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    • 3. 发明授权
    • Managing cloud services
    • 管理云服务
    • US09100306B2
    • 2015-08-04
    • US13398552
    • 2012-02-16
    • Michael M BehrendtGerd BreiterStefan Pappe
    • Michael M BehrendtGerd BreiterStefan Pappe
    • G06F15/173H04L12/26
    • H04L43/0876
    • A system, and computer program product for managing cloud services are provided in the illustrative embodiments. A first set of management functions is instantiated external to a microkernel of a management system for managing a set of cloud services. The management system further includes a second set of management functions executing within the kernel of the management system. A subset of the first set of management functions is associated with a cloud service in the set of cloud services. A management task for the cloud service is handled using the subset of the first set of management functions. A usage information corresponding to the use of the subset of the first set of management functions for handling the management task for the cloud service is reported.
    • 在说明性实施例中提供了用于管理云服务的系统和计算机程序产品。 第一组管理功能在用于管理一组云服务的管理系统的微内核之外实例化。 管理系统还包括在管理系统的内核内执行的第二组管理功能。 第一组管理功能的一个子集与云服务集合中的云服务相关联。 使用第一组管理功能的子集来处理云服务的管理任务。 报告与使用用于处理云服务的管理任务的第一组管理功能的子集相对应的使用信息。
    • 4. 发明授权
    • Method and system for automatically cloning IT resource structures
    • 自动克隆IT资源结构的方法和系统
    • US07747709B2
    • 2010-06-29
    • US11620206
    • 2007-01-05
    • Michael M. BehrendtJochen BrehGerd BreiterThomas Spatzier
    • Michael M. BehrendtJochen BrehGerd BreiterThomas Spatzier
    • G06F15/16G06F15/173G06F15/177
    • H04L41/0846H04L41/0273H04L41/0853H04L67/16
    • A method and system for automatically cloning IT resource structure in stateful web services environments by employing a new approach for configuration management. The present new approach models the configurational state of each resource as a stateful web service. Configuration data are provided by this service's resource properties. Relationships between configurations of different resources are modeled as “stateful web services relationships” between web service instances. These relationships can be navigated, which allows exploring the configuration of a whole system in a standards-based way. Additionally a new web service interface is provided by the stateful web service encapsulating the resource. This interface provides two new operations: “getConfiguration” allows an exploiter to take a snapshot of a resource's and related resources' configurational state and “setConfiguration” allows for setting the configurational state of a resource to a previously saved state. An invocation of “getConfiguration” results in the creation of a new stateful web service instance that stores the configurational state of each resource. This new web service interface is implemented on a per-resource type basis. Any back-end technology may be used to implement this new web service interface.
    • 通过采用新的配置管理方法,在有状态的Web服务环境中自动克隆IT资源结构的方法和系统。 目前的新方法将每个资源的配置状态建模为有状态的Web服务。 配置数据由该服务的资源属性提供。 不同资源的配置之间的关系被建模为Web服务实例之间的“有状态的Web服务关系”。 可以导航这些关系,这样可以以基于标准的方式探索整个系统的配置。 另外,封装资源的有状态Web服务提供了新的Web服务接口。 该接口提供两个新操作:“getConfiguration”允许剥削者对资源和相关资源的配置状态进行快照,“setConfiguration”允许将资源的配置状态设置为先前保存的状态。 “getConfiguration”的调用导致创建一个新的有状态的Web服务实例来存储每个资源的配置状态。 这种新的Web服务接口是基于每个资源类型实现的。 任何后端技术都可以用来实现这个新的Web服务接口。
    • 6. 发明授权
    • Method and system for transforming orders for executing them in standard workflow engines
    • 用于转换在标准工作流引擎中执行它们的订单的方法和系统
    • US08650568B2
    • 2014-02-11
    • US11428717
    • 2006-07-05
    • Michael M. BehrendtGerd BreiterMonika Illgner-KurzMarc SchwindJohanna Ang'ani
    • Michael M. BehrendtGerd BreiterMonika Illgner-KurzMarc SchwindJohanna Ang'ani
    • G06F9/46
    • G06F9/5066G06Q10/06316
    • The invention is based on Orders specifically developed for and processed by an Order Processing Environment for creation or modification of resource topologies. The Order Processing Environment is partly replaced by a combination of an Order Transformation Environment and standard Workflow Engines in order to execute the Order by standard Workflow Engines. The Order Transformation Environment needs to get two inputs. The first input is the resource topology which is retrieved by using the Relationship Registry of the Order Processing Environment. The second input is the Order. Orders are resource topology independent and include resource specific tasks without arranging those in a sequence. Tasks provide actions for creating and/or modifying resource topologies. The transformation is based on above two inputs resulting in a static standard based workflow. The static, standards-based workflow (e.g. BPEL-based) can then be executed by standards-based process/workflow engines. This enables users to exploit the flexibility of orders while still being able to leverage the broad set of tooling and runtime products available across the IT industry.
    • 本发明基于由订单处理环境专门开发并用于创建或修改资源拓扑的订单。 订单处理环境部分由订单转换环境和标准工作流程引擎的组合替代,以便通过标准工作流程引擎执行订单。 订单转型环境需要获得两个输入。 第一个输入是通过使用订单处理环境的关系注册表检索的资源拓扑。 第二个输入是订单。 订单是资源拓扑独立的,包括特定于资源的任务,而不排列序列。 任务提供了创建和/或修改资源拓扑的操作。 该转换基于上述两个输入,导致基于静态标准的工作流程。 然后,可以通过基于标准的过程/工作流引擎来执行静态的基于标准的工作流程(例如基于BPEL)。 这使用户能够利用订单的灵活性,同时仍能够利用整个IT行业提供的广泛的工具和运行时产品。
    • 8. 发明申请
    • MANAGING CLOUD SERVICES
    • 管理云服务
    • US20130219042A1
    • 2013-08-22
    • US13398552
    • 2012-02-16
    • MICHAEL M. BEHRENDTGerd BreiterStefan Pappe
    • MICHAEL M. BEHRENDTGerd BreiterStefan Pappe
    • G06F15/173
    • H04L43/0876
    • A system, and computer program product for managing cloud services are provided in the illustrative embodiments. A first set of management functions is instantiated external to a microkernel of a management system for managing a set of cloud services. The management system further includes a second set of management functions executing within the kernel of the management system. A subset of the first set of management functions is associated with a cloud service in the set of cloud services. A management task for the cloud service is handled using the subset of the first set of management functions. A usage information corresponding to the use of the subset of the first set of management functions for handling the management task for the cloud service is reported.
    • 在说明性实施例中提供了用于管理云服务的系统和计算机程序产品。 第一组管理功能在用于管理一组云服务的管理系统的微内核之外实例化。 管理系统还包括在管理系统的内核内执行的第二组管理功能。 第一组管理功能的一个子集与云服务集合中的云服务相关联。 使用第一组管理功能的子集来处理云服务的管理任务。 报告与使用用于处理云服务的管理任务的第一组管理功能的子集相对应的使用信息。
    • 9. 发明申请
    • Method and System For Automatically Cloning IT Resource Structures
    • 自动克隆IT资源结构的方法和系统
    • US20070198667A1
    • 2007-08-23
    • US11620206
    • 2007-01-05
    • Michael M. BehrendtJochen BrehGerd BreiterThomas Spatzier
    • Michael M. BehrendtJochen BrehGerd BreiterThomas Spatzier
    • G06F15/177
    • H04L41/0846H04L41/0273H04L41/0853H04L67/16
    • A method and system for automatically cloning IT resource structure in stateful web services environments by employing a new approach for configuration management. The present new approach models the configurational state of each resource as a stateful web service. Configuration data are provided by this service's resource properties. Relationships between configurations of different resources are modeled as “stateful web services relationships” between web service instances. These relationships can be navigated, which allows exploring the configuration of a whole system in a standards-based way. Additionally a new web service interface is provided by the stateful web service encapsulating the resource. This interface provides two new operations: “getConfiguration” allows an exploiter to take a snapshot of a resource's and related resources' configurational state and “setConfiguration” allows for setting the configurational state of a resource to a previously saved state. An invocation of “getConfiguration” results in the creation of a new stateful web service instance that stores the configurational state of each resource. This new web service interface is implemented on a per-resource type basis. Any back-end technology may be used to implement this new web service interface.
    • 通过采用新的配置管理方法,在有状态的Web服务环境中自动克隆IT资源结构的方法和系统。 目前的新方法将每个资源的配置状态建模为有状态的Web服务。 配置数据由该服务的资源属性提供。 不同资源的配置之间的关系被建模为Web服务实例之间的“有状态的Web服务关系”。 可以导航这些关系,这样可以以基于标准的方式探索整个系统的配置。 另外,封装资源的有状态Web服务提供了新的Web服务接口。 该接口提供两个新操作:“getConfiguration”允许剥削者对资源和相关资源的配置状态进行快照,“setConfiguration”允许将资源的配置状态设置为先前保存的状态。 “getConfiguration”的调用导致创建一个新的有状态的Web服务实例来存储每个资源的配置状态。 这种新的Web服务接口是基于每个资源类型实现的。 任何后端技术都可以用来实现这个新的Web服务接口。
    • 10. 发明申请
    • METHOD AND SYSTEM FOR TRANSFORMING ORDERS FOR EXECUTING THEM IN STANDARD WORKFLOW ENGINES
    • 用于在标准工作流发动机中执行变更订单的方法和系统
    • US20080021751A1
    • 2008-01-24
    • US11428717
    • 2006-07-05
    • Michael M. BehrendtGerd BreiterMonika Illgner-KurzMarc SchwindJohanna Angani
    • Michael M. BehrendtGerd BreiterMonika Illgner-KurzMarc SchwindJohanna Angani
    • G06F9/46
    • G06F9/5066G06Q10/06316
    • The invention is based on Orders specifically developed for and processed by an Order Processing Environment for creation or modification of resource topologies. The Order Processing Environment is partly replaced by a combination of an Order Transformation Environment and standard Workflow Engines in order to execute the Order by standard Workflow Engines. The Order Transformation Environment needs to get two inputs. The first input is the resource topology which is retrieved by using the Relationship Registry of the Order Processing Environment. The second input is the Order. Orders are resource topology independent and include resource specific tasks without arranging those in a sequence. Tasks provide actions for creating and/or modifying resource topologies. The transformation is based on above two inputs resulting in a static standard based workflow. The static, standards-based workflow (e.g. BPEL-based) can then be executed by standards-based process/workflow engines. This enables users to exploit the flexibility of orders while still being able to leverage the broad set of tooling and runtime products available across the IT industry.
    • 本发明基于由订单处理环境专门开发并用于创建或修改资源拓扑的订单。 订单处理环境部分由订单转换环境和标准工作流程引擎的组合替代,以便通过标准工作流程引擎执行订单。 订单转型环境需要获得两个输入。 第一个输入是通过使用订单处理环境的关系注册表检索的资源拓扑。 第二个输入是订单。 订单是资源拓扑独立的,包括特定于资源的任务,而不排列序列。 任务提供了创建和/或修改资源拓扑的操作。 该转换基于上述两个输入,导致基于静态标准的工作流程。 然后,可以通过基于标准的过程/工作流引擎来执行静态的基于标准的工作流程(例如基于BPEL)。 这使用户能够利用订单的灵活性,同时仍能够利用整个IT行业提供的广泛的工具和运行时产品。