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    • 13. 发明申请
    • DISTRIBUTED AVIONICS SYSTEM AND METHOD FOR BACKUP HANDLING IN AN AVIONICS SYSTEM
    • 分布式AVIONICS系统和方法在海洋系统中的备份处理
    • US20140157041A1
    • 2014-06-05
    • US14113554
    • 2011-05-17
    • Torkel DanielssonJan HåkegårdAnders Gripsborn
    • Torkel DanielssonJan HåkegårdAnders Gripsborn
    • G06F11/20
    • G06F11/2041G06F11/143G06F11/203G06F11/2035G06F11/2043
    • The present invention relates to a distributed avionics system (100, 500) having a plurality of computer nodes arranged to execute a plurality of partitions/applications (P1, P2, P3, P4, P5, P6). The distributed avionics system comprises reconfiguration means (332) arranged to reconfigure the distributed avionics system upon detection of failure in at least one of the computer nodes. Each partition/application is associated to a application/partition availability level. The reconfiguration means are arranged to reconfigure the distributed avionics system based on the partition/application availability levels of the partition/applications (P1, P2, P3, P4, P5, P6). The present invention further relates to a method for back-up handling in a distributed avionics system having a plurality of computer nodes (A, B, C).
    • 本发明涉及一种分布式航空电子系统(100,500),其具有被布置为执行多个分区/应用(P1,P2,P3,P4,P5,P6)的多个计算机节点。 分布式航空电子系统包括重新配置装置(332),其被配置为在检测到至少一个计算机节点中的故障时重新配置分布式航空电子系统。 每个分区/应用程序与应用程序/分区可用性级别相关联。 重新配置装置被布置为基于分区/应用(P1,P2,P3,P4,P5,P6)的分区/应用可用性级别重新配置分布式航空电子系统。 本发明还涉及具有多个计算机节点(A,B,C)的分布式航空电子系统中的后备处理方法。
    • 15. 发明授权
    • Process for reconfiguring an information processing system upon detection of a component failure
    • 检测到组件故障时重新配置信息处理系统的过程
    • US06789214B1
    • 2004-09-07
    • US09583984
    • 2000-05-31
    • Marie-Antoinette De Bonis-HamelinZoltan MenyhartJean-Dominique Sorace
    • Marie-Antoinette De Bonis-HamelinZoltan MenyhartJean-Dominique Sorace
    • H02H305
    • G06F11/2028G06F11/143G06F11/1438G06F11/1482G06F11/2035G06F11/2043G06F2201/81
    • The invention relates to a process for dynamically reconfiguring an information processing system (1), particularly a so-called “SMP” symmetric multiprocessor system. The process comprises a preliminary step for detecting a failure risk of one of the components of the system (CPU3). Following this detection, the system (1) is placed in a coherent, so-called “frozen” state in a first step with the aid of programs (J1-J4) executing specific tasks. A second step consists of reconfiguring the system by reallocating/de-allocating all or some of the components (CPU1-CPU4). In a third step, the component (CPU3) that presents a failure risk is isolated. The pending interruptions (4) are processed and the current tasks (6) are executed prior to the “freeze.” Likewise, the queues of tasks to be executed are purged prior to the “freeze.” Then, the subsequent tasks and interrupts are inhibited until a final step that consists of releasing the system (1).
    • 本发明涉及用于动态地重新配置信息处理系统(1),特别是所谓的“SMP”对称多处理器系统的过程。 该过程包括用于检测系统的一个部件(CPU3)的故障风险的初步步骤。 在该检测之后,借助于执行特定任务的程序(J1-J4),系统(1)在第一步中被置于相干的所谓“冻结”状态。 第二步包括通过重新分配/取消分配所有或部分组件(CPU1-CPU4)来重新配置系统。 第三步,隔离出存在故障风险的组件(CPU3)。 待处理的中断(4)被处理,并且当前任务(6)在“冻结”之前被执行。 同样,要执行的任务队列在“冻结”之前被清除。 然后,后续的任务和中断被禁止,直到由释放系统(1)组成的最后一步。