WO2018214095A1 - 一种基于生物信息的自治式责任管理方法 - Google Patents
一种基于生物信息的自治式责任管理方法 Download PDFInfo
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- the invention relates to an autonomous responsibility management method based on biological information.
- the object of the present invention is to provide an autonomous responsibility management method based on biological information in view of the deficiencies of the prior art.
- a biological information-based autonomous responsibility management method comprising the following steps:
- the items of the facility responsibility table include: facility ID, responsible person, and responsibility name.
- the blockchain node collects the biological information of the new responsible person and the old responsible person and broadcasts it;
- a sub-responsibility form is established;
- the material information is entered into the blockchain, and the sub-responsible biological information database is constructed by the responsible person; the responsible person transfers the responsibility to the sub-responsible according to the method described in steps (4)-(5), and the responsibility of the sub-responsible person
- the transfer object is limited to the responsible person and the sub-responsible person in the bio-information database of the same sub-resource.
- the facility transfer authority is set, and when the new responsible person satisfies the transfer authority, the facility is allowed to transfer; the authority is: a specific responsible person, a number of responsible persons, or a transfer time area.
- the biological information includes: DNA, electrocardiogram, vein, iris, retina, voiceprint, brain wave, skin pattern, pattern, posture, gait, infrared temperature spectrum, tooth mark, dentition, ear shape, A combination of odor, face recognition, footprint, and scar information or a combination of information.
- An autonomous responsibility management method based on biological information comprising the following steps:
- the blockchain is activated from the Genesis block
- each step corresponds to a responsibility node;
- the primary responsible person processes the event according to the event processing procedure and the set processing steps; including uploading the biological information as well as the event information and event processing information to the primary responsible node;
- the primary responsible node conducts the identity verification of the primary responsible person, and if the verification is passed, the event is broadcast; the broadcast object is the next-level responsible node;
- the first-level responsible person After receiving the event information through the first-level responsibility node, the first-level responsible person uploads the biological information and the “receive confirmation” instruction; after the first-level responsible node verifies the identity of the responsible person, the primary responsibility transfer of the event is completed; The responsible person processes the event according to the event processing procedure and the set processing steps, including uploading the event information and the event processing information to the first-level responsibility node;
- the responsible nodes of the same level are one or more.
- one or more responsible nodes are shared by one or more other blockchains.
- the biological information includes: DNA, electrocardiogram, vein, iris, retina, voiceprint, brain wave, skin pattern, pattern, posture, gait, infrared temperature spectrum, tooth mark, dentition, ear shape, A combination of odor, face recognition, footprint, and scar information or a combination of information.
- the invention realizes responsibility management with extremely low cost and high efficiency, and has the following advantages:
- the management process can realize the autonomy mechanism of security management.
- This embodiment relates to the responsibility management of facilities (hazardous chemicals) in a university in Hangzhou, based on the regulations of the “Safety Management Regulations for Dangerous Chemicals – State Council Order No. 645 of the People's Republic of China” and “Laboratory Safety Management”.
- the verification node compares the biological information of the two parties with the information in the information base, and the verification passes the verification, allows the facility to transfer, and generates a facility responsibility transfer data package, including the facility ID, the biological information of the old responsible person, Name the bio-information and responsibility of the new responsible person and broadcast it; at the same time, update the facility responsibility form.
- the above-mentioned "allowing facility transfer” can be managed by the following scheme: placing dangerous chemicals z in a smart safe, which is connected to the control node of the blockchain, and when the verification node passes the verification Afterwards, the control node controls the safe to open, so as to avoid the dangerous transfer of dangerous chemicals in both private parties; the smart cabinet detects that the corresponding dangerous chemicals z have been taken out according to the RFID, that is, completes the transfer of responsibility between the AB;
- the responsibility management can be carried out by: establishing a sub-responsibility table; and using the experimenter B to fingerprint the multiple students in the experimental group. Enter the blockchain separately and construct the biological information of the sub-responsible person of the experimental person B Library; experimenter B can transfer part of responsibility to his students, and the student's responsibility transfer target is limited to experimenter B, and the students in the experimental group.
- cyanide transfer target can only be the designated group of experimenters and requires personnel. Group transfer.
- the verification node verifies the fingerprint information of the transferred object. If the permission is not met, the transfer is not allowed.
- the current responsible person can be queried in the “Facility Responsibility Table”, or it can be verified in the node, and the management can be in place by itself.
- This embodiment relates to the responsibility management of fire incidents, based on the "Fire Safety Management Regulations of Colleges and Universities", the “Fire Law” or the “Fire Regulations”.
- each step is implemented to the designated responsible person (the person who can be designated by the post), respectively responsible person, first-level responsible person, second-level responsible person, ..., n-level responsible person, each responsible person corresponds to a blockchain responsibility node, which is primary responsibility node, first-level responsibility node, second-level responsibility node, ..., n-level responsibility node;
- the fire inspector A the primary responsible person, handles the incident according to the event handling procedures and the set processing steps; including uploading facial information and fire information such as fire, area, location, and event of the fire.
- the primary responsibility node To the primary responsibility node;
- the primary responsibility node performs face recognition on the primary responsible person, and the verification is passed, and the event is broadcasted.
- the broadcast object is the next level of responsibility node;
- Supervisor B that is, the first-level responsible person uploads the facial information and the “receive confirmation” command after receiving the event information through the first-level responsible node; the first-level responsible node completes the event after the face recognition of the responsible person is passed. Primary responsibility transfer; the first-level responsible person handles the incident according to the event handling procedures and the set processing steps. For example, according to the fire, the rescue plan is set up, including the fire brigade x fire rescue and the medical team y medical rescue, and then The new fire and rescue plan is uploaded to the first-level responsibility node;
- the secondary-responsible node that is, the fire-fighting team x and the medical team y
- the secondary responsibility node after receiving the event information through their respective secondary-responsible nodes, upload the face information and “receive confirmation”
- the instruction; the secondary responsibility node separately passes the face recognition of the responsible person, that is, completes the primary responsibility transfer of the event; the fire protection team x and the medical team y implement the rescue according to the specification.
- the supervisory personnel B, the first-level responsibility node can be shared with the municipal or provincial fire protection system blockchain; when the fire is uncontrollable, it can be sent to the municipal or provincial fire protection system. Rescue request. After receiving the request from the municipal or provincial fire protection system, the fire shall be rescued in accordance with the regulations.
- registered biological information such as fingerprint authentication
- ID card ID or ID number
- A represents the fire manager of the School of Chemistry
- z is the University of Chemistry building
- B is the fire supervisor of the Security Department. They represent the secondary units of this university: the fire protection local government management model of the Security Department and the Chemistry College.
- the teacher T of the school S is the teacher of a certain course, and T has developed a study plan and homework for the student C, and asks the parent A or B to supervise the learning process.
- Student C will submit the completed request to the parents. After checking the problem, A or B will find out the problem. There are still a few questions that have not been done. The student C is required to submit it again. After the submission is completed, the subject may not be done. Well, or not enough supervision, registered by the parents in the form of fingerprints into the blockchain. And broadcast.
- the teacher T has problems in checking the student C's homework, according to the blockchain, it can be understood according to the operation situation that the main responsibility of the student C is not in place, or the parent's supervision ability is insufficient or the supervisory responsibility is not in place, and is handled according to different situations. .
- A, B, C, and D are all members of the company. Each member corresponds to a position (or role), and each position has a job responsibilities.
- A is the upper layer of B
- C is the lower layer of B.
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Abstract
一种基于生物信息的自治式责任管理方法,该方法通过自动采集管理过程中的相关责任数据,来实现责任方的自动判别;同时通过区块链管理(分布式认证方式),来实现无法抵赖且低成本的安全认证。将自动追责、区块链(分布式认证)和人员相关的生物认证技术相结合,建立针对设施和事件的自治式信息化管理模式,通过全过程信息化来实现法规制度的有效执行和优化。
Description
本发明涉及一种基于生物信息的自治式责任管理方法。
在物联网管理的过程中,人是物的管理主体,管理的好坏将决定物联网管理的效率或效果,人的责任到位是管理的关键,当前主要是通过制定法规或制度,用于追责时的依据,但是追责时很难用大数据来判断;或者在管理过程需要第三方公证,以至于管理成本过高或过程过于复杂,很难实现有效的依规管理。所以,如何通过自动采集管理过程中的相关责任数据,来实现责任方的自动判别,同时通过区块链管理(分布式认证方式),来实现无法抵赖且低成本的安全认证,是需要解决的关键问题。将自动追责、区块链(分布式认证)和人员相关的生物认证技术相结合,可用于建设针对设施和事件的自治式信息化管理模式,通过全过程信息化实现法规制度的有效执行和优化。
发明内容
本发明的目的在于针对现有技术的不足,提供一种基于生物信息的自治式责任管理方法。
本发明的目的是通过以下技术方案实现的:一种基于生物信息的自治式责任管理方法,包括以下步骤:
(1)区块链从创世块启动时,建立设施责任表,设施责任表的项目包括:设施ID、责任人、责任名称。
(2)将责任人的生物信息录入到区块链,构建责任人生物信息库;
(3)对设施设置唯一的设施ID,并将该设施ID和其责任人录入到设施责任表中;
(4)设施发生转移时,区块链节点采集新责任人、老责任人的生物信息,并进行广播;
(5)将采集的生物信息与信息库中的信息进行比对,一致则通过验证,允许设施转移,并生成一个设施责任转移数据包,其中包括设施ID、老责任人的生物信息、新责任人的生物信息和责任名称,并进行广播;同时,更新设施责任表。
进一步地,针对某一责任人,建立子责任表;通过责任人将子责任人的生
物信息录入到区块链,构建由该责任人负责的子责任人生物信息库;责任人按照步骤(4)-(5)所述的方法向子责任人进行责任转移,子责任人的责任转移对象局限于负责的责任人,以及同一子责任人生物信息库中的子责任人。
进一步地,针对某一设施,设定设施转移权限,当新责任人满足转移权限时,才允许设施转移;所述权限为:特定的责任人、责任人数量、或转移时间区域。
进一步地,所述的生物信息包括:DNA、心电图、静脉、虹膜、视网膜、声纹、脑电波、皮纹、花纹、姿态、步态、红外温光谱图、牙痕、齿列、耳形、体味、人脸识别、足迹以及疤痕信息中的一种信息或者多种信息的组合。
一种基于生物信息的自治式责任管理方法,包括以下步骤:
(1)区块链从创世块启动;
(2)根据事件处理规程,设定处理步骤,并对每个步骤设定责任人,包括初级责任人、一级责任人、二级责任人、……、n级责任人,每个责任人对应一个区块链的责任节点,分别为初级责任节点、一级责任节点、二级责任节点、……、n级责任节点;每个步骤对应一个责任节点;
(3)将初级责任人、一级责任人、二级责任人、……、n级责任人的生物信息分别保存于对应的责任节点,用于身份核验;
(4)事件触发后,初级责任人按照事件处理规程和设定的处理步骤,对事件进行处理;包括将生物信息以及事件信息、事件处理信息上传到初级责任节点;
(5)初级责任节点对初级责任人进行身份核验,核验通过,则将事件进行广播;广播对象为下一级责任节点;
(6)一级责任人通过一级责任节点接收到事件信息后,上传生物信息以及“接收确认”指令;一级责任节点对责任人的身份核验通过后,即完成事件初级责任传递;一级责任人按照事件处理规程和设定的处理步骤,对事件进行处理,包括将事件信息、事件处理信息上传到一级责任节点;
(7)向下一级责任节点广播,按照步骤(6)进行责任传递和事件处理,直到事件处理完成。
进一步地,各级责任人通过岗位职责设定。
进一步地,同一级的责任节点为一个或多个。
进一步地,一个或多个责任节点为另一个或多个其他的区块链共有。
进一步地,所述的生物信息包括:DNA、心电图、静脉、虹膜、视网膜、声纹、脑电波、皮纹、花纹、姿态、步态、红外温光谱图、牙痕、齿列、耳形、
体味、人脸识别、足迹以及疤痕信息中的一种信息或者多种信息的组合。
本发明以极低成本和高效率实现责任管理,具有以下优势:
(1)明确物联设备的责任人和责任管理;
(2)明确事件处理时的责任链和责任人;
(3)管理过程可以实现安全管理的自治化机制。
下面结合实施例对本发明作进一步说明。
实例1:
本实施例涉及杭州某高校的设施(危险化学品)责任管理,依据为《危险化学品安全管理条例-中华人民共和国国务院令第645号》和《实验室安全管理》等规章制度。
(1)创建一个该高校私有的区块链,建立危险化学品责任表,危险化学品责任表的项目包括:设施ID、责任人、责任名称。
(2)将高校相关合规人员的指纹录入到区块链,构建责任人生物信息库;
(3)对每一份危险化学品设置唯一的设施ID,并将该设施ID和当前的责任人录入到危险化学品责任表中;
(4)当实验人员B需要危险化学品z时,跟当前的保管方,即当前责任人A沟通,沟通后通过区块链节点输入新责任人、老责任人的生物信息,节点获得设施转移请求,并将该请求进行广播;
(5)核验节点将双方的生物信息与信息库中的信息进行比对,一致则通过验证,允许设施转移,并生成一个设施责任转移数据包,其中包括设施ID、老责任人的生物信息、新责任人的生物信息和责任名称,并进行广播;同时,更新设施责任表。
作为优选的技术方案,上述的“允许设施转移”可通过以下方案实现管理:将危险化学品z置于智能保险柜中,该智能保险柜与区块链的控制节点相连,当核验节点通过验证后,控制节点控制保险柜打开,避免双方私底下转移危险化学物品;智能柜子根据RFID检测到相应的危险化学品z已被取出,即完成AB间责任转移;
当实验人员B需要将该危险化学品z交给不具有负责资质当学生实用时,可以通过以下方式进行责任管理:建立子责任表;通过实验人员B将其实验组中的多个学生的指纹分别录入到区块链,构建由实验人员B的子责任人生物信息
库;实验人员B可向其学生进行责任部分转移,而学生的责任转移对象局限于实验人员B,以及该实验组中的同学。
针对特别危险的化学物品,例如,氰化物,需要设定特定权限~特定责任人,即,仅允许特定的实验人员使用,该氰化物的转移对象只能是指定组的实验人员,并需要人员成组转移。在氰化物的转移过程中,核验节点对转移对象的指纹信息核验,若不符合权限,则不允许转移。
通过上述方法,可以先在“设施责任表”中查询当前责任人,也可以在节点中验证,管理可以自行到位。
实例2:
本实施例涉及消防事件的责任管理,依据为《高等院校消防安全管理规定》、《消防法》或《消防条例》。
(1)建立消防事件的责任管理区块链;
(2)根据《高等院校消防安全管理规定》、《消防法》以及《消防条例》,设定处理步骤,每个步骤落实到指定的责任人(可通过岗位指定责任人),分别为初级责任人、一级责任人、二级责任人、……、n级责任人,每个责任人对应一个区块链的责任节点,分别为初级责任节点、一级责任节点、二级责任节点、……、n级责任节点;
(3)将初级责任人、一级责任人、二级责任人、……、n级责任人的面部信息分别保存于对应的责任节点,用于身份核验;
(4)火灾发生后,消防巡查人员A即初级责任人,按照事件处理规程和设定的处理步骤,对事件进行处理;包括将面部信息以及火灾的火势、面积、地点、事件等事件信息上传到初级责任节点;
(5)初级责任节点对初级责任人进行人脸识别,核验通过,则将事件进行广播。广播对象为下一级责任节点;
(6)监管人员B,即一级责任人通过一级责任节点接收到事件信息后,上传面部信息以及“接收确认”指令;一级责任节点对责任人的人脸识别通过后,即完成事件初级责任传递;一级责任人按照事件处理规程和设定的处理步骤,对事件进行处理,例如,根据火势,设定救援方案,其中包括消防小组x消防救援以及医务小组y医疗救援,然后将火灾新型以及救援方案上传到一级责任节点;
(7)向下一级责任节点广播,二级责任节点,即消防小组x和医务小组y通过各自的二级责任节点接收到事件信息后,上传面部信息以及“接收确认”
指令;二级责任节点分别对责任人的人脸识别通过后,即完成事件初级责任传递;消防小组x和医务小组y根据规范实行救援。
本实施中,监管人员B,所在的一级责任节点可以与市级或省级的消防系统区块链共用;当火势在自己不可控的情况下,可向市级或省级的消防系统发送救援请求。市级或省级的消防系统接受请求后,按照规程对火灾进行救援。
通过上述方法,责任自动落实到位,无法进行窜改,或者窜改成本很高。
实例3:
某个高校的相关人员,通过组织机构,列入到系统中,注册好生物信息(如用指纹认证)、身份证ID(或工号),可以与角色对应起来,形成私有区块链的节点集。
以下是对消防巡查主体责任的监管过程。
1)楼宇z的消防巡查人员A,在巡查完所有相关的设施后,以指纹方式提交所有的相关巡查记录;
2)当监管人员B在检查A提交的巡查记录时,发现都检查过,对重要地点进行抽查,认为都是可信的,用指纹采用区块链方式将A的主体责任到位登记在册,然后签名广播,各节点收到交易并验证签名,广播成功后确认B的监管责任到位。将记录1:楼宇z的ID、巡查人员A和主体责任到位和记录2:楼宇z的ID、监管人员B和监管责任到位,存入全链的“设施责任表”中,同时将z的ID、时间、A、B存入历史责任表中;
3)一旦发现某一设施有问题,只要B经过监管且抽查率到位,则追查A的主体责任。
这样就建立了A的消防自治式管理。
在一个高校里,A代表化学学院的消防管理人,z是化学大学大楼,B是保卫处的消防监管人。分别代表了这个高校的二级单位:保卫处和化学学院的消防自治体管理模式。
实例4:
教育(以家庭为例,以带指纹的手机APP应用描述)
家长A、B,和小孩C(学生)
学校S的老师T为某一课程的老师,T为学生C制定了学习计划、家庭作业,要求家长A或B监督学习过程。
在新生阶段,将以上人员信息和生物信息注册到家校区块链上。
学生C在学习过程中,特别是家庭作业t中,老师T要求每一道题(t1,t2,t3,t4,…)都要会做,学习的主体责任为学生C,监督责任为A或B。
学生C将完成的请求提交给家长,A或B经检查后发现问题,还有几题没做对,要求学生C再做后提交,提交后经检查无误后,把可能没做对的题目拍摄好,或者打上监督能力不够,通过家长按指纹形式登记到区块链中。并进行广播。
一旦老师T在检查学生C作业有问题时,根据区块链,可根据作业情况了解是学生C的学习主要责任没到位,还是家长的监督能力不够或监督责任没到位,并根据不同情况进行处理。
实例5:
企业管理、上层对下层的管理(以手机APP描述为例),依据是《企业管理规章》,或者是用区块链优化过的《企业管理规章》。
以下A、B、C、D都是公司的成员,每一成员对应一个岗位(或角色),每一个岗位都有企业的岗位职责要求。
A是B的上层,C是B的下层,在新员工入职时,登记到公司的区块链中。
当A通过手机app给B下达任务指令列表T(包括t1,t2,t3,…),B接受后处理,并将其中任务t1授权给C执行,C获取t1任务后设定相关的时间及可能效果后,提交给B,B汇总或逐项提交到区块链,并广播。
一旦时间到,A没接受到B的相应信息时,则B的监管责任没到位,如果B问过C,C没有及时回复,则是C的责任问题。
协同式的责任,t1授权给C、D分解成t11和t12执行,并由B合成执行,一旦t12没执行完成,则认为是D的责任,如果t1没完成,则是B的责任问题。
Claims (9)
- 一种基于生物信息的自治式责任管理方法,其特征在于,包括以下步骤:(1)区块链从创世块启动时,建立设施责任表,设施责任表的项目包括:设施ID、责任人、责任名称;(2)将责任人的生物信息录入到区块链,构建责任人生物信息库;(3)对设施设置唯一的设施ID,并将该设施ID和当前责任人录入到设施责任表中;(4)设施发生转移时,区块链节点采集新责任人、老责任人的生物信息,并进行广播;(5)核验节点将采集到的生物信息与信息库中的信息进行比对,一致则通过验证,允许设施转移,并生成一个设施责任转移数据包,其中包括设施ID、老责任人的生物信息、新责任人的生物信息和责任名称,并进行广播;同时,更新设施责任表。
- 根据权利要求1所述的方法,其特征在于,针对某一责任人,建立子责任表;通过责任人将子责任人的生物信息录入到区块链,构建由该责任人负责的子责任人生物信息库;责任人按照步骤(4)-(5)所述的方法向子责任人进行责任转移,子责任人的责任转移对象局限于负责的责任人,以及同一子责任人生物信息库中的子责任人。
- 根据权利要求1所述的方法,其特征在于,针对某一设施,设定设施转移权限,当新责任人满足转移权限时,才允许设施转移;所述权限为:特定的责任人、责任人数量或转移时间区域。
- 权利要求1所述的方法,其特征在于,所述的生物信息包括:DNA、心电图、静脉、虹膜、视网膜、声纹、脑电波、皮纹、花纹、姿态、步态、红外温光谱图、牙痕、齿列、耳形、体味、人脸识别、足迹以及疤痕信息中的一种信息或者多种信息的组合。
- 一种基于生物信息的自治式责任管理方法,其特征在于,包括以下步骤:(1)区块链从创世块启动;(2)根据事件处理规程,设定处理步骤,并对每个步骤设定责任人,包括初级责任人、一级责任人、二级责任人、……、n级责任人,每个责任人对应一个区块链的责任节点,分别为初级责任节点、一级责任节点、二级责任节点、……、n级责任节点。每个步骤对应一个责任节点;(3)将初级责任人、一级责任人、二级责任人、……、n级责任人的生物 信息分别保存于对应的责任节点,用于身份核验;(4)事件触发后,初级责任人按照事件处理规程和设定的处理步骤,对事件进行处理,包括将生物信息、事件信息、以及事件处理信息上传到初级责任节点;(5)初级责任节点对初级责任人进行身份核验,核验通过,则将事件进行广播。广播对象为下一级责任节点;(6)一级责任人通过一级责任节点接收到事件信息后,上传生物信息以及“接收确认”指令;一级责任节点对责任人的身份核验通过后,即完成事件初级责任传递;一级责任人按照事件处理规程和设定的处理步骤,对事件进行处理,包括将事件信息、事件处理信息上传到一级责任节点;(7)向下一级责任节点广播,按照步骤(6)进行责任传递和事件处理,直到事件处理完成。
- 根据权利要求5所述的方法,其特征在于,各级责任人通过岗位职责设定。
- 根据权利要求5所述的方法,其特征在于,同一级的责任节点为一个或多个。
- 根据权利要求5所述的方法,其特征在于,一个或多个责任节点为另一个或多个其他的区块链共有。
- 权利要求5所述的方法,其特征在于,所述的生物信息包括:DNA、心电图、静脉、虹膜、视网膜、声纹、脑电波、皮纹、花纹、姿态、步态、红外温光谱图、牙痕、齿列、耳形、体味、人脸识别、足迹以及疤痕信息中的一种信息或者多种信息的组合。
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