generates a detailed expense statement, and stores it. The information verification unit verifies the identities of the person printing the receipt and the patient. The unit scans the person's ID card information and compares it with the patient's information from the expense statement. If the two match, the information verification unit generates and sends an electrical signal "1"; if the match fails, it generates and sends an electrical signal "0". The electronic invoice generation unit receives the electrical signal "1" sent by the information verification unit, extracts the expense details from the information storage unit, and generates an electronic invoice. The information alarm unit receives an electrical signal of "0" from the information verification unit. When the same person's identity information is verified by the information verification unit three times and the information verification unit's electrical signal is "0" three times, the information alarm unit will sound an alarm to attract the attention of relevant personnel. The ticket sending unit receives and stores the electronic tickets generated by the electronic ticket generation unit, and then sends the stored electronic tickets to the email address entered by the patient, so that the patient no longer needs to queue with a receipt in hand, thus improving convenience. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the framework structure of a big health data analysis system based on plant-based proteins provided by the present invention. Detailed Implementation
[0013] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
[0014] Example The present invention discloses a big health data analysis system based on plant-based proteins, including an information input unit for doctors to generate and send a QR code A based on the patient's name, identity information, cost of testing equipment, and cost of medication; and to generate and send a QR code B based on the patient's name, identity information, and cost of testing equipment. The payment printing unit extracts and prints the A and B QR codes generated by the information entry unit. After printing, patients can pay by scanning the A and B QR codes. The device payment verification unit is used to receive the QR code A sent by the information entry unit and verify whether the patient has paid. After detecting that the patient has paid, the QR code A is sent. The drug payment verification unit is used to receive the B QR code sent by the information entry unit and verify whether the patient has paid. After detecting that the patient has paid, the B QR code is sent. The information storage unit is used to receive the A QR code sent by the device payment verification unit and the B QR code sent by the drug payment verification unit, and to merge the A QR code and B QR code with the same patient name and identity information to generate a detailed expense statement and store it. The information verification unit is used to verify the identities of the person printing the receipt and the patient. The unit scans the person's ID card information and compares it with the patient's information from the expense statement. If the two match successfully, the unit generates and sends an electrical signal "1"; if the match fails, it generates and sends an electrical signal "0". The electronic invoice generation unit is used to receive the electrical signal "1" sent by the information verification unit, extract the expense details from the information storage unit, and generate an electronic invoice. The information alarm unit is used to receive the electrical signal "0" sent by the information verification unit. When the same person's identity information is verified by the information verification unit three times and the information verification unit's electrical signal is "0" three times, the information alarm unit will sound an alarm to attract the attention of relevant personnel. The document sending unit is used to receive and store electronic documents generated by the electronic document generation unit, and to transmit the stored electronic documents to the email address entered by the patient. The information correction unit is used to correct patient information. Doctors correct the name and identity information of the patient's fee name corresponding to the information storage unit based on the patient's identity information. The information alarm unit is a buzzer; The invoice printing unit is used to extract and print electronic invoices generated by the electronic invoice generation unit. The cloud storage unit is used to back up the cost details of the information storage unit to the cloud. The storage unit is equipped with a USE interface.
[0015] like Figure 1 As shown, the present invention discloses a big health data analysis system based on plant-based proteins. When the system is working, the doctor in the information entry unit generates and sends a QR code A based on the patient's name, identity information, cost of the testing equipment, and cost of the medicine. The patient's name, identity information, and cost of the testing equipment are used to generate a QR code B, which is also sent. The payment printing unit extracts and prints the A and B QR codes generated by the information entry unit. After printing, patients can pay by scanning the A and B QR codes. The device payment verification unit receives the QR code A sent by the information entry unit and verifies whether the patient has paid. After detecting that the patient has paid, the QR code A is sent. The drug payment verification unit receives the B QR code sent by the information entry unit and verifies whether the patient has paid. After detecting that the patient has paid, the B QR code is sent. The information storage unit receives the A QR code sent by the device payment verification unit and the B QR code sent by the drug payment verification unit. It merges the A QR code and B QR code with the same patient name and identity information, generates a detailed expense statement, and stores it. The information verification unit verifies the identities of the person printing the receipt and the patient. The unit scans the person's ID card information and compares it with the patient's information from the expense statement. If the two match, the information verification unit generates and sends an electrical signal "1"; if the match fails, it generates and sends an electrical signal "0". The electronic invoice generation unit receives the electrical signal "1" sent by the information verification unit, extracts the expense details from the information storage unit, and generates an electronic invoice. The information alarm unit receives an electrical signal of "0" from the information verification unit. When the same person's identity information is verified by the information verification unit three times and the information verification unit's electrical signal is "0" three times, the information alarm unit will sound an alarm to attract the attention of relevant personnel. The ticket sending unit receives and stores the electronic tickets generated by the electronic ticket generation unit, and sends the stored electronic tickets to the email address entered by the patient, so that the patient no longer has to queue with a receipt in hand, thus improving convenience. The information correction unit corrects patient information. In special circumstances, the patient's caregiver may register their information at the hospital. When correction is needed, the doctor will correct the name and identity information of the patient's fee name corresponding to the information storage unit based on the patient's identity information, thus improving convenience. The invoice printing unit extracts and prints the electronic invoices generated by the electronic invoice generation unit; The cloud storage unit performs cloud backups of the information storage unit's cost details to prevent data loss in case of unforeseen circumstances.
[0016] The big health data analysis system based on plant-based proteins of this invention uses common mechanical methods for installation, connection, or setup, and can be implemented as long as it achieves the beneficial effects. The information entry unit, fee printing unit, equipment payment verification unit, drug payment verification unit, information storage unit, information verification unit, electronic invoice generation unit, information alarm unit, invoice sending unit, information correction unit, invoice printing unit, and cloud storage unit of the big health data analysis system based on plant-based proteins of this invention are commercially available. Technical personnel in this industry only need to install and operate it according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0017] All technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items. Furthermore, in the description of this invention, unless otherwise expressly specified and limited, the terms "set," "install," "connect," "link," and "fix" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; a mechanical connection or an electrical connection; a direct connection or an indirect connection through an intermediate medium; or a connection within two elements or an interaction between two elements. Those skilled in the art will understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0018] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A big health data analysis system based on plant-based proteins, characterized in that, The information entry unit is used by doctors to input the patient's name, identity information, cost of testing equipment, and cost of medication. It generates and sends a QR code (A) for the patient's name, identity information, and cost of testing equipment, and generates and sends a QR code (B) for the patient's name, identity information, and cost of medication. The payment printing unit extracts and prints the A and B QR codes generated by the information entry unit. After printing, patients can pay by scanning the A and B QR codes. The device payment verification unit is used to receive the QR code A sent by the information entry unit and verify whether the patient has paid. After detecting that the patient has paid, the QR code A is sent. The drug payment verification unit is used to receive the B QR code sent by the information entry unit and verify whether the patient has paid. After detecting that the patient has paid, the B QR code is sent. The information storage unit is used to receive the A QR code sent by the device payment verification unit and the B QR code sent by the drug payment verification unit, and to merge the A QR code and B QR code with the same patient name and identity information to generate a detailed expense statement and store it. The information verification unit is used to verify the identities of the person printing the receipt and the patient. The unit scans the person's ID card information and compares it with the patient's information from the expense statement. If the two match successfully, the unit generates and sends an electrical signal "1"; if the match fails, it generates and sends an electrical signal "0". The electronic invoice generation unit is used to receive the electrical signal "1" sent by the information verification unit, extract the expense details from the information storage unit, and generate an electronic invoice. The information alarm unit is used to receive the electrical signal "0" sent by the information verification unit. When the same person's identity information is verified by the information verification unit three times and the electrical signal of the information verification unit is "0" three times, the information alarm unit will sound an alarm to attract the attention of relevant staff. The document sending unit is used to receive and store electronic documents generated by the electronic document generation unit, and to transmit the stored electronic documents to the email address entered by the patient.
2. The big data analysis system for plant-based proteins as described in claim 1, characterized in that, It also includes an information correction unit, used to correct patient information. Doctors correct the name and identity information of the patient's fee name corresponding to the information storage unit based on the patient's identity information.
3. The big health data analysis system based on plant-based proteins as described in claim 2, characterized in that, The information alarm unit is a buzzer.
4. The big health data analysis system based on plant-based proteins as described in claim 3, characterized in that, It also includes a ticket printing unit for extracting and printing electronic tickets generated by the electronic ticket generation unit.
5. The big data analysis system for plant-based proteins as described in claim 4, characterized in that, It also includes a cloud storage unit for backing up the cost details of the information storage unit to the cloud.
6. The big health data analysis system based on plant-based proteins as described in claim 5, characterized in that, It also includes a USE interface, which is provided on the storage unit.
7. The method for electronic management of medical invoices based on blockchain technology as described in claim 6, characterized in that, The doctor generates and sends a QR code containing the patient's name, identity information, cost of testing equipment, and cost of medication. The doctor also generates and sends a QR code containing the patient's name, identity information, and cost of testing equipment. Extract and print QR codes A and B. Patients can then scan QR codes A and B to make payment. Receive information A QR code and verify whether the patient has paid. Once payment is detected, send QR code A. Receive the B QR code and verify whether the patient has paid. Once payment is detected, send the B QR code. Receive and send QR codes A and B, merge the information of QR codes A and B with the same patient name and identity information, generate a detailed cost statement and store it; The system verifies the identities of the person printing the receipt and the patient. The information verification unit scans the person's ID card information and compares it with the patient information in the expense details sheet. If the two match successfully, an electrical signal "1" is generated and sent; if the two do not match successfully, an electrical signal "0" is generated and sent. Receive electrical signal "1", retrieve the expense details and generate an electronic invoice; When the same person's identity information is verified by the information verification unit, if the three electrical signals are all "0", an alarm will sound to attract the attention of relevant staff. Receive and store electronic tickets, and send the stored electronic tickets to the email address entered by the patient.