18300987. TECHNIQUES FOR SHUTDOWN ACCELERATION simplified abstract (International Business Machines Corporation)

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TECHNIQUES FOR SHUTDOWN ACCELERATION

Organization Name

International Business Machines Corporation

Inventor(s)

Xiang Yu Xue of Beijing (CN)

Bo Chen Zhu of Xi'an (CN)

HUI Wang of Beijing (CN)

Mai Zeng of Beijing (CN)

Xiao Chen Huang of Beijing (CN)

Peng Hui Jiang of Beijing (CN)

Wei Li of Beijing (CN)

Yu Mei Dai of Beijing (CN)

TECHNIQUES FOR SHUTDOWN ACCELERATION - A simplified explanation of the abstract

This abstract first appeared for US patent application 18300987 titled 'TECHNIQUES FOR SHUTDOWN ACCELERATION

Simplified Explanation:

This patent application describes a method, computer system, and computer program product for managing the accelerated shutdown of a networked system with multiple nodes. The system analyzes the nodes, determines a priority order for shutdown, calculates interval periods between nodes, constructs leaf node sets based on shutdown types, creates a dependency tree, and iteratively modifies the tree and interval periods during shutdown until completion.

  • The system analyzes a networked system with multiple nodes.
  • It determines a priority order for shutting down the nodes.
  • Interval periods between nodes are calculated based on priority.
  • Leaf node sets are constructed for different shutdown types.
  • A dependency tree is created by analyzing the leaf node sets.
  • Nodes are shut down according to the tree and interval periods.
  • The dependency tree and interval periods are modified iteratively during shutdown.

Key Features and Innovation:

  • Analysis and prioritization of nodes for shutdown.
  • Calculation of interval periods between nodes.
  • Construction of leaf node sets for different shutdown types.
  • Creation of a dependency tree for efficient shutdown.
  • Iterative modification of the tree and interval periods during shutdown.

Potential Applications:

This technology can be applied in various industries where networked systems need to be efficiently shut down, such as data centers, telecommunications, and cloud computing.

Problems Solved:

This technology addresses the challenge of managing the shutdown of complex networked systems with multiple nodes in an efficient and organized manner.

Benefits:

  • Efficient and organized shutdown of networked systems.
  • Minimization of downtime during system shutdown.
  • Improved management of node priorities and shutdown types.

Commercial Applications:

Potential commercial applications include data centers, telecommunications companies, and cloud service providers looking to optimize their system shutdown processes for improved efficiency and reduced downtime.

Prior Art:

Prior art related to this technology may include research on networked system shutdown processes, dependency tree construction, and node prioritization algorithms.

Frequently Updated Research:

Researchers may be conducting studies on optimizing the shutdown processes of networked systems, improving the efficiency of node prioritization, and enhancing the construction of dependency trees for system shutdown.

Questions about Networked System Shutdown Technology:

1. How does this technology improve the efficiency of shutting down networked systems with multiple nodes? 2. What are the key factors to consider when determining the priority order for shutting down nodes in a networked system?


Original Abstract Submitted

A method, computer system, and a computer program product are provided for managing an accelerated shutdown of a networked system having a having a plurality of nodes. The system to be shutdown is analyzed and a priority order is determined for the nodes. An interval period is also determined between each node according to the priority order. A leaf node set is constructed according to different shutdown types required for each node and a dependency tree is constructed by analyzing the leaf node sets. Each node is then shutdown according to the tree and the interval period determined. The dependency tree and the interval period is iteratively modified during the node shutdown until all nodes and ultimately the system shutdown has been completed.