A Digital Smart Health and Wellness Service Port System and Its Implementation Method
By building a digital smart health care service port system, and using cloud computing and smart health care service port software, digital aggregation and precise services of health care resources have been achieved, the problems of cumbersome medical services, difficulty in obtaining resources and high costs have been solved, and the efficiency and coverage of health care services have been improved.
Patent Information
- Application Number
- CN202111557322.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-18
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2041-12-18
AI Technical Summary
At present, the health care field has problems such as cumbersome medical services, long waiting time, difficulty in making appointments for high-quality resources, expensive prices and lack of precise and personalized services, resulting in insufficient medical treatment unless necessary and insufficient health monitoring.
Build an open, shared and collaborative digital smart health care service port system, and use cloud computing devices and smart health care service port software devices to realize digital aggregation and precise services of health care resources through IaaS, PaaS and SaaS server clusters, including health management, health monitoring, prevention services, etc.
It realizes efficient sharing and collaboration of health care resources, reduces operating costs, improves service efficiency, meets the precise and personalized needs of large-scale people, and solves the problems of local resource acquisition restrictions and high costs.
Smart Images

Figure CN114493955B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the informatization in the field of health care and well - being, and more specifically to the knowledge management engineering in the field of health care and well - being. It uses cloud - service computers to manage health care organizations, health care services, as well as health care service products and supporting resources through software service devices; Background Art
[0002] Currently, the main obstacles in health management and health care and well - being are: the cumbersome process of medical treatment services, overly long waiting times for medical treatment, difficulties in reserving high - quality resources, high costs of medical treatment and health care, and the lack of precise, personalized, targeted, and comprehensive medical and health care services. All these obstacles lead to avoiding medical treatment unless necessary, ignoring existing health problems, and lacking self - health monitoring, which does not match the expectations of most people to obtain a high - quality healthy body.
[0003] Of course, the informatization and digital construction work in health care and well - being is striving to overcome the above - mentioned obstacles, including: the informatization management systems for health care organizations, ERP systems, office automation systems self - built by various health care and medical organizations, and online - based core business systems such as medical health monitoring systems, remote medical diagnosis, medical big data systems, medical image systems, and clinical assistance. The medical management information system solves the effectiveness of medical resource management to a certain extent. In particular, the recent new generation of advanced computing technologies, including: cloud computing, big data, Internet of Things, service Internet, knowledge management engineering, etc. have become revolutionary forces in promoting the organizational mechanism, core business process re - engineering, product and market expansion of various medical and health care organizations, and more than 25% of the value is generated by computer service devices.
[0004] The important development of the informatization and digital construction of health care and well - being, especially with the development of CPSs and Internet technologies in the health care and well - being industry, as well as the development of knowledge management engineering technologies, is accelerating the digital enterprise and organizational construction of the medical and health care and well - being industries. There are thousands of health care and well - being commercial organizations born on the Internet, without the physical geographical location of traditional health care and well - being enterprises, without direct contact with customers, and without traditional physical bed resource assets, etc. Its main characteristics are: a large number of heterogeneous, heterogeneous, remote, and cross - domain health care and well - being organizations are all striving to make them become Internet - centered health care and well - being enterprise organizations, providing high - quality and large - scale services through the Internet to achieve higher - level development and a basic service transformation based on knowledge management capabilities.
[0005] The core problem that digital health care and well - being construction currently needs to overcome is: how to build a new ecological environment of open - sharing and collaborative digital health care and well - being services, form a digital agglomeration of more health care and well - being facility resources, form excellent governance of the new ecological environment, form more effective organizational mechanisms and efficiency, better reduce the costs of health care and well - being, and serve the needs of a large - scale population. Summary of the Invention
[0006] The present invention relates to the informatization and digitalization construction in the field of health and wellness, more precisely, to the cloud service project in the field of health and wellness, or the Internet service in the field of health and wellness. It uses cloud computing devices (IaaS server clusters, PaaS server clusters, IaaS clusters) as an open and shared computing environment for public facilities in the field of health and wellness. By configuring and running the digital intelligent health and wellness service port software device, a digital service ecological environment for the field of health and wellness is formed. The present invention solves the following problems in the informatization construction and digitalization construction of the field of health and wellness:
[0007] Construct an open, shared, collaborative, multi-tenant, multi-organization, customized-on-demand, knowledge management model-based digital health and wellness service ecological environment, making the efforts of health and wellness business entities lacking information technology and knowledge capabilities to transform into digital health and wellness organizations simple, efficient, and affordable.
[0008] By developing a shared and collaborative ecological environment, an effective digital aggregation of entity organization resources, hardware resource assets, knowledge resource assets, and other resource assets, which are crucial to the field of health and wellness, is formed to create a resource center;
[0009] Through the software device, methods for discovering, identifying, tracking, and making decisions on health and wellness organizations, facilities, knowledge assets, and product resources are carried out to solve the problems of precise and personalized services for health and wellness users; solve the local limitations of the health and wellness service network; solve the problem of resource coverage for health and wellness users; solve the problems of ineffective organization and efficiency of health and wellness services;
[0010] The present invention discloses a digital intelligent health and wellness service port system and its implementation method. The digital intelligent health and wellness service port system includes: an open cloud computing device based on cloud computing and service engineering (composed of IaaS server clusters, PaaS server clusters, and IaaS server clusters), a smart health and wellness service port software device running on the cloud computing device, a digital ecological environment in the field of health and wellness realized by the digital intelligent health and wellness service port system, and several computing devices and sensing devices distributed at the organizational ends of various health and wellness institutions and health and wellness client sides; among them,
[0011] The cloud computing device is connected to the computing devices at the organizational ends of health and wellness institutions and health and wellness client sides through the Internet, and is used to solve the problem of effective connection and communication among various levels of health management organizations, medical service institutions, various elderly care institutions, medical professionals, personnel of health and wellness facility institutions, and end users in the digital intelligent health and wellness service ecological environment;
[0012] The described digital intelligent elderly care service ecological environment depends on the deployment, release, and operation of the intelligent health care service port software device, including Cyber - organizations, Cyber - core business lines, Cyber - products, Cyber - physical infrastructure assets, and Cyber - knowledge assets for health care. Its characteristics are as follows: The units are various health care institution organizations lacking information technology capabilities and knowledge management capabilities. Through the knowledge management capability model as a service (KMaaS) software device on the Internet, the integration of physical resources and digital resources is achieved, providing digital model services, product services, physical resource services, and knowledge - ability services for enterprises in the health care field on the Internet. By sharing knowledge capabilities, a method for digital construction of organizational mechanisms, core business processes, products and services, physical facilities, and knowledge assets is realized for health care field enterprises under the condition of no large - scale IT investment and operation and maintenance, in an on - demand mode;
[0013] The steps and processes for the deployment, release, and operation of the intelligent health care service port software device are as follows:
[0014] Step 1: The intelligent health care service port software device includes:
[0015] A Web application system running on a SaaS server, with the project name HealthcardCloud;
[0016] An EJB application system running on a PaaS core business content server, including 3 projects, named respectively:
[0017] IHealthcareCloud_PaaS, HealthcareCloud_PaaS, and
[0018] HealthcareCloud_PaaSEAR, where
[0019] IHealthcareCloud_PaaS is a remote interface project, HealthcareCloud_PaaS is a core service kernel implementation project in the health care field, and HealthcareCloud_PaaSEAR is a configuration packaging project; A physical data model project for the cloud data resource center in the health care field running on an IaaS data storage server;
[0020] Step 2: On the main server of SaaS, start MyEclipse 2017 IDE. Select the Servers item in the Preference menu under Window, add the TOMCAT server, and complete the configuration of the TOMCAT Web server. Apply the same method to the servers of SaaS nodes 1 - 4, and make the same configuration for them to form the cloud service entry point in the healthcare field. Any user can use the browser on their own client terminal with the IP address: Port (default IP: 8080) to connect to the computing resource environment in the healthcare field.
[0021] Step 3: Configure the HealthcareCloud project on the main server based on SaaS. In the MyEclipse 2017 IDE environment, import the HealthcareCloud project into the healthcare project workspace through the existing projects in the import menu. In the project, add IHealthcareCloud_PaaS.jar and jboss-client.jar as external libraries to the lib in Web-INF. Click the Manage Deployments button, select the HealthcareCloud project, add it to the TOMCAT server, and then publish the project by pressing publish to deploy it to the TOMCAT Web middleware server. By deploying HealthcareCloud on the main server based on SaaS and starting TOMCAT, any user can use the browser on their own client terminal with the IP address: Port (default IP: 8080) + / HealthcardCloud to connect to the digital service environment portal in the healthcare field.
[0022] Step 4: Deploy IHealthcareCloud_PaaS, HealthcareCloud_PaaS, and HealthcareCloud_PaaSEAR on the PaaS core kernel server for healthcare. In the MyEclipse 2017 IDE environment, select the Servers item in the Preference menu under Window, add the Wildfly server, and complete the configuration of the EJB server in the business logic layer. Apply the same method to the PaaS core business kernel server, and make the same configuration for them to form the digital service access point of the core business kernel model in the healthcare field. Any user can use the browser on their own client terminal with the IP address: Port (default IP: 8080) to connect to the core business service in the healthcare field.
[0023] Step 5: Deploy the physical data model project of the cloud data resource center in the health and wellness field to the data resource storage based on IaaS. Select MySQL or SQLServer 2018 as the relational database storage unit, and use the PowerDesigner database generation tool to generate the data storage model required for the health and wellness ecosystem in the MySQL data storage facility.
[0024] Dependent on the deployment, release, and operation of the intelligent health and wellness service port software device, a digital intelligent elderly care service ecological environment is formed. Its characteristics are as follows: Any health and wellness organization authorizes business workers to submit the basic health and wellness data, health and wellness product data, health and wellness infrastructure data, and health and wellness knowledge asset data of the health and wellness organization in various formats of forms through the client browsers distributed in their locations, forming a data resource center in the health and wellness field. Each health and wellness organization, each health and wellness field classification, each health and wellness community, each health and wellness product category, each health and wellness infrastructure, and each health and wellness knowledge asset are identified by a unique identifier; Through Cyber-health and wellness organizations, Cyber-health and wellness processes, Cyber-health and wellness products, Cyber-health and wellness infrastructure assets, and Cyber-health and wellness intellectual asset services based on health and wellness data and health and wellness software service devices, health and wellness organization business workers or business supervisors can provide digital health management services, digital health monitoring services, digital health monitoring services, digital prevention services, digital health needs platforms, digital health and wellness communities, digital rehabilitation services, digital disability assistance and rescue services through the Internet. The digital intelligent elderly care service ecological environment integrates hospitals, health research institutions, health and wellness organizations, elderly care communities, community medical care, remote intervention, health and elderly care assistance, and digital health and wellness medical facility and equipment providers in a digital environment, surrounding the health and wellness demanders, overcoming and solving one or more of the difficulties and problems mentioned in the invention background, controlling the IT costs of health and wellness organizations, and reducing the maintenance complexity.
[0025] The intelligent health and wellness service port software device described above is configured and run on a cloud computing device, including: a cloud health and wellness portal system software device based on the SaaS model, a core business kernel service system software device for health and wellness based on the PaaS model, and a health and wellness data resource center software device and a data resource storage mode based on the IaaS model. The digital intelligent health and wellness service port system software device is characterized in that: a software device and a data resource storage method for the health and wellness data resource center based on IaaS provide the storage and intelligent management of various service resource data in the health and wellness field across management domains, forming a large-scale aggregation of open, shared, and collaborative service resources in the health and wellness field. The software device uses a control analysis method for industrial organization data, product service data, physical facility resource data, and intellectual asset resource data in the health and wellness industry to discover, identify, track, and make decisions on important health and wellness resources.
[0026] A software device and data resource storage method for an IaaS-based health care data resource center, characterized by constructing a multi-dimensional and multi-material resource database, which is used to effectively organize and store a large amount of data in the health care field. The storage includes: metadata resource service nodes and service nodes in the health care field. The metadata resource service nodes are defined by restricted vocabulary in the health care field, explaining the dimensions of health care services. The dimensions include: health care organizations, health care tenants, health care products, health care infrastructure assets, health care knowledge resource assets, health care archives, health care service catalogs, health care application data, health care service events, health care privacy protection, and health care e-commerce; for each service dimension, there is a corresponding data resource library.
[0027] Health care organization resource database: Store any basic and professional multi-modal data collected from health care organizations. The basic data includes: listable data such as unique identifier, name, short name, legal representative, contact information, location, health care service area, service category, classification, grading, service method, and service items. Health care organization construction data (strategy, goal, resource, organizational division, position, task, role). Health care organization archive data (data represented in Word, PDF, EXCEL, PPT). Health care organization graphic and picture data. Health care organization audio and video data. Health care organization 2-3D model data.
[0028] Health care tenant data resource database: Store the basic and customized service data of health care users collected, including: account data, user basic characteristic data, user personalized data, user authorization data, user customized health care service data, user role data, user document data, user archive data, user graphic file data, tenant classification data, and business worker service management data.
[0029] Health care product resource database: Store the listable mode data, document mode data, graphic and picture data, audio and video mode data, and 2-3D mode data of health care products collected as above.
[0030] Health care infrastructure asset data resource database: Store the listable mode data, document mode data, graphic and picture data, audio and video mode data, and 2-3D mode data of health care basic sites, places, facilities, equipment, instruments, and health care devices collected as above.
[0031] Healthcare Knowledge Resource Asset Database: Stores and collects data on healthcare professionals, professional knowledge, healthcare organization construction models, core healthcare business processes (health self-service portal, health-needs community, doctor-patient community, automatic health monitoring, digital interconnection between healthcare organizations and demand users, digital interconnection between healthcare products and demand users, digital interconnection between healthcare infrastructure resources and demand users, digital interconnection between healthcare knowledge resources and demand users), healthcare models, and healthcare devices. The data can be in list mode, document mode, graphic and image mode, audio and video mode, and 2-3D mode.
[0032] Healthcare Archive Data Resource Database: As a data resource service node that can be shared through authorization, it stores and collects the health data of healthcare users, including: basic physical data, physical examination data, health records, electronic medical records, etc.
[0033] Healthcare Service Event Data Resource Database: Stores and collects the status data during the provision of healthcare services.
[0034] Healthcare E-commerce Data Resource Database: Stores the shopping cart, payment, order, and status tracking data of healthcare users for products and services.
[0035] Privacy Protection Data Resource Database: Stores data on data privacy authorization and protection.
[0036] Knowledge Management Service Component: Implements the invocation and integrated invocation of knowledge discovery services for the knowledge kernel software device.
[0037] The described digital intelligent healthcare service port system is characterized in that: the software service device is installed, configured, and run on the cloud computing device (IaaS server cluster, PaaS server cluster, SaaS server cluster), including: a means and method to provide the required computing resource facilities for healthcare industry organizations, becoming a public facility-based digital intelligent service environment in the healthcare field. Various users (shareholders) in the healthcare industry can access the computing resource environment, data storage environment, and core healthcare business kernel service environment through any client computing terminal browser. By accessing the entry address of the service port, they enter the digital intelligent healthcare service environment. Through the Internet interconnection mechanism, end-users obtain digital intelligent healthcare services, and healthcare service providers provide digitalized organization, products, facilities, and knowledge asset services, while IT management personnel and government personnel provide governance services. The software device realizes the integration of physical resources and digital resources of healthcare industry institutions, and conducts knowledge-based management and control over healthcare organization, products, infrastructure assets, knowledge assets, and service processes, solving the problems of insufficient aggregation of digital service resources in the healthcare field and effectively planning and managing the needs of a large number of healthcare users.
[0038] The described digital intelligent health care service port system device is implemented through the following technical means:
[0039] Health care portal service system based on the SaaS model: It is implemented through a Web application project, the HealthcareCloud project, including technologies for multi-tenant services, portal content organization mechanisms, health care service content uploading mechanisms, etc., which constitute technologies for effectively working with health care stakeholders;
[0040] Health care core service kernel system based on the PaaS model: It is implemented through one or more EJB projects. For example, in a specific case, it is implemented using IHeathcare_PaaS, Healthcare_PaaS, Healthcare_PaaSEAR. It is mainly implemented through EJB Session components, including multi-organization knowledge management core services, multi-tenant knowledge management core services, health care product knowledge management core services, health care process knowledge management core services, core business of health care entity facility asset knowledge management, and core business of health care domain knowledge asset knowledge management; The health care digital service factory device includes: basic middleware models in the health care service field, multimedia materials, health care service organizations, products, resources, infrastructure, base class definitions of knowledge assets, and a flexible group health care Cyber-service assembly line through SCRUM;
[0041] IaaS-based health care data resource center and the stored data model.
[0042] A digital intelligent health and wellness service port software device, comprising: an organizational management service software component. The multi-organizational management service software component uses a knowledge management as a service (KMaaS) method. Through computer terminals distributed in numerous health and wellness institutions, organizational informatization data is collected into an IaaS-based health and wellness data resource center, forming an aggregation of health and wellness institutions through data resources in the digital intelligent health and wellness service ecological environment. The aggregated health and wellness organizations include, but are not limited to: health management institutions, medical institutions at all levels, clinics, medical research institutions, medical rescue institutions, elderly care assistance institutions, health and wellness commercial organizations, rehabilitation centers, community organizations, convalescent places, resorts, etc.; Its characteristics are: a multi-organizational management service software component, which obtains basic data and professional data of health and wellness organizations through a multi-organizational knowledge management service tool as a graphical user interface. The data is independently input by health and wellness organization business workers, or input through data collection devices, or input by input personnel; Through the multi-organizational knowledge management service kernel service, knowledge management method control and management are carried out on organizational data, and storage and update of data are achieved through a multi-organizational storage manager; Each health and wellness organization is identified by a unique organizational identifier in the digital intelligent health and wellness ecological environment. After identity recognition and authentication, it becomes a Cyber-organization; The described Cyber-organization method enables a physical health and wellness organization to be transformed into a digital health and wellness organization, and through the Internet, provides digital health and wellness product services, provides digital physical resource services, provides digital knowledge asset resource services, and provides digital health and wellness model services. The multi-organizational management service software component is characterized in that: organizational resources, product resources of the organization, infrastructure resources of the organization, and knowledge asset resources of the organization, which are crucial to the health management and health and wellness fields, and its core is to integrate the health and wellness resources existing separately in the entire health and wellness field into a whole through data resources. Furthermore, doctors, experts, researchers, hospitals, medical sites, medical equipment, instruments, elderly care facilities, convalescent and leisure places, communities, assistance institutions, rescue institutions, health management organizations, elderly care and disability assistance institutions are formed into a digital resource center of a cyber-physical systems (CPSs) system.
[0043] The described cyber-physical systems (CPSs) component is characterized in that: continuously accumulating digital asset resources of health and wellness field organizations, products, infrastructure assets, and knowledge assets, forming an unprecedented aggregation of health and wellness resources in terms of scale, category, level, and organization. Overcoming the defect that key core resources cannot be fully allocated, shared, and popularized. Through a method of discovery, identification, tracking, decision-making management, and control, solve the problems of better health and wellness resources, higher efficiency, wider coverage, and sustainable improvement.
[0044] A digital intelligent health and wellness service port software device, comprising: a multi-tenant management service software component that uses a knowledge management as a service (KMaaS) method to connect to a multi-tenant knowledge management service tool software component through a browser distributed on the end-user client to provide service requests in the health and wellness field; characterized in that: the multi-tenant knowledge management service kernel service pushes health and wellness services through personalization, authorization, and reservation mechanisms; the knowledge management as a service (KMaaS) method takes health and wellness demanders as the center and evidence-driven as the core, and is a program control method for organizational resources, product resources, entity-based asset resources, knowledge asset resources, and the core business kernel model in the health and wellness field, overcoming the limitations of only local / partial access to health and wellness resources in the prior art, overcoming the defects of inaccurate, inefficient, and non-popularized push of the needs of health and wellness demanders in the case of a large number of users, and overcoming the problems of difficult access, cumbersome processes, and unaffordable prices of health and wellness service resources, enabling business entities in the health and wellness industry to get rid of insufficient information technology capabilities and knowledge capabilities and still be able to effectively connect internal models, management, products, facilities, and knowledge with end-users. It reduces the operating costs of the health and wellness industry, improves service efficiency, and realizes services for the sharing economy model for a super-large population; the health and wellness services provided by the multi-tenant management service software component include but are not limited to: user identity recognition and authorization management service, life and health full-life cycle management service, personal health prevention management service, personal health monitoring management service, personal health first aid management service, personal health rehabilitation management service, personal medical treatment escort management service, family doctor management service, personal chronic disease integrated management and monitoring service, personal health record management service, doctor-patient-care platform, health and wellness community, personal assisted care management service, remote home health care management service, demand individual and health and wellness provider portal, etc.
[0045] A digital intelligent health care service port software device, comprising: a health care product management service software component and a digital health care infrastructure management service component (CPSs), using a knowledge management as a service (KMaaS) method, through the client browsers of health care providers, converting its own health care products, infrastructure, and knowledge capabilities into Cyber-health care products, Cyber-infrastructure, and Cyber-knowledge capabilities through a digital factory. The characteristics are as follows: The health care products provided by health care institutions are specifically not limited to: personal health management services, personal medical services, monitoring, prevention, and intervention; physical infrastructure: including but not limited to: venues, facilities, and equipment; and knowledge capabilities, specifically not limited to: organizational mechanisms (departments, sections, teams), core business processes, and IP assets. Through the form data collection unit of the SaaS portal for providers, including: a user self-entry mechanism system, a professional entry mechanism system, and an automatic data crawling and collection mechanism system, through the multi-dimensional mode processing of data by the core business in the PaaS layer, it is stored in the health care cloud data resource center; the multi-dimensional mode data includes but is not limited to: health care asset basic data, document data, video data, 2D-3D model data, and professional status data. The digital factory device in the PaaS layer, through providing the visualization model processing of health care big data, renders the products, infrastructure, and IP assets of health care providers to end users in the form of data tables, documents, images, and videos, and 2D-3D models. A further characteristic is: As a specific example, the products, infrastructure assets, and IP assets of any health care institution are knowledge-organized through the CPSs system according to classification, grading, calibration, and fixed specialized vocabulary annotation techniques, supporting the discovery, identification, tracking, decision-making, management, utilization, and sharing of health care assets according to the requirements of health care users; when receiving a request from an end user, the CPSs uses a visualization technology to display and render the organizational mode services, product services, infrastructure asset services, and knowledge asset services owned by any health care organization, generating an Internet Cyber-commercial service that can provide the interaction between virtual and physical resource assets and the Internet transaction of physical organizational modes and physical assets. Description of the Drawings
[0046] Figure 1: A digital intelligent health care service port service system and its implementation method, which illustrate the constituent elements of a digital intelligent health care service port system and its implementation method. Health care demand users are digitally connected to health care organizations, health care products, health care infrastructure assets, and health care knowledge assets through the system; health care organizations lacking IT capabilities and digital knowledge capabilities form digital accumulations through the system to provide various data-based health care services; the cloud computing device provides utility-based connectivity services, and a digital intelligent health care service port service software device constituent element is used for computer management of health care resources. Health care CPSs use KMaaS to achieve the digital transformation of health care infrastructure assets.
[0047] Figure 2 : Based on the IaaS health care field data resource storage and application method, it illustrates a system and software device in the health care field based on the IaaS cloud data storage center;
[0048] Figure 3 : Digital intelligent health care service port software device, which illustrates the implementation software device structure of a digital intelligent service ecological environment in the health care field, including: SaaS-based intelligent health care portal software system device, PaaS-based health care core service kernel device, and IaaS-based data resource center;
[0049] Figure 4 : A Cyber health care infrastructure (Kangkang CPSs) device, which illustrates a knowledge management-dependent health care CPSs system and software device, and illustrates the constituent elements of the digital conversion of entity resources in the health care field, including entity organizations, products, infrastructure assets, and knowledge assets, through knowledge discovery and the kernel, as well as the KMaaS software device constituent elements;
[0050] Figure 5 : The client application component structure in a digital health care intelligent service port software device, which illustrates the SaaS-based client portal component structure in the digital intelligent health care service port software device, including: graphical interface mode, adaptation to the personalization of client terminals, health care service content import organization mechanism, and private cloud access mechanism; Specific implementation manner
[0051] Step 1: Build and configure an IaaS server cluster of at least 20 servers, which consists of physical computer servers and virtual computers. The physical computer servers perform virtualization operations through the Windows 2018 system Hypervisor, or a cloud computer system with more than 20 Windows 2018 or CentOS operating systems is provided by a third-party cloud service provider. Each system configuration consists of 4 cores, 8G of memory, and 5 or 10M communication bandwidth. Among them, 2 systems are configured with 500G of high-speed storage space as the IaaS relational database storage space, and 2 systems are configured with 500G of high-speed storage space as the storage space managed by the Windows 2018 file server; for the remaining 16 or more systems, 100G of high-speed storage space is configured as the program storage and running space; the IaaS server cluster is provided with a firewall, anti-virus, and anti-intrusion security device by the server provider to provide high-speed network communication services; 2 servers with 500G of storage space are respectively installed with MySQL 6 and SQLSEVER2018 relational databases to serve as IaaS data storage servers; another 2 servers with 500G of storage space are respectively installed with Windows or Linux file management servers to serve as document data storage servers; 1 IaaS server is configured as an IaaS management server;
[0052] Step 2: Build and configure a PaaS server cluster of 10 servers. The PaaS server cluster is formed by configuring corresponding basic software through the IaaS server. Among them: at least 2 IaaS servers are configured with MyEclipse 2017 IDE as an integrated development environment and platform based on Java, and at least 2 IaaS servers are configured with Visual Studio IDE as an integrated development environment and platform based on the.NetFramework framework; all 10 PaaS servers are configured and installed with JDK 1.8, and all 10 PaaS servers are configured with J2EE middleware basic software. A directory J2EE is built on each computer to store the J2EE middleware basic software, including: Ant, MAVEN, SVN, GIT, TOMCAT, WildFly, Weblogic, PowerDesigner, etc.; all 10 PaaS servers are configured with the Microsoft middleware software.Net Framework; based on requirements, the 10 PaaS servers are respectively configured as: a PaaS MyEclopse 2017 IDE development server, a PaaS core service kernel server in the health care field, a test server, a training server, and a PaaS management server;
[0053] Step 3: Set up and configure 5 SaaS server clusters, and use 5 unconfigured IaaS servers. Configure MyEclipse 2017 IDE as the basic integrated development environment for each one, configure JDK1.8 as the Java virtual machine for each one, and configure J2EE Web middleware basic software such as TOMCAT, WildFly, and Weblogic for each one. By configuring the environment variables and starting the middleware server, convert the 5 IaaS servers into 5 SaaS-based servers, named the main SaaS server, node 1-4 SaaS servers respectively. Each SaaS server is called a SaaS-based server for the healthcare field and is a Web middleware container used to support the operation of Web application projects.
[0054] The cloud computing device is implemented according to the following method steps:
[0055] Step 1: Set up and configure at least 20 IaaS server clusters, which are composed of physical computer servers and virtual computers. The physical computer servers are virtualized through the Windows 2018 system Hypervisor / , or more than 20 cloud computer systems with Windows 2018 or CentOS operating systems are provided by a third-party cloud service provider. Each system is configured with 4 cores, 8G of memory, and 5 or 10M communication bandwidth. Among them, 2 are configured with 500G high-speed storage space as the IaaS relational database storage space, and 2 are configured with 500G high-speed storage space as the storage space managed by the Windows 2018 file server; for the remaining 16 or more, 100G high-speed storage space is configured as the program storage and running space; the IaaS server cluster is provided with a firewall, anti-virus, and anti-intrusion security device by the server provider to provide high-speed network communication services; 2 servers with 500G storage space are respectively installed with MySQL 6 and SQLSEVER2018 relational databases to serve as IaaS data storage servers; another 2 servers with 500G storage space are respectively installed with Windows or Linux file management servers to serve as document data storage servers; 1 IaaS server is configured as the IaaS management server;
[0056] Step 2: Set up and configure 10 PaaS server clusters. The PaaS server clusters are formed by configuring corresponding basic software through IaaS servers. Specifically: At least 2 IaaS servers are configured with MyEclipse 2017 IDE as an integrated development environment and platform based on Java. At least 2 IaaS servers are configured with Visual Studio IDE as an integrated development environment and platform based on the.NetFramework framework. All 10 PaaS servers are configured and installed with JDK 1.8. All 10 PaaS servers are configured with J2EE middleware basic software. A directory J2EE is built on each computer to store the J2EE middleware basic software, including: Ant, MAVEN, SVN, GIT, TOMCAT, WildFly, Weblogic, PowerDesigner, etc. All 10 PaaS servers are configured with Microsoft middleware software.Net Framework. Based on requirements, the 10 PaaS servers are respectively configured as: a PaaS MyEclopse 2017 IDE development server, a PaaS core service kernel server in the health care field, a test server, a training server, and a PaaS management server.
[0057] Step 3: Set up and configure 5 SaaS server clusters. Use 5 unconfigured IaaS servers. Each one is configured with MyEclipse 2017 IDE as a basic integrated development environment, each one is configured with JDK1.8 as a Java virtual machine, and each one is configured with J2EE Web middleware basic software such as TOMCAT, WildFly, Weblogic. By configuring environment variables and starting the middleware server, the 5 IaaS servers are converted into 5 SaaS-based servers, which are respectively named the main SaaS server, node 1 - 4 SaaS servers. Each SaaS server is called a SaaS-based server for the health care field, which is a Web middleware container used to support the operation of Web application projects.
[0058] The cloud computing device method provides an open, shared, collaborative, and customized utility-based computing resource pool for various stakeholders in the health care field, and realizes the effective connection and effective communication of various organizational structures, stakeholders, and end users in the health care field.
[0059] A multi-tenant management service software component, comprising: a SaaS client application component, which is configured on a SaaS middleware server and provides a client Web application interface based on a SaaS health care portal; multi-tenant users use browsers on terminal devices (PCs, workstations, mobile phones) distributed in various places to enter a digital smart health care service port based on different roles. The SaaS client application component includes: GUIs Adapter, Communication Adapter, and DataAdpater, which are used to adapt the Web interface to specific terminal devices; including: Header Control, FooterControl, Portfolio Service Control, Content Navigation Control, and DomainWorkspace Control, which are used to provide a unified, easy-to-operate, and easy-to-learn Web application interface for terminal users. PortfolioService Control is loaded as a customized service navigation menu bar, Content Navigation Control is loaded as a customized service content navigation bar, and DomainWorkspace Control is loaded as a customer workspace. HeaderControl and FooterControl are used to connect to the client's workstation. Control is used as the header and footer of the Web application; it includes: a health care service warehouse directory, which is used to provide customized services to users; the client application component is characterized by: for the many people with different needs and secondary health characteristics who need health care, the SaaS client application component technology enables the end-users with health care needs to obtain the discovery, recommendation, and on-demand customization of Cyber-health care organizations, Cyber-health care products, Cyber-health care infrastructure assets, and Cyber-knowledge assets in the user's demand field through the health care service warehouse directory, or submit a restricted field vocabulary data search; enter the predetermined Cyber-service resources to realize the "health-need" digital interaction. A multi-tenant management service software component implementation mechanism is as follows
[0060] Step 1: Build a SaaS client application component based on the SaaS health care service portal, which is used for multiple tenants to enter the health care cloud service ecosystem through entry points according to different tenant roles; GUIS Adaptor, communication Adaptor, and Data Adaptor are used to identify the form of the client terminal (such as PC, mobile phone, workstation) so that data rendering and interface are suitable for the user environment;
[0061] Step 2: By using the MyEclipse component generator, generate the components of the SaaS client application portal through jsp or servlet, including: Header Control, Footer Control, Portfolio Service Control, Content Navigation Control, and Domain Workspace Control.
[0062] Step 3: Set and configure the visual layout of the portal components on different device browsers through the CSS file, and handle the page element events through scripts.
[0063] Step 4: For the Header Control, Footer Control, Portfolio Service Control, and Content Navigation Control, generate the service menus and service content menus of the Portfolio Control and Content Navigation Control for the service data of the profile component, secure component, subscriber component, and the directory of the health care service warehouse.
[0064] Step 5: Adopt the Builder design pattern for different users, including: Header Control, Footer Control, Portfolio Control, Content Navigation Control, Domain Workspace Control as components, and use Directory as the solution for the health care user interface design to generate a multi-tenant personalized service interface space.
[0065] Step 6: The component Local Data Service Directory is used to access the services in the private cloud of the health care organization and provide XML data interaction.
[0066] Step 7: The component Data Loader Service imports personalized content in the health care field based on the content of the previous steps.
[0067] The PaaS-based health care digital service factory belongs to, including: the digital service basic middleware library in the health care field, the material library, and a Cyber service assembly line based on the Scrum mechanism, and is characterized in that: rendering this kind of asset in the health care field in a digital and visual form, and its implementation mechanism includes:
[0068] Implementation mechanism of the digital service basic middleware library in the health and wellness field, including definition
[0069] IServiceware:
[0070] GenericServiceware:
[0071] Service: ServiceView, ServiceTool, ServiceProcess, ServiceTarget,
[0072] ServiceOrganization,
[0073] ServiceRequest:
[0074] ServiceResponse:
[0075] ServiceConfig:
[0076] OrgizationServicewa, ProductServiceware, PhysicalAssetServiceware,
[0077] DeviceServiceware,
[0078] IPAssetServiceware implements GenericServiceware;
[0079] The material library includes: the rendering mechanisms for the data, documents, images, videos, 2D-3D mode data mentioned above;
[0080] The assembly line follows the Scrum mechanism
[0081] The described multi-dimensional and multi-material resource data resource library, configured and running on the cloud data resource center and management software device in the health and wellness field based on IaaS, includes: the aforementioned 2 4-core, 8G, 5-10M bandwidth, 500G file server memories, 2 4-core, 8G, 5-10M bandwidth, 500G database server memories, serving as storage devices; the cloud storage manager in the health and wellness field uses MySQL database manager SQLYog and SQLServer Studio to manage database accounts, roles, database table creation, connection pool numbers, and database maintenance; the data and business integration layer device uses the Java JPA method and operates on the stored data using the FacadeLocal interface. The specific methods are as follows:
[0082] Step 1: Configure the data resource storage database MySQL or SQLServer database as the JNDI data source of the Java middleware container WildFly technology;
[0083] Step 2: Install JPA for the JNDI data source using the Config Facets tool in the MyEclipse 2017 development environment to achieve data consistency between the storage model and the PaaS healthcare business core logic layer model;
[0084] Step 3: Use the Generate Entities&Facades function in the JPA tool of the MyEclipse 2017 development environment to generate the Entity class for each table in the healthcare data resource library, and access and assign data in the table through getters and setters; Select the Local Interface to generate the Facade class for the group control function of each table. The Facade class includes functions such as save, update, delete, and find to control the addition, deletion, query, and modification of database tables; The FacadeLocal interface is used to generate and generate Facade object instances in the EJB correlation injection mode;
[0085] Step 4: The process of the data and business integration layer device using FacadeLocal for database table XXXX operation cases is as follows. Taking the User table as an example
[0086]
[0087]
[0088] A healthcare data cache for buffering and storing data, a data reconstructor for refreshing data in the cache; Logs are used to record each data operation, and the actual storage of healthcare data is based on the IaaS data resource center.
[0089] The described Cyber Physical Systems (CPSs), which is also a software device configured and run on a cloud computing device, includes: a data resource device of the established physical infrastructure of a health care organization entity, where the physical infrastructure of the health care organization entity is the physical resource relied on by the health care organization to provide products / services, and at least includes one specific physical resource, such as the site location (service area) resource of the health care organization, the service facility assets (room beds and service facility assets that can be provided) resource, the medical and health care equipment assets resource, the instrument assets resource, the clinical assets resource, the research assets resource. It also includes: an established knowledge asset data resource device of the health care organization, where the knowledge assets at least include one specific knowledge resource, such as organizational resources, the knowledge and skills existing in health care professionals, core business processes, health care products and model services; The Cyber Physical Systems (CPSs) is characterized in that: through the Knowledge Management as a Service (KMaaS) software device, the physical infrastructure assets and knowledge assets of a physical health care organization can be provided with digital models or physical services on the Internet;
[0090] A Cyber Physical Systems (CPSs) is used by authorized health care organization business workers to import data of the organization's site resources, place resources, equipment resources, facility resources, organizational resources, status resources, and product resources through a SaaS health care portal port; through the core business kernel service execution component of the PaaS in the health care field, it is stored in the data resource center of the health care field. The function of a Cyber Physical Systems (CPSs) is to import health care infrastructure distributed in different geographical locations, different regions, different qualities, different categories, and other diverse ones, including: health care site assets, health care product assets, health care organization assets, health care facility assets, health care knowledge assets, into the resource data of the data resource center of the health care field; The core service software device includes: an identity card component, a service list management component, a shared management service component, and a content management service component. These software components implement and realize Cyber-health care organizations, Cyber-health care products, Cyber-health care processes, Cyber-health care infrastructure assets, and Cyber-health care knowledge assets through a knowledge management service device;
[0091] The knowledge discovery service for the knowledge kernel software device includes: an organization service component, a process service component, a product service component, a facility service component, an equipment service component, a knowledge service component, other service components, and a knowledge import component. All import components are developed, configured, and imported by knowledge management personnel. The above-mentioned service components are implemented through the factory design pattern. The implementation method is as follows: use the XXX component to represent one of the above instances,
[0092] Step 1: Generate the XXX service component interface: IXXXManagementService; the functions include service and service items;
[0093] Step 2: Generate specific XXX management service implementation devices, XXXManagementService_1, XXXManagementService_2, …, XXXManagementService_N, through inheritance; currently, at least one specific XXX management service is implemented;
[0094] Step 3: Build the XXXManagementServiceFactory device, including: IXXXManagementService as its basic attribute, and IXXXManagementService product_xxxmanagementservice(String xxxType);
[0095] Step 4: Build the CyberXXXServiceEngineering component to implement Cyber-XXX by using XXXManagementServiceFactory;
[0096] Step 5: Implement XXXManagementService_i (i = 1, 2, …, N). In the SaaS portal application project, create the XXXManagementService_i_GUIs jsp component, and use several form models to enable the business workers of the health care organization to collect data. The expression models include a list data collection model, a document data extraction model, an image data collection model, a video data collection model, and a 2-3D data collection model;
[0097] Step 6: Create the XXXManagementService_i_Tool servlet component to implement Cyber-XXX data interaction and obtain the multi-modal data input of XXXManagementService_i_GUIs jsp;
[0098] Step 7: In the PaaS layer project, create the XXXManagementService_iImpl session EJB component, generate the IXXXManagementService_i remote interface, generate the XXX Entitties data model and Facade model through JPA technology. XXXManagementService_i_Tool calls and uses the XXX Entitties data model and Facade model through JNDI to implement the digital mode;
[0099] Step 8: XXXManagementService_iImpl defines discovery, identification, tracking, decision-making, management, and functions to implement knowledge management of data in the health care field.
Claims
1. A digital intelligent health care service port system, characterized in that, Including: A cloud computing device based on cloud computing and service engineering, a smart health and wellness service port software device running on the cloud computing device, a digital smart elderly care service ecological environment, and several computing devices and sensing devices distributed at various elderly care institution organization ends and elderly care client ends; wherein, The cloud computing device is composed of an IaaS server cluster, a PaaS server cluster, and an IaaS server cluster; the cloud computing device is connected to the computing devices at the elderly care institution organization end and the elderly care client end through the Internet, and is used to solve the effective connection and communication problems among various levels of health management organizations, medical service institutions, various elderly care institutions, medical professionals, elderly care facility institution personnel, and end users in the digital smart elderly care service ecological environment; The digital smart elderly care service ecological environment depends on the deployment, release, and operation of the smart health and wellness service port software device, and includes Cyber-organizations, Cyber-core business lines, Cyber-products, Cyber-physical infrastructure assets, Cyber-intellectual assets for elderly care, and various elderly care institution organizations. Through the knowledge management capability model on the Internet as the service KMaaS software device, it realizes the integration of physical resources and digital resources, and provides digital model services, product services, physical resource services, and knowledge capability services for enterprises in the elderly care field on the Internet; The smart health and wellness service port software device is configured and run on the cloud computing device, and includes: a cloud elderly care portal system software device based on the SaaS model, a core business kernel service system software device for elderly care based on the PaaS model, and a data resource center software device and data resource storage mode for elderly care based on the IaaS model; the smart health and wellness service port software device includes an IaaS-based elderly care data resource center software device and a data resource storage method, which provide the storage and intelligent management of various service resource data in the elderly care field across management domains, form a large-scale aggregation of open, shared, and collaborative service resources in the elderly care field, and the software device uses the control and analysis method of elderly care industry organization data, product service data, physical facility resource data, and intellectual asset resource data to discover, identify, track, and make decisions on important elderly care resources; Cyber Physical Systems (CPSs), which are also software devices configured and run on cloud computing devices, include: a data resource device for the physical infrastructure of established health care institution entities. The physical infrastructure of health care institution entities is the physical resources relied on by health care organizations to provide products / services, and at least includes one of the following specific physical resources: the location resources of health care institutions, service facility asset resources, medical and health care equipment asset resources, instrument asset resources, clinical asset resources, research asset resources. It also includes: a data resource device for the knowledge assets of established health care institutions. The knowledge assets at least include one specific knowledge resource: organizational resources, knowledge and skills existing in health care professionals, core business processes, health care products and model services. Cyber Physical Systems (CPSs) provide digital models or physical services for the physical infrastructure assets and knowledge assets of a physical health care organization through a Knowledge Management as a Service (KMaaS) software device on the Internet; The Smart Health Care Service Port software device is installed, configured and run on the aforementioned cloud computing device, becoming a utility digital smart service environment in the field of health care; various users in the field of health care industry can access the computing resource environment, data storage environment, and core business kernel service environment of health care through any client computing terminal browser; by accessing the entry address of the service port, enter the digital smart health care service environment, and through the Internet interconnection mechanism, end users obtain digital smart health care services, health care service providers provide digitalized organizational, product, facility and knowledge asset services, and IT managers and government personnel provide governance services; the Smart Health Care Service Port software device realizes the integration of the physical resources and digital resources of health care industry institutions, and conducts knowledge-based management and control over health care institution organizations, products, infrastructure assets, knowledge assets and service processes, solving the problems of insufficient aggregation of digital service resources in the health care field and the effective planning and management of large-scale health care user needs.
2. The digital intelligent health care service port system according to claim 1, comprising: A software component for organizational management services. The multi-organizational management service software component utilizes a knowledge management as a service (KMaaS) software device. Through computer terminals distributed in numerous healthcare and wellness institutions, it collects organizational informatization data into a healthcare and wellness data resource center based on IaaS, forming an aggregation of healthcare and wellness institutions in the digital intelligent healthcare and wellness service ecological environment. The aggregated healthcare and wellness organizations include: health management institutions, medical institutions at all levels, clinics, medical research institutions, medical rescue institutions, elderly care assistance institutions, healthcare and wellness commercial organizations, rehabilitation centers, community organizations, convalescent places, and resorts. Its characteristics are as follows: A multi-organizational management service software component obtains basic data and professional data of healthcare and wellness organizations through a multi-organizational knowledge management service tool as a graphical user interface; controls and manages organizational data through a multi-organizational knowledge management service kernel service, and stores and updates data through a multi-organizational storage manager; each healthcare and wellness organization is identified by a unique organizational identifier in the digital intelligent healthcare and wellness ecological environment, and becomes a Cyber-organization after identity recognition and authentication; the Cyber-organization method enables a physical healthcare and wellness organization to be transformed into a digital healthcare and wellness organization, and through the Internet, provides digital healthcare and wellness product services, digital physical resource services, digital knowledge asset resource services, and digital healthcare and wellness model services; the multi-organizational management service software component integrates organizational resources, organizational product resources, organizational infrastructure resources, and organizational knowledge asset resources, which are crucial for health management and the healthcare and wellness field, and integrates the healthcare and wellness resources that exist separately in the entire healthcare and wellness field into a whole through data resources, forming a digital resource center of Cyber facilities systems (CPSs) including doctors, experts, researchers, hospitals, medical sites, medical equipment, instruments, elderly care facilities, convalescent and leisure places, communities, assistance institutions, rescue institutions, health management organizations, and elderly care and disability assistance institutions.
3. The digital intelligent health care service port system according to claim 1, comprising: A multi-tenant management service software component uses a knowledge management as a service (KMaaS) software device to connect to a multi-tenant knowledge management service tool software component through a browser distributed on the end-user client, providing service requests in the health care field; the multi-tenant knowledge management service kernel service pushes health care services through personalization, authorization, and reservation mechanisms; the knowledge management as a service (KmaaS) software device takes health care demanders as the center and evidence-driven as the core, and is a program control method for organizational resources, product resources, entity-based asset resources, knowledge asset resources, and the core business kernel model in the health care field. The health care services provided by the multi-tenant management service software component include: user identity recognition and authorization management service, full life cycle management service of life and health, personal health prevention management service, personal health monitoring management service, personal health first aid management service, personal health rehabilitation management service, personal medical treatment escort management service, family doctor management service, integrated management and monitoring service of personal chronic diseases, personal health record management service, doctor-patient-care platform, health care community, personal assisted care management service, remote home health care management service, demand individual and health care provider portals.
4. A digital intelligent health care service port system according to claim 1, comprising: a health care product management service software component and a Cyber facility system CPSs, using a knowledge management as a service KmaaS software device, through the client browser distributed to the health care provider, converting its own health care products, infrastructure, and knowledge capabilities into Cyber-health care products, Cyber-infrastructure, and Cyber-knowledge capabilities through a digital factory; the health care products provided by the health care institution specifically include: Personal health management services, personal medical services, monitoring, prevention, intervention; Physical infrastructure: including: venues, facilities, equipment; and knowledge capabilities, specifically including: organizational mechanisms, core business processes, IP assets; through a form data collection unit for the provider's SaaS portal, including: user self-entry mechanism system, professional staff entry mechanism system, and automatic data crawling and collection mechanism system, through the multi-dimensional model processing of data by the core business in the PaaS layer, stored in the health care cloud data resource center; multi-dimensional model data includes: health care asset basic data, document data, video data, 2-3D model data, professional status data; the digital factory device in the PaaS layer provides the processing of health care big data visualization models, and renders the products, infrastructure, and IP assets of health care providers to end-users in the form of data tables, documents, images, and videos, 2-3D models; the products, infrastructure assets, and IP assets of any health care institution are knowledge-organized by the Cyber facility system (CPSs) according to classification, grading, calibration, and fixed specialized vocabulary annotation techniques, supporting the discovery, identification, tracking, decision-making, management, utilization, and sharing of health care assets according to the requirements of health care users; when receiving an end-user request, the Cyber facility system (CPSs) uses a visualization technology to display and render the organizational model services, product services, infrastructure asset services, and knowledge asset services owned by any health care organization, generating an Internet Cyber-commercial service that can provide the interaction of virtual and physical resource assets and the Internet transactions of physical organizational models and physical assets.
5. The digital intelligent health care service port system according to claim 1 includes: a SaaS client application component configured on a SaaS middleware server to provide a client Web application interface based on a SaaS health care portal; browsers on terminal devices distributed in various places are used by multi-tenant users, and based on different roles, they enter the digital intelligent health care service port. The SaaS client application component includes adapting the Web interface to specific terminal devices; including: Header Control, Footer Control, Portfolio Service Control, Content NavigationControl, and Domain Workspace Control serve as a unified, easy-to-operate, and easy-to-learn Web application interface for end users. Portfolio Service Control is loaded as a customized service navigation menu bar, ContentNavigation Control is loaded as a customized service content navigation bar, Domain Workspace Control is loaded as a customer workplace, and Header Control and Footer Control are used as Web application headers and footers; including: a health care service warehouse directory, used to provide customized services to users; for a large number of people with health care needs who have different needs and sub-health characteristics, SaaS client application component technology enables end users with health care needs to obtain the discovery, recommendation, and on-demand customization of Cyber-health care organizations, Cyber-health care products, Cyber-health care infrastructure assets, and Cyber-knowledge assets in the user's demand field through the health care service warehouse directory, or by submitting restricted field vocabulary data searches; access to predetermined Cyber-service resources to achieve "health-need" digital interaction.
6. The digital intelligent healthcare service port system according to claim 1, wherein: The digital service basic middleware library, material library, and a Cyber service assembly line based on the Scrum mechanism in the field of health care render such assets in the field of health care in a digital visual form.
7. A method for applying a digital smart health care service port system as claimed in claim 1, characterized in that: Step 1: Build and configure at least 20 IaaS server clusters, consisting of physical computer servers and virtual computers. The physical computer servers are virtualized through the Windows 2018 system Hypervisor, or a third-party cloud service provider provides more than 20 cloud computer systems with Windows 2018 or CentOS operating systems. Each system is configured with 4 cores, 8G memory and 5 or 10M communication bandwidth. Two of them are configured with 500G high-speed storage space as IaaS relational database storage space, and two are configured with 500G high-speed storage space as storage space managed based on Windows 2018 file server; For more than 16 units, configure 100G high-speed storage space for program storage and running space; the IaaS server cluster is provided with a firewall, anti-virus, and anti-intrusion security device by the server provider, and provides high-speed network communication services; two 500G storage space servers are installed with MySQL 6 and SQLSEVER2018 relational databases respectively, and the services are used as IaaS data storage servers; another two 500G storage space servers are respectively installed with Windows or Linux file management servers as file data storage servers. One IaaS server is configured as an IaaS management server. Step 2: Build and configure 10 PaaS server clusters. The PaaS server clusters are formed by configuring corresponding basic software through IaaS servers. Among them: at least two IaaS servers are configured with MyEclipse 2017 IDE as an integrated development environment and platform based on Java, and at least two IaaS servers are configured with Visual Studio IDE as an integrated development environment and platform based on the.Net Framework framework. All 10 PaaS servers are configured and installed with JDK 1.8, and all 10 PaaS servers are configured with J2EE middleware basic software. A directory J2EE is built on each computer to store the J2EE middleware basic software, including: Ant, MAVEN, SVN, GIT, TOMCAT, WildFly, Weblogic, PowerDesigner; all 10 PaaS servers are configured with Microsoft middleware software.NetFramework; based on needs, the 10 PaaS servers are respectively configured as: PaaS MyEclopse 2017IDE development server, PaaS core service kernel server in the health care field, test server, training server, and PaaS management server. Step 3: Build and configure 5 SaaS server clusters. Use 5 unconfigured IaaS servers. Each one is configured with MyEclipse 2017 IDE as a basic integrated development environment, each one is configured with JDK1.8 as a Java virtual machine, and each one is configured with J2EE Web middleware basic software, including TOMCAT, WildFly, Weblogic. By configuring environment variables and starting the middleware server, the 5 IaaS servers are converted into 5 SaaS-based servers, which are respectively named the main SaaS server, node 1-4 SaaS servers.
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