WO2022068184A1 - 基于区块链的货币交易方法、系统和装置 - Google Patents

基于区块链的货币交易方法、系统和装置 Download PDF

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WO2022068184A1
WO2022068184A1 PCT/CN2021/089137 CN2021089137W WO2022068184A1 WO 2022068184 A1 WO2022068184 A1 WO 2022068184A1 CN 2021089137 W CN2021089137 W CN 2021089137W WO 2022068184 A1 WO2022068184 A1 WO 2022068184A1
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currency
transaction
blockchain
medication data
medication
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PCT/CN2021/089137
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English (en)
French (fr)
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韩磊
杨军
何钟强
关路辉
徐山豹
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北京京东拓先科技有限公司
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Priority to US18/026,305 priority Critical patent/US20240070704A1/en
Priority to EP21873848.2A priority patent/EP4224481A4/en
Publication of WO2022068184A1 publication Critical patent/WO2022068184A1/zh

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Definitions

  • the embodiments of the present application relate to the field of computer technology, in particular to the field of blockchain technology, and in particular to a method, system and device for currency transaction based on blockchain.
  • Medication adherence refers to the consistency of a patient's medication with the doctor's order, and from the perspective of drug therapy, medication adherence refers to the degree to which a patient implements a medication regimen.
  • drug compliance There are many factors affecting drug compliance, involving patients, medical staff, society, family and other aspects, and poor drug compliance is a common phenomenon in elderly patients. With the decline of daily living ability of elderly patients, insufficient cognitive ability, and increasing dependence on drugs, and the elderly generally take many kinds of drugs, the treatment plan of drugs is more complicated, and a management method for drug use is required. to improve patient compliance with medication.
  • the present application provides a blockchain-based currency transaction method, system, device, device, and storage medium.
  • a blockchain-based currency transaction method includes: receiving various service requests related to medication data from different users, and obtaining the first corresponding to the various service requests from different users.
  • a currency wherein the first currency is obtained based on the rationality analysis of the user's medication data; according to the first currency corresponding to various service requests of different users, the first currency in the blockchain reward pool corresponding to the first currency is determined.
  • Second currency through the smart contract mechanism, the transfer of the second currency is completed and the transaction is completed, wherein the transfer is used to represent the distribution of the second currency to each user in the form of a reward, and the purpose of the transaction is to exchange for goods or services.
  • receiving various types of service requests related to medication data from different users, and acquiring the first currency corresponding to various types of service requests from different users includes: receiving service purchase requests related to medication data sent by different requesting nodes , obtain the first currency corresponding to the service purchase request; receive transaction requests related to medication data between nodes, and obtain the first currency corresponding to the transaction request, wherein the first currency corresponding to the transaction request represents the currency exchange between the local node and other nodes Handling fees generated during transactions; receive data management requests related to medication data sent by different requesting nodes, and obtain the first currency corresponding to the data management requests.
  • the second currency in the blockchain reward pool corresponding to the first currency is determined according to the first currency corresponding to various types of service requests of different users, including: the first currency for all users corresponding to various types of service requests One currency is analyzed to obtain the second currency in the blockchain reward pool corresponding to the first currency; and/or, the first currency corresponding to all service requests of each user is analyzed to obtain the blockchain corresponding to the first currency.
  • the second currency in the reward pool is determined according to the first currency corresponding to various types of service requests of different users, including: the first currency for all users corresponding to various types of service requests One currency is analyzed to obtain the second currency in the blockchain reward pool corresponding to the first currency; and/or, the first currency corresponding to all service requests of each user is analyzed to obtain the blockchain corresponding to the first currency.
  • the second currency in the reward pool is determined according to the first currency corresponding to various types of service requests of different users, including: the first currency for all users corresponding to various types of service requests One currency is analyzed to obtain the second currency in the blockchain
  • the transfer method of the second currency includes at least one of the following: investing the second currency in a challenge, issuing the second currency as a ranking reward, issuing the second currency as a salary of the management node, and The second currency is issued as a transaction fee to other nodes other than the local node participating in the transaction, wherein the management node represents the node that manages the medication data of different users.
  • the method further includes: monitoring the first currency and the second currency corresponding to various service requests of different users; and optimizing system parameters based on the monitoring results.
  • a blockchain-based currency transaction system comprising: a service platform, wherein the service platform is configured to execute the above-mentioned blockchain-based currency transaction method.
  • the system further includes: a requesting node; the requesting node is configured to receive medication data sent by a user, and generate a first currency corresponding to the medication data of the user by a currency determination method, wherein the currency determination method is used to characterize The medication data is converted into the first currency based on the medication dependence; various service requests related to the medication data are sent according to the first currency.
  • a requesting node configured to receive medication data sent by a user, and generate a first currency corresponding to the medication data of the user by a currency determination method, wherein the currency determination method is used to characterize The medication data is converted into the first currency based on the medication dependence; various service requests related to the medication data are sent according to the first currency.
  • the requesting node is also used to record the medication data in the blockchain and manage the recorded medication data.
  • a blockchain-based currency transaction device comprising: an obtaining unit configured to receive various service requests related to medication data from different users, and obtain various types of service requests from different users.
  • the first currency corresponding to the service request wherein the first currency is obtained based on the rationality analysis of the user's medication data;
  • the determining unit is configured to determine the first currency according to the first currency corresponding to various types of service requests of different users.
  • the transfer unit is configured to complete the transfer of the second currency and complete the transaction through the smart contract mechanism, wherein the transfer is used to represent the issuance of the second currency as a reward
  • the purpose of the transaction is to exchange for an item or service.
  • the obtaining unit includes: a first obtaining module, configured to receive service purchase requests related to medication data sent by different requesting nodes, and obtain a first currency corresponding to the service purchase request; a second obtaining module, configured by is configured to receive transaction requests related to medication data between each node, and obtain the first currency corresponding to the transaction request, wherein the first currency corresponding to the transaction request represents the handling fee generated when the local node conducts currency transactions with other nodes; third The obtaining module is configured to receive data management requests related to medication data sent by different requesting nodes, and obtain the first currency corresponding to the data management requests.
  • the determining unit includes: a first analysis module configured to analyze the first currencies of all users corresponding to various types of service requests, and obtain the second currency in the blockchain reward pool corresponding to the first currency Currency; the second analysis module is configured to analyze the first currency corresponding to all service requests of each user, and obtain the second currency in the blockchain reward pool corresponding to the first currency.
  • the transfer method of the second currency in the transfer unit includes at least one of the following: investing the second currency in a challenge competition, issuing the second currency as a ranking reward, and using the second currency as a management node's Salary payment and payment of the second currency as transaction fee to other nodes other than the local node participating in the transaction, wherein the management node represents the node that manages the medication data of different users.
  • the device further includes: a monitoring unit configured to monitor the first currency and second currency corresponding to various types of service requests of different users; an optimization unit configured to monitor system parameters based on the monitoring results optimization.
  • an electronic device comprising: at least one processor; and a memory communicatively connected to the at least one processor; wherein the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor.
  • the at least one processor executes to enable the at least one processor to perform a method as described in any implementation of the first aspect.
  • the present application provides a non-transitory computer-readable storage medium storing computer instructions, wherein the computer instructions are used to cause a computer to execute the method described in any implementation manner of the first aspect .
  • the data generated by the user's medication on time can be used to obtain the first currency of corresponding value, and the first currency can be exchanged for the goods or services of the same value in subsequent applications;
  • the smart contract of the blockchain the user's Medication data (that is, the user's medication status and implementation status) are managed, and the method of managing users' medication by blockchain smart contracts is realized. This method is automatically executed and cannot be cheated; the blockchain smart contract technology is used to make the data authentic and credible;
  • the blockchain reward the user's medication data is collected and the corresponding value is generated, so that the user can better take the medicine on time and according to the amount, which improves the user's enthusiasm for taking medication on time, and makes the user's medication dependence higher.
  • FIG. 1 is a schematic diagram of a first embodiment of a blockchain-based currency transaction method according to the present application
  • FIG. 2 is a scene diagram that can implement the blockchain-based currency transaction method according to the embodiment of the present application
  • FIG. 3 is a schematic diagram of a second embodiment of a blockchain-based currency transaction method according to the present application.
  • FIG. 4 is a schematic structural diagram of an embodiment of a blockchain-based currency transaction system according to the present application.
  • FIG. 5 is a schematic structural diagram of an embodiment of a blockchain-based currency transaction device according to the present application.
  • FIG. 6 is a block diagram of an electronic device used to implement the blockchain-based currency transaction method according to the embodiment of the present application.
  • FIG. 1 shows a schematic diagram 100 of a first embodiment of a blockchain-based currency transaction method according to the present application.
  • the blockchain-based currency transaction method includes the following steps:
  • Step 101 Receive various service requests related to medication data from different users, and acquire the first currency corresponding to the various service requests from different users.
  • the execution body (for example, the service platform) can receive various service requests related to medication data from different users through wired or wireless connection, and obtain different users by analyzing the content of the various service requests.
  • the first currency is used to represent the corresponding value obtained by the user's medication data.
  • the first currency can be obtained based on the rationality analysis of the user's medication data.
  • the medication rationality is used to characterize whether the user's medication is on time, in the amount and in compliance with the relevant requirements of the doctor's order.
  • Medication rationality analysis can refer to medication compliance. When the user's medication dependence is higher, the corresponding user's medication data is more valuable, and the user obtains a higher first monetary reward.
  • wireless connection methods may include but are not limited to 3G, 4G, 5G connection, WiFi connection, Bluetooth connection, WiMAX connection, Zigbee connection, UWB (ultra wideband) connection, and other wireless connection currently known or developed in the future connection method.
  • Step 102 Determine the second currency in the blockchain reward pool corresponding to the first currency according to the first currency corresponding to various service requests of different users.
  • the execution body may select the first currency corresponding to various service requests of different users obtained in step 101, and determine the second currency in the blockchain reward pool corresponding to the first currency based on the selection result.
  • the selection result can be part or all of the first currency to be used as the second currency in the reward pool.
  • Step 103 through the smart contract mechanism, complete the transfer of the second currency and complete the transaction.
  • the execution subject can complete the transfer of the second currency and complete the transaction through the smart contract mechanism of the blockchain according to the second currency obtained in step 102.
  • Transfer is used to characterize the distribution of the second currency to each user in the form of a reward, and the purpose of the transaction is to exchange for an item or service.
  • the transfer method of the second currency may include: basic mining, inviting new people, authorizing data to others, participating in clinical trials, etc.
  • the blockchain-based currency transaction method 200 of this embodiment runs in the service platform 201 .
  • the service platform 201 receives various service requests related to medication data from different users, it acquires the first currency 202 corresponding to the various service requests from different users, and then the service platform 201 obtains the first currency 202 corresponding to the various service requests from different users.
  • One currency determine the second currency 203 in the blockchain reward pool corresponding to the first currency, and finally the service platform 201 completes the transfer of the second currency and completes the transaction 204 through the smart contract mechanism.
  • the blockchain-based currency transaction method uses the data generated by the user to take medication on time, and can obtain the first currency of corresponding value, and the first currency can be exchanged for items or services of equivalent value in subsequent applications;
  • the user's medication data that is, the user's medication status and implementation status
  • the method of managing the user's medication by the blockchain smart contract is realized.
  • This method is automatically executed and cannot be cheated;
  • the blockchain smart contract technology makes the data authentic and credible; through the blockchain reward, the user's medication data is collected and the corresponding value is generated, so that the user can better take the medicine on time and according to the amount, which improves the user's enthusiasm for taking medicine on time, so that the user can take medicine on time. higher drug dependence.
  • FIG. 3 a schematic diagram 300 of a second embodiment of a blockchain-based currency transaction method is shown.
  • the flow of the method includes the following steps:
  • Step 301 Receive service purchase requests related to medication data sent by different requesting nodes, obtain a first currency corresponding to the service purchase request, receive transaction requests related to medication data between nodes, and obtain a first currency corresponding to the transaction request, Receive data management requests related to medication data sent by different requesting nodes, and obtain the first currency corresponding to the data management requests.
  • the execution body can receive service purchase requests related to medication data sent by different requesting nodes, receive transaction requests related to medication data between various nodes, and receive data management related to medication data sent by different requesting nodes. request, and obtain the corresponding first currency based on the received different requests.
  • the first currency is obtained based on the rationality analysis of the user's medication data.
  • the first currency corresponding to the transaction request can represent the handling fee generated when the local node conducts currency transactions with other nodes.
  • the first currency corresponding to the service purchase request is used for Represents the first currency that the user needs to pay for purchasing health services, and the first currency corresponding to the data management request can represent the management fee required for management operations such as query and change of data related to medication data.
  • Step 302 analyze the first currencies of all users corresponding to various service requests, and obtain the second currency in the blockchain reward pool corresponding to the first currency.
  • the execution body analyzes the first currencies of all users corresponding to various service requests obtained in step 301, and obtains the second currency in the blockchain reward pool corresponding to the first currency.
  • determining the second currency in the blockchain reward pool corresponding to the first currency further includes: analyzing the first currency corresponding to all service requests of each user to obtain the first currency.
  • Step 303 through the smart contract mechanism, complete the transfer of the second currency and complete the transaction.
  • the transfer method of the second currency includes at least one of the following: investing the second currency in a challenge competition, issuing the second currency as a ranking reward, using the second currency as a The salary payment of the management node and the payment of the second currency as a transaction fee to other nodes (third-party nodes) other than the local node participating in the transaction, wherein the management node represents the node that manages the medication data of different users.
  • the data generated by users' rational drug use can eventually be converted into the needs of third parties, thereby obtaining corresponding value; users' drug dependence can be improved by obtaining rewards in various ways, and users with high dependence can maintain this good habit. , to obtain more value, thus forming a virtuous circle and improving drug dependence.
  • the method further includes: monitoring the first currency and the second currency corresponding to various service requests of different users; and optimizing system parameters based on the monitoring results.
  • the optimization takes the preservation of the value of the first currency as the adjustment target.
  • the user can make the first currency reach a balance of payments by taking medicines on time, preventing the system from causing inflation and causing the first currency to depreciate, so as to reduce the user's drug dependence risk and achieve Effective management.
  • step 303 is basically the same as the operation of step 103 in the embodiment shown in FIG. 1 , and details are not repeated here.
  • the schematic diagram 300 of the blockchain-based currency transaction method in this embodiment adopts receiving service purchase requests related to medication data sent by different requesting nodes, Obtain the first currency corresponding to the service purchase request, receive transaction requests related to medication data between nodes, obtain the first currency corresponding to the transaction request, receive data management requests related to medication data sent by different requesting nodes, and obtain data management Request the corresponding first currency, analyze the first currency of all users corresponding to various service requests, obtain the second currency in the blockchain reward pool corresponding to the first currency, and complete the second currency through the smart contract mechanism. Transfer and complete transactions, by obtaining the first currency corresponding to various types of service requests, expanding the scope of data collection, making the data more refined and rich, thus realizing a more refined method of blockchain smart contract management of user medication .
  • the present application provides a blockchain-based currency transaction system.
  • the system includes: a request node 401 and a service platform 402 , wherein the service platform is used to execute the above-mentioned blockchain-based currency transaction system.
  • currency trading method The requesting node is used to receive the medication data sent by the user, generate the user's first currency corresponding to the medication data by using the currency determination method, and put the first currency into the mining pool, wherein the currency determination method is used to characterize the drug dependence based on The medication data is converted into the first currency; according to the first currency, various service requests related to the medication data are sent. When the user's medication dependence is higher, the corresponding user's medication data is more valuable, and the user obtains a higher first monetary reward.
  • the requesting node is also used to record the medication data in the blockchain and manage the recorded medication data.
  • the data is authentic and unchangeable, and the data can be authorized and managed to generate value.
  • the present application provides an embodiment of a blockchain-based currency transaction device, which is the same as the method embodiment shown in FIG. 1 .
  • the apparatus can be specifically applied to various electronic devices.
  • the blockchain-based currency transaction device 500 of this embodiment includes: an acquisition unit 501 , a determination unit 502 and a transfer unit 503 , wherein the acquisition unit is configured to receive medication data related to different users Various types of service requests, to obtain the first currency corresponding to various types of service requests of different users, wherein the first currency is obtained based on the rationality analysis of the user's medication data; the determining unit is configured to The first currency corresponding to the service request determines the second currency in the blockchain reward pool corresponding to the first currency; the transfer unit is configured to complete the transfer of the second currency and complete the transaction through the smart contract mechanism. It is used to characterize that the second currency is distributed to each user in the form of a reward, and the purpose of the transaction is to exchange for goods or services.
  • the specific processing of the acquisition unit 501 , the determination unit 502 and the transfer unit 503 of the blockchain-based currency transaction device 500 and the technical effects brought about by them may refer to the steps in the corresponding embodiment of FIG. 1 respectively.
  • the related descriptions from 101 to 103 are not repeated here.
  • the obtaining unit includes: a first obtaining module, configured to receive service purchase requests related to medication data sent by different requesting nodes, and obtain the first currency corresponding to the service purchase request
  • the second acquisition module is configured to receive transaction requests related to medication data between various nodes, and acquire the first currency corresponding to the transaction request, wherein the first currency corresponding to the transaction request represents when the local node conducts currency transactions with other nodes
  • the generated handling fee is configured to receive data management requests related to medication data sent by different requesting nodes, and obtain the first currency corresponding to the data management requests.
  • the determining unit includes: a first analysis module, configured to analyze the first currencies of all users corresponding to various types of service requests, and obtain blocks corresponding to the first currencies The second currency in the chain reward pool; the second analysis module is configured to analyze the first currency corresponding to all service requests of each user, and obtain the second currency in the blockchain reward pool corresponding to the first currency.
  • the transfer method of the second currency in the transfer unit includes at least one of the following contents: investing the second currency in a challenge competition, issuing the second currency as a ranking reward, placing The second currency is used as the salary of the management node and the second currency is distributed as transaction fee to other nodes participating in the transaction except the local node, wherein the management node represents the node that manages the medication data of different users.
  • the apparatus further includes: a monitoring unit configured to monitor the first currency and second currency corresponding to various types of service requests of different users; an optimization unit configured to monitor the first currency and the second currency corresponding to various service requests of different users; Monitor the results and optimize the system parameters.
  • the present application further provides an electronic device and a readable storage medium.
  • FIG. 6 it is a block diagram of an electronic device of a blockchain-based currency transaction method according to an embodiment of the present application.
  • Electronic devices are intended to represent various forms of digital computers, such as laptops, desktops, workstations, personal digital assistants, servers, blade servers, mainframe computers, and other suitable computers.
  • Electronic devices may also represent various forms of mobile devices, such as personal digital processors, cellular phones, smart phones, wearable devices, and other similar computing devices.
  • the components shown herein, their connections and relationships, and their functions are by way of example only, and are not intended to limit implementations of the application described and/or claimed herein.
  • the electronic device includes: one or more processors 601, a memory 602, and interfaces for connecting various components, including a high-speed interface and a low-speed interface.
  • the various components are interconnected using different buses and may be mounted on a common motherboard or otherwise as desired.
  • the processor may process instructions executed within the electronic device, including instructions stored in or on memory to display graphical information of the GUI on an external input/output device, such as a display device coupled to the interface.
  • multiple processors and/or multiple buses may be used with multiple memories and multiple memories, if desired.
  • multiple electronic devices may be connected, each providing some of the necessary operations (eg, as a server array, a group of blade servers, or a multiprocessor system).
  • a processor 601 is taken as an example in FIG. 6 .
  • the memory 602 is the non-transitory computer-readable storage medium provided by the present application.
  • the memory stores instructions executable by at least one processor, so that the at least one processor executes the blockchain-based currency transaction method provided by the present application.
  • the non-transitory computer-readable storage medium of the present application stores computer instructions for causing the computer to execute the blockchain-based currency transaction method provided by the present application.
  • the memory 602 can be used to store non-transitory software programs, non-transitory computer-executable programs and modules, such as program instructions/ modules (for example, the acquisition unit 501, the determination unit 502, and the transfer unit 503 shown in FIG. 5).
  • the processor 601 executes various functional applications and data processing of the server by running the non-transitory software programs, instructions and modules stored in the memory 602, that is, to implement the blockchain-based currency transaction method in the above method embodiments.
  • the memory 602 may include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application program required for at least one function; the storage data area may store an application program created according to the use of the blockchain-based currency transaction electronic device data etc. Additionally, memory 602 may include high-speed random access memory, and may also include non-transitory memory, such as at least one magnetic disk storage device, flash memory device, or other non-transitory solid state storage device. In some embodiments, memory 602 may optionally include memory located remotely relative to processor 601 that may be connected to the blockchain-based currency transaction electronics via a network. Examples of such networks include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
  • the electronic device of the blockchain-based currency transaction method may further include: an input device 603 and an output device 604 .
  • the processor 601 , the memory 602 , the input device 603 and the output device 604 may be connected by a bus or in other ways, and the connection by a bus is taken as an example in FIG. 6 .
  • the input device 603 can receive input numerical or character information, and generate key signal input related to user settings and function control of the blockchain-based currency transaction electronic device, such as a touch screen, keypad, mouse, trackpad, touchpad, An input device such as a pointing stick, one or more mouse buttons, trackball, joystick, etc.
  • Output devices 604 may include display devices, auxiliary lighting devices (eg, LEDs), haptic feedback devices (eg, vibration motors), and the like.
  • the display device may include, but is not limited to, a liquid crystal display (LCD), a light emitting diode (LED) display, and a plasma display. In some implementations, the display device may be a touch screen.
  • Various implementations of the systems and techniques described herein can be implemented in digital electronic circuitry, integrated circuit systems, application specific ASICs (application specific integrated circuits), computer hardware, firmware, software, and/or combinations thereof. These various embodiments may include being implemented in one or more computer programs executable and/or interpretable on a programmable system including at least one programmable processor that The processor, which may be a special purpose or general-purpose programmable processor, may receive data and instructions from a storage system, at least one input device, and at least one output device, and transmit data and instructions to the storage system, the at least one input device, and the at least one output device an output device.
  • the processor which may be a special purpose or general-purpose programmable processor, may receive data and instructions from a storage system, at least one input device, and at least one output device, and transmit data and instructions to the storage system, the at least one input device, and the at least one output device an output device.
  • machine-readable medium and “computer-readable medium” refer to any computer program product, apparatus, and/or apparatus for providing machine instructions and/or data to a programmable processor ( For example, magnetic disks, optical disks, memories, programmable logic devices (PLDs), including machine-readable media that receive machine instructions as machine-readable signals.
  • machine-readable signal refers to any signal used to provide machine instructions and/or data to a programmable processor.
  • the systems and techniques described herein may be implemented on a computer having a display device (eg, a CRT (cathode ray tube) or LCD (liquid crystal display) monitor) for displaying information to the user ); and a keyboard and pointing device (eg, a mouse or trackball) through which a user can provide input to the computer.
  • a display device eg, a CRT (cathode ray tube) or LCD (liquid crystal display) monitor
  • a keyboard and pointing device eg, a mouse or trackball
  • Other kinds of devices can also be used to provide interaction with the user; for example, the feedback provided to the user can be any form of sensory feedback (eg, visual feedback, auditory feedback, or tactile feedback); and can be in any form (including acoustic input, voice input, or tactile input) to receive input from the user.
  • the systems and techniques described herein may be implemented on a computing system that includes back-end components (eg, as a data server), or a computing system that includes middleware components (eg, an application server), or a computing system that includes front-end components (eg, a user's computer having a graphical user interface or web browser through which a user may interact with implementations of the systems and techniques described herein), or including such backend components, middleware components, Or any combination of front-end components in a computing system.
  • the components of the system may be interconnected by any form or medium of digital data communication (eg, a communication network). Examples of communication networks include: Local Area Networks (LANs), Wide Area Networks (WANs), and the Internet.
  • a computer system can include clients and servers.
  • Clients and servers are generally remote from each other and usually interact through a communication network.
  • the relationship of client and server arises by computer programs running on the respective computers and having a client-server relationship to each other.
  • the data generated by the user's medication on time can be used to obtain the first currency of the corresponding value, and the first currency can be exchanged for items or services of the same value in subsequent applications; through the smart contract of the blockchain, Manage the user's medication data (that is, the user's medication status and implementation status), and implement a blockchain smart contract to manage the user's medication, which is automatically executed and cannot be cheated; using blockchain smart contract technology to make the data true Credible; through blockchain rewards, the user's medication data is collected and the corresponding value is generated, so that the user can better take the medicine on time and according to the amount, which improves the user's enthusiasm for taking medication on time, and makes the user's medication dependence higher.
  • the smart contract of the blockchain Manage the user's medication data (that is, the user's medication status and implementation status), and implement a blockchain smart contract to manage the user's medication, which is automatically executed and cannot be cheated; using blockchain smart contract technology to make the data true Credible; through blockchain rewards, the user's medication data is collected

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Abstract

提供了一种基于区块链的货币交易方法、系统和装置,方案为:接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,其中,第一货币基于对用户的用药数据进行用药合理性分析而得到;根据不同用户的各类服务请求对应的第一货币,确定第一货币对应的区块链奖励池中的第二货币;通过智能合约机制,完成第二货币的转移并完成交易,其中,转移用于表征将第二货币以奖励的方式发放给各个用户,交易的目的为换取物品或服务。该方案通过区块链的智能合约,对用户的用药数据进行管理,实现了区块链智能合约管理用户用药的方法。

Description

基于区块链的货币交易方法、系统和装置
本专利申请要求于2020年9月29日提交的、申请号为202011051076.9、申请人为北京京东拓先科技有限公司、发明名称为“基于区块链的货币交易方法、系统和装置”的中国专利申请的优先权,该申请的全文以引用的方式并入本申请中。
技术领域
本申请的实施例涉及计算机技术领域,具体涉及区块链技术领域,尤其涉及基于区块链的货币交易方法、系统和装置。
背景技术
药物依从性是指患者用药与医嘱的一致性,而从药物治疗的角度,药物依从性是指患者对药物治疗方案的执行程度。影响药物依从性的因素众多,涉及患者、医务人员、社会、家庭等各个方面,而药物依从性差是老年患者中的一个常见现象。随着老年患者日常生活能力下降,认知能力不足,对药物的依赖性越来越强,而且老年人服用的药品一般种类较多,药物的治疗方案较复杂,需要一款针对用药的管理办法来提高患者的药物依从性。
发明内容
本申请提供了一种基于区块链的货币交易方法、系统、装置、设备以及存储介质。
根据本申请的第一方面,提供了一种基于区块链的货币交易方法,该方法包括:接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,其中,第一货币基于对用户的用药数据进行用药合理性分析而得到;根据不同用户的各类服务请求对应的第一货币,确定第一货币对应的区块链奖励池中的第二货币;通过智能合约机制,完成第二货币的转移并完成交易,其中,转移用于表征将第二货币以 奖励的方式发放给各个用户,交易的目的为换取物品或服务。
在一些实施例中,接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,包括:接收不同请求节点发送的与用药数据有关的服务购买请求,获取服务购买请求对应的第一货币;接收各个节点之间与用药数据相关的交易请求,获取交易请求对应的第一货币,其中,交易请求对应的第一货币表征本地节点与其他节点进行货币交易时产生的手续费;接收不同请求节点发送的与用药数据相关的数据管理请求,获取数据管理请求对应的第一货币。
在一些实施例中,根据不同用户的各类服务请求对应的第一货币,确定第一货币对应的区块链奖励池中的第二货币,包括:针对各类服务请求对应的所有用户的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币;和/或,针对各个用户的所有服务请求对应的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币。
在一些实施例中,第二货币的转移方式包括以下内容中的至少一项:将第二货币投资挑战赛、将第二货币作为排行奖励发放、将第二货币作为管理节点的工资发放和将第二货币作为交易费发放给参与交易的除本地节点以外的其他节点,其中,管理节点表征对不同用户的用药数据进行管理的节点。
在一些实施例中,方法还包括:对不同用户的各类服务请求对应的第一货币和第二货币进行监控;基于监控结果,对系统参数进行优化。
根据本申请的第二方面,提供了一种基于区块链的货币交易系统,系统包括:服务平台,其中,服务平台用于执行上述基于区块链的货币交易方法。
在一些实施例中,系统还包括:请求节点;请求节点,用于接收用户发送的用药数据,利用货币确定方法生成该用户的与用药数据对应的第一货币,其中,货币确定方法用于表征基于用药依存性将用药数据转换为第一货币;根据第一货币,发送与用药数据相关的各类服务请求。
在一些实施例中,请求节点还用于将用药数据记录在区块链中,并对记录的用药数据进行管理。
根据本申请的第三方面,提供了一种基于区块链的货币交易装置,装 置包括:获取单元,被配置成接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,其中,第一货币基于对用户的用药数据进行用药合理性分析而得到;确定单元,被配置成根据不同用户的各类服务请求对应的第一货币,确定第一货币对应的区块链奖励池中的第二货币;转移单元,被配置成通过智能合约机制,完成第二货币的转移并完成交易,其中,转移用于表征将第二货币以奖励的方式发放给各个用户,交易的目的为换取物品或服务。
在一些实施例中,获取单元,包括:第一获取模块,被配置成接收不同请求节点发送的与用药数据有关的服务购买请求,获取服务购买请求对应的第一货币;第二获取模块,被配置成接收各个节点之间与用药数据相关的交易请求,获取交易请求对应的第一货币,其中,交易请求对应的第一货币表征本地节点与其他节点进行货币交易时产生的手续费;第三获取模块,被配置成接收不同请求节点发送的与用药数据相关的数据管理请求,获取数据管理请求对应的第一货币。
在一些实施例中,确定单元,包括:第一分析模块,被配置成针对各类服务请求对应的所有用户的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币;第二分析模块,被配置成针对各个用户的所有服务请求对应的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币。
在一些实施例中,转移单元中的第二货币的转移方式包括以下内容中的至少一项:将第二货币投资挑战赛、将第二货币作为排行奖励发放、将第二货币作为管理节点的工资发放和将第二货币作为交易费发放给参与交易的除本地节点以外的其他节点,其中,管理节点表征对不同用户的用药数据进行管理的节点。
在一些实施例中,装置还包括:监控单元,被配置成对不同用户的各类服务请求对应的第一货币和第二货币进行监控;优化单元,被配置成基于监控结果,对系统参数进行优化。
根据本申请的第四方面,提供了一种电子设备,包括:至少一个处理器;以及与至少一个处理器通信连接的存储器;其中,存储器存储有可被至少一个处理器执行的指令,指令被至少一个处理器执行,以使至少一个 处理器能够执行如第一方面中任一实现方式描述的方法。
根据本申请的第五方面,本申请提供了一种存储有计算机指令的非瞬时计算机可读存储介质,其特征在于,计算机指令用于使计算机执行如第一方面中任一实现方式描述的方法。
根据本申请的技术采用用户按时用药产生的数据,可以获得相应价值的第一货币,第一货币可以在之后的应用中换取等值的物品或服务;通过区块链的智能合约,对用户的用药数据(即用户的用药情况和实施状况)进行管理,实现了区块链智能合约管理用户用药的方法,该方法自动执行且不可作弊;利用区块链智能合约技术,使数据真实可信;通过区块链奖励,收集用户的用药数据并产生相应的价值,使得用户可以更好的按时按量吃药,提高了用户按时用药的积极性,使得用户的用药依存性更高。
应当理解,本部分所描述的内容并非旨在标识本申请的实施例的关键或重要特征,也不用于限制本申请的范围。本申请的其它特征将通过以下的说明书而变得容易理解。
附图说明
附图用于更好地理解本方案,不构成对本申请的限定。
图1是根据本申请的基于区块链的货币交易方法的第一实施例的示意图;
图2是可以实现本申请实施例的基于区块链的货币交易方法的场景图;
图3是根据本申请的基于区块链的货币交易方法的第二实施例的示意图;
图4是根据本申请的基于区块链的货币交易系统的一个实施例的结构示意图;
图5是根据本申请的基于区块链的货币交易装置的一个实施例的结构示意图;
图6是用来实现本申请实施例的基于区块链的货币交易方法的电子设备的框图。
具体实施方式
以下结合附图对本申请的示范性实施例做出说明,其中包括本申请实施例的各种细节以助于理解,应当将它们认为仅仅是示范性的。因此,本领域普通技术人员应当认识到,可以对这里描述的实施例做出各种改变和修改,而不会背离本申请的范围和精神。同样,为了清楚和简明,以下的描述中省略了对公知功能和结构的描述。
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本申请。
图1示出了根据本申请的基于区块链的货币交易方法的第一实施例的示意图100。该基于区块链的货币交易方法,包括以下步骤:
步骤101,接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币。
在本实施例中,执行主体(例如服务平台)可以通过有线连接或无线连接的方式接收不同用户的与用药数据有关的各类服务请求,通过对各类服务请求进行内容解析,获取到不同用户的各类服务请求对应的第一货币。第一货币用于表征用户用药数据获得的相应价值,第一货币可以基于对用户的用药数据进行用药合理性分析而得到,用药合理性用于表征用户用药是否按时按量且遵循医嘱的相关要求,用药合理性分析可以指用药依从性,当用户的用药依存性越高,相应用户的用药数据越值钱,用户获得的第一货币奖励越高。需要指出的是,上述无线连接方式可以包括但不限于3G、4G、5G连接、WiFi连接、蓝牙连接、WiMAX连接、Zigbee连接、UWB(ultra wideband)连接、以及其他现在已知或将来开发的无线连接方式。
步骤102,根据不同用户的各类服务请求对应的第一货币,确定第一货币对应的区块链奖励池中的第二货币。
在本实施例中,执行主体可以根据步骤101获取到的不同用户的各类服务请求对应的第一货币进行选取,基于选取结果确定第一货币对应的区块链奖励池中的第二货币。选取结果可以为部分或全部第一货币,用以作为奖励池中的第二货币。
步骤103,通过智能合约机制,完成第二货币的转移并完成交易。
在本实施例中,执行主体可以根据步骤102中得到的第二货币,通过 区块链的智能合约机制,完成第二货币的转移并完成交易。转移用于表征将第二货币以奖励的方式发放给各个用户,交易的目的为换取物品或服务。所述第二货币的转移方式可以包括:基础挖矿、邀请新人、授权数据给他人和参与临床试验等。
需要说明的是,上述区块链的智能合约机制是目前广泛研究和应用的是公知技术,在此不再赘述。
继续参见图2,本实施例的基于区块链的货币交易方法200运行于服务平台201中。当服务平台201接收到不同用户的与用药数据有关的各类服务请求后,获取不同用户的各类服务请求对应的第一货币202,然后服务平台201根据不同用户的各类服务请求对应的第一货币,确定第一货币对应的区块链奖励池中的第二货币203,最后服务平台201通过智能合约机制,完成第二货币的转移并完成交易204。
本申请的上述实施例提供的基于区块链的货币交易方法采用用户按时用药产生的数据,可以获得相应价值的第一货币,第一货币可以在之后的应用中换取等值的物品或服务;通过区块链的智能合约,对用户的用药数据(即用户的用药情况和实施状况)进行管理,实现了区块链智能合约管理用户用药的方法,该方法自动执行且不可作弊;利用区块链智能合约技术,使数据真实可信;通过区块链奖励,收集用户的用药数据并产生相应的价值,使得用户可以更好的按时按量吃药,提高了用户按时用药的积极性,使得用户的用药依存性更高。
进一步参考图3,其示出了基于区块链的货币交易方法的第二实施例的示意图300。该方法的流程包括以下步骤:
步骤301,接收不同请求节点发送的与用药数据有关的服务购买请求,获取服务购买请求对应的第一货币,接收各个节点之间与用药数据相关的交易请求,获取交易请求对应的第一货币,接收不同请求节点发送的与用药数据相关的数据管理请求,获取数据管理请求对应的第一货币。
在本实施例中,执行主体可以接收不同请求节点发送的与用药数据有关的服务购买请求、接收各个节点之间与用药数据相关的交易请求、接收不同请求节点发送的与用药数据相关的数据管理请求,基于接收到的不同请求获取相应的第一货币。第一货币基于对用户的用药数据进行用药合理 性分析而得到,交易请求对应的第一货币可以表征本地节点与其他节点进行货币交易时产生的手续费,服务购买请求对应的第一货币用于表征用户购买健康服务所需支付的第一货币,数据管理请求对应的第一货币可以表征对与用药数据相关的数据进行查询、变更等管理操作所需的管理费。
步骤302,针对各类服务请求对应的所有用户的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币。
在本实施中,执行主体针对步骤301中获取的各类服务请求对应的所有用户的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币。
在本实施例的一些可选的实现方式中,确定第一货币对应的区块链奖励池中的第二货币,还包括:针对各个用户的所有服务请求对应的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币。从不同维度得到第二货币,扩大了数据的应用范围。
步骤303,通过智能合约机制,完成第二货币的转移并完成交易。
在本实施例的一些可选的实现方式中,第二货币的转移方式包括以下内容中的至少一项:将第二货币投资挑战赛、将第二货币作为排行奖励发放、将第二货币作为管理节点的工资发放和将第二货币作为交易费发放给参与交易的除本地节点以外的其他节点(第三方节点),其中,管理节点表征对不同用户的用药数据进行管理的节点。用户合理用药产生的数据,最终可以转化为第三方的需求,从而获得相应的价值;用户的用药依存性通过各种方式获得奖励从而得到提升,高依存性的用户可以通过保持这种好的习惯,获取更多的价值,从而形成良性循环,提高用药依存性。
在本实施例的一些可选的实现方式中,方法还包括:对不同用户的各类服务请求对应的第一货币和第二货币进行监控;基于监控结果,对系统参数进行优化。优化以使第一货币保值作为调整目标,用户通过按时用药可以使第一货币达到收支平衡的状态,防止系统发生通货膨胀而导致第一货币贬值,从而让用户的用药依存性风险降低,实现有效管理。
在本实施例中,步骤303的具体操作与图1所示的实施例中的步骤103的操作基本相同,在此不再赘述。
从图3中可以看出,与图1对应的实施例相比,本实施例中的基于区块链的货币交易方法的示意图300采用接收不同请求节点发送的与用药数据有关的服务购买请求,获取服务购买请求对应的第一货币,接收各个节点之间与用药数据相关的交易请求,获取交易请求对应的第一货币,接收不同请求节点发送的与用药数据相关的数据管理请求,获取数据管理请求对应的第一货币,针对各类服务请求对应的所有用户的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币,通过智能合约机制,完成第二货币的转移并完成交易,通过获取各种类型的服务请求对应的第一货币,扩大了数据收集的范围,使数据更加精细而丰富,从而实现了更加精细化的区块链智能合约管理用户用药的方法。
进一步参考图4,本申请提供了一种基于区块链的货币交易系统,如图4所示,该系统包括:请求节点401和服务平台402,其中,服务平台用于执行上述基于区块链的货币交易方法。请求节点,用于接收用户发送的用药数据,利用货币确定方法生成该用户的与用药数据对应的第一货币并将第一货币放入矿池中,其中,货币确定方法用于表征基于用药依存性将用药数据转换为第一货币;根据第一货币,发送与用药数据相关的各类服务请求。当用户的用药依存性越高,相应用户的用药数据越值钱,用户获得的第一货币奖励越高。
在系统中,请求节点还用于将用药数据记录在区块链中,并对记录的用药数据进行管理。通过将数据记录在区块链上,使数据真实和不可更改,同时可以对数据进行授权管理,让数据产生价值。
进一步参考图5,作为对上述图1~3所示方法的实现,本申请提供了一种基于区块链的货币交易装置的一个实施例,该装置实施例与图1所示的方法实施例相对应,该装置具体可以应用于各种电子设备中。
如图5所示,本实施例的基于区块链的货币交易装置500包括:获取单元501、确定单元502和转移单元503,其中,获取单元,被配置成接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,其中,第一货币基于对用户的用药数据进行用药合理性分析而得到;确定单元,被配置成根据不同用户的各类服务请求对应 的第一货币,确定第一货币对应的区块链奖励池中的第二货币;转移单元,被配置成通过智能合约机制,完成第二货币的转移并完成交易,其中,转移用于表征将第二货币以奖励的方式发放给各个用户,交易的目的为换取物品或服务。
在本实施例中,基于区块链的货币交易装置500的获取单元501、确定单元502和转移单元503的具体处理及其所带来的技术效果可分别参考图1对应的实施例中的步骤101到步骤103的相关说明,在此不再赘述。
在本实施例的一些可选的实现方式中,获取单元,包括:第一获取模块,被配置成接收不同请求节点发送的与用药数据有关的服务购买请求,获取服务购买请求对应的第一货币;第二获取模块,被配置成接收各个节点之间与用药数据相关的交易请求,获取交易请求对应的第一货币,其中,交易请求对应的第一货币表征本地节点与其他节点进行货币交易时产生的手续费;第三获取模块,被配置成接收不同请求节点发送的与用药数据相关的数据管理请求,获取数据管理请求对应的第一货币。
在本实施例的一些可选的实现方式中,确定单元,包括:第一分析模块,被配置成针对各类服务请求对应的所有用户的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币;第二分析模块,被配置成针对各个用户的所有服务请求对应的第一货币进行分析,得到第一货币对应的区块链奖励池中的第二货币。
在本实施例的一些可选的实现方式中,转移单元中的第二货币的转移方式包括以下内容中的至少一项:将第二货币投资挑战赛、将第二货币作为排行奖励发放、将第二货币作为管理节点的工资发放和将第二货币作为交易费发放给参与交易的除本地节点以外的其他节点,其中,管理节点表征对不同用户的用药数据进行管理的节点。
在本实施例的一些可选的实现方式中,装置还包括:监控单元,被配置成对不同用户的各类服务请求对应的第一货币和第二货币进行监控;优化单元,被配置成基于监控结果,对系统参数进行优化。
根据本申请的实施例,本申请还提供了一种电子设备和一种可读存储介质。
如图6所示,是根据本申请实施例的基于区块链的货币交易方法的电 子设备的框图。电子设备旨在表示各种形式的数字计算机,诸如,膝上型计算机、台式计算机、工作台、个人数字助理、服务器、刀片式服务器、大型计算机、和其它适合的计算机。电子设备还可以表示各种形式的移动装置,诸如,个人数字处理、蜂窝电话、智能电话、可穿戴设备和其它类似的计算装置。本文所示的部件、它们的连接和关系、以及它们的功能仅仅作为示例,并且不意在限制本文中描述的和/或者要求的本申请的实现。
如图6所示,该电子设备包括:一个或多个处理器601、存储器602,以及用于连接各部件的接口,包括高速接口和低速接口。各个部件利用不同的总线互相连接,并且可以被安装在公共主板上或者根据需要以其它方式安装。处理器可以对在电子设备内执行的指令进行处理,包括存储在存储器中或者存储器上以在外部输入/输出装置(诸如,耦合至接口的显示设备)上显示GUI的图形信息的指令。在其它实施方式中,若需要,可以将多个处理器和/或多条总线与多个存储器和多个存储器一起使用。同样,可以连接多个电子设备,各个设备提供部分必要的操作(例如,作为服务器阵列、一组刀片式服务器、或者多处理器系统)。图6中以一个处理器601为例。
存储器602即为本申请所提供的非瞬时计算机可读存储介质。其中,存储器存储有可由至少一个处理器执行的指令,以使至少一个处理器执行本申请所提供的基于区块链的货币交易方法。本申请的非瞬时计算机可读存储介质存储计算机指令,该计算机指令用于使计算机执行本申请所提供的基于区块链的货币交易方法。
存储器602作为一种非瞬时计算机可读存储介质,可用于存储非瞬时软件程序、非瞬时计算机可执行程序以及模块,如本申请实施例中的基于区块链的货币交易方法对应的程序指令/模块(例如,附图5所示的获取单元501、确定单元502和转移单元503)。处理器601通过运行存储在存储器602中的非瞬时软件程序、指令以及模块,从而执行服务器的各种功能应用以及数据处理,即实现上述方法实施例中的基于区块链的货币交易方法。
存储器602可以包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需要的应用程序;存储数据区可存储根据 基于区块链的货币交易电子设备的使用所创建的数据等。此外,存储器602可以包括高速随机存取存储器,还可以包括非瞬时存储器,例如至少一个磁盘存储器件、闪存器件、或其他非瞬时固态存储器件。在一些实施例中,存储器602可选包括相对于处理器601远程设置的存储器,这些远程存储器可以通过网络连接至基于区块链的货币交易电子设备。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。
基于区块链的货币交易方法的电子设备还可以包括:输入装置603和输出装置604。处理器601、存储器602、输入装置603和输出装置604可以通过总线或者其他方式连接,图6中以通过总线连接为例。
输入装置603可接收输入的数字或字符信息,以及产生与基于区块链的货币交易电子设备的用户设置以及功能控制有关的键信号输入,例如触摸屏、小键盘、鼠标、轨迹板、触摸板、指示杆、一个或者多个鼠标按钮、轨迹球、操纵杆等输入装置。输出装置604可以包括显示设备、辅助照明装置(例如,LED)和触觉反馈装置(例如,振动电机)等。该显示设备可以包括但不限于,液晶显示器(LCD)、发光二极管(LED)显示器和等离子体显示器。在一些实施方式中,显示设备可以是触摸屏。
此处描述的系统和技术的各种实施方式可以在数字电子电路系统、集成电路系统、专用ASIC(专用集成电路)、计算机硬件、固件、软件、和/或它们的组合中实现。这些各种实施方式可以包括:实施在一个或者多个计算机程序中,该一个或者多个计算机程序可在包括至少一个可编程处理器的可编程系统上执行和/或解释,该可编程处理器可以是专用或者通用可编程处理器,可以从存储系统、至少一个输入装置、和至少一个输出装置接收数据和指令,并且将数据和指令传输至该存储系统、该至少一个输入装置、和该至少一个输出装置。
这些计算程序(也称作程序、软件、软件应用、或者代码)包括可编程处理器的机器指令,并且可以利用高级过程和/或面向对象的编程语言、和/或汇编/机器语言来实施这些计算程序。如本文使用的,术语“机器可读介质”和“计算机可读介质”指的是用于将机器指令和/或数据提供给可编程处理器的任何计算机程序产品、设备、和/或装置(例如,磁盘、光盘、存储器、可编程逻辑装置(PLD)),包括,接收作为机器可读信号的机 器指令的机器可读介质。术语“机器可读信号”指的是用于将机器指令和/或数据提供给可编程处理器的任何信号。
为了提供与用户的交互,可以在计算机上实施此处描述的系统和技术,该计算机具有:用于向用户显示信息的显示装置(例如,CRT(阴极射线管)或者LCD(液晶显示器)监视器);以及键盘和指向装置(例如,鼠标或者轨迹球),用户可以通过该键盘和该指向装置来将输入提供给计算机。其它种类的装置还可以用于提供与用户的交互;例如,提供给用户的反馈可以是任何形式的传感反馈(例如,视觉反馈、听觉反馈、或者触觉反馈);并且可以用任何形式(包括声输入、语音输入或者、触觉输入)来接收来自用户的输入。
可以将此处描述的系统和技术实施在包括后台部件的计算系统(例如,作为数据服务器)、或者包括中间件部件的计算系统(例如,应用服务器)、或者包括前端部件的计算系统(例如,具有图形用户界面或者网络浏览器的用户计算机,用户可以通过该图形用户界面或者该网络浏览器来与此处描述的系统和技术的实施方式交互)、或者包括这种后台部件、中间件部件、或者前端部件的任何组合的计算系统中。可以通过任何形式或者介质的数字数据通信(例如,通信网络)来将系统的部件相互连接。通信网络的示例包括:局域网(LAN)、广域网(WAN)和互联网。
计算机系统可以包括客户端和服务器。客户端和服务器一般远离彼此并且通常通过通信网络进行交互。通过在相应的计算机上运行并且彼此具有客户端-服务器关系的计算机程序来产生客户端和服务器的关系。
根据本申请实施例的技术方案采用用户按时用药产生的数据,可以获得相应价值的第一货币,第一货币可以在之后的应用中换取等值的物品或服务;通过区块链的智能合约,对用户的用药数据(即用户的用药情况和实施状况)进行管理,实现了区块链智能合约管理用户用药的方法,该方法自动执行且不可作弊;利用区块链智能合约技术,使数据真实可信;通过区块链奖励,收集用户的用药数据并产生相应的价值,使得用户可以更好的按时按量吃药,提高了用户按时用药的积极性,使得用户的用药依存性更高。
应该理解,可以使用上面所示的各种形式的流程,重新排序、增加或 删除步骤。例如,本申请中记载的各步骤可以并行地执行也可以顺序地执行也可以不同的次序执行,只要能够实现本申请公开的技术方案所期望的结果,本文在此不进行限制。
上述具体实施方式,并不构成对本申请保护范围的限制。本领域技术人员应该明白的是,根据设计要求和其他因素,可以进行各种修改、组合、子组合和替代。任何在本申请的精神和原则之内所作的修改、等同替换和改进等,均应包含在本申请保护范围之内。

Claims (15)

  1. 一种基于区块链的货币交易方法,所述方法包括:
    接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,其中,所述第一货币基于对用户的用药数据进行用药合理性分析而得到;
    根据不同用户的各类服务请求对应的第一货币,确定所述第一货币对应的区块链奖励池中的第二货币;
    通过智能合约机制,完成所述第二货币的转移并完成交易,其中,所述转移用于表征将所述第二货币以奖励的方式发放给各个用户,所述交易的目的为换取物品或服务。
  2. 根据权利要求1所述方法,其中,所述接收不同用户的与用药数据有关的各类服务请求,获取不同用户的各类服务请求对应的第一货币,包括:
    接收不同请求节点发送的与用药数据有关的服务购买请求,获取所述服务购买请求对应的第一货币;
    接收各个节点之间与用药数据相关的交易请求,获取所述交易请求对应的第一货币,其中,所述交易请求对应的第一货币表征本地节点与其他节点进行货币交易时产生的手续费;
    接收不同请求节点发送的与用药数据相关的数据管理请求,获取所述数据管理请求对应的第一货币。
  3. 根据权利要求1所述方法,其中,所述根据不同用户的各类服务请求对应的第一货币,确定所述第一货币对应的区块链奖励池中的第二货币,包括:
    针对各类服务请求对应的所有用户的第一货币进行分析,得到所述第一货币对应的区块链奖励池中的第二货币;和/或
    针对各个用户的所有服务请求对应的第一货币进行分析,得到所述第一货币对应的区块链奖励池中的第二货币。
  4. 根据权利要求1所述方法,其中,所述第二货币的转移方式包括以下内容中的至少一项:将所述第二货币投资挑战赛、将所述第二货币作为排行奖励发放、将所述第二货币作为管理节点的工资发放和将所述第二货币作为交易费发放给参与交易的除本地节点以外的其他节点,其中,所述管理节点表征对不同用户的用药数据进行管理的节点。
  5. 根据权利要求1所述方法,还包括:
    对不同用户的各类服务请求对应的第一货币和所述第二货币进行监控;
    基于所述监控结果,对系统参数进行优化。
  6. 一种基于区块链的货币交易系统,所述系统包括:服务平台,其中,所述服务平台用于执行如权利要求1-5任意一项的基于区块链的货币交易方法。
  7. 根据权利要求6所述系统,其中,所述系统还包括:请求节点;
    所述请求节点,用于接收用户发送的用药数据,利用货币确定方法生成该用户的与用药数据对应的第一货币,其中,所述货币确定方法用于表征基于用药依存性将所述用药数据转换为所述第一货币;根据所述第一货币,发送与用药数据相关的各类服务请求。
  8. 根据权利要求6所述系统,其中,所述请求节点还用于将所述用药数据记录在所述区块链中,并对记录的所述用药数据进行管理。
  9. 一种基于区块链的货币交易装置,所述装置包括:
    获取单元,被配置成接收不同用户的与用药数据有关的各类服 务请求,获取不同用户的各类服务请求对应的第一货币,其中,所述第一货币基于对用户的用药数据进行用药合理性分析而得到;
    确定单元,被配置成根据不同用户的各类服务请求对应的第一货币,确定所述第一货币对应的区块链奖励池中的第二货币;
    转移单元,被配置成通过智能合约机制,完成所述第二货币的转移并完成交易,其中,所述转移用于表征将所述第二货币以奖励的方式发放给各个用户,所述交易的目的为换取物品或服务。
  10. 根据权利要求9所述装置,其中,所述获取单元,包括:
    第一获取模块,被配置成接收不同请求节点发送的与用药数据有关的服务购买请求,获取所述服务购买请求对应的第一货币;
    第二获取模块,被配置成接收各个节点之间与用药数据相关的交易请求,获取所述交易请求对应的第一货币,其中,所述交易请求对应的第一货币表征本地节点与其他节点进行货币交易时产生的手续费;
    第三获取模块,被配置成接收不同请求节点发送的与用药数据相关的数据管理请求,获取所述数据管理请求对应的第一货币。
  11. 根据权利要求8所述装置,其中,所述确定单元,包括:
    第一分析模块,被配置成针对各类服务请求对应的所有用户的第一货币进行分析,得到所述第一货币对应的区块链奖励池中的第二货币;
    第二分析模块,被配置成针对各个用户的所有服务请求对应的第一货币进行分析,得到所述第一货币对应的区块链奖励池中的第二货币。
  12. 根据权利要求9所述装置,其中,所述转移单元中的所述第二货币的转移方式包括以下内容中的至少一项:将所述第二货币投资挑战赛、将所述第二货币作为排行奖励发放、将所述第二货币作为管理节点的工资发放和将所述第二货币作为交易费发放给参与交 易的除本地节点以外的其他节点,其中,所述管理节点表征对不同用户的用药数据进行管理的节点。
  13. 根据权利要求9所述装置,还包括:
    监控单元,被配置成对不同用户的各类服务请求对应的第一货币和所述第二货币进行监控;
    优化单元,被配置成基于所述监控结果,对系统参数进行优化。
  14. 一种电子设备,其特征在于,包括:
    至少一个处理器;以及
    与所述至少一个处理器通信连接的存储器;其中,
    所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行权利要求1-5中任一项所述的方法。
  15. 一种存储有计算机指令的非瞬时计算机可读存储介质,其特征在于,所述计算机指令用于使所述计算机执行权利要求1-5中任一项所述的方法。
PCT/CN2021/089137 2020-09-29 2021-04-23 基于区块链的货币交易方法、系统和装置 WO2022068184A1 (zh)

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