Intel corporation (20240214714). ORCHESTRATION ADAPTER FOR OPTICAL POWER CONTROLS IN C+L BAND NETWORK simplified abstract

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ORCHESTRATION ADAPTER FOR OPTICAL POWER CONTROLS IN C+L BAND NETWORK

Organization Name

intel corporation

Inventor(s)

Nikhil Satyarthi of Yelahanka (IN)

Rajakumar Hegde of Karnataka (IN)

Aryabhata Deshpande of Bommanahalli (IN)

Ashok Kunjidhapatham of Devarachikkanahalli (IN)

Sanjeev Ramachandran of Karnataka (IN)

Dinesh Kumar Prakasam of Madurai (IN)

Baranidhar Ramanathan of Kasavanahalli (IN)

ORCHESTRATION ADAPTER FOR OPTICAL POWER CONTROLS IN C+L BAND NETWORK - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240214714 titled 'ORCHESTRATION ADAPTER FOR OPTICAL POWER CONTROLS IN C+L BAND NETWORK

Simplified Explanation

This patent application describes an orchestration adapter for an optical network that maps logical-view passbands to physical-view passbands, allowing for the execution of operations by network elements.

  • The adapter stores a mapping between logical-view passbands and physical-view passbands.
  • It receives logical-view operation requests from a network orchestrator and sends physical-view operation requests to network elements.
  • The physical-view operation requests include instructions for executing operations on specific passbands corresponding to the logical-view passbands.

Key Features and Innovation

  • Mapping of logical-view passbands to physical-view passbands for efficient operation execution.
  • Seamless communication between orchestrators and network elements.
  • Streamlined execution of operations on specific passbands.

Potential Applications

This technology can be applied in telecommunications networks, data centers, and other optical network environments where efficient orchestration and execution of operations are required.

Problems Solved

  • Simplifies the execution of operations on optical networks.
  • Enhances the coordination between network orchestrators and network elements.
  • Improves the overall efficiency of network management.

Benefits

  • Increased operational efficiency.
  • Enhanced network performance.
  • Streamlined communication and execution processes.

Commercial Applications

Optical network providers, data center operators, and telecommunications companies can leverage this technology to improve the management and performance of their networks, leading to cost savings and enhanced service delivery.

Questions about the Technology

What are the key benefits of using an orchestration adapter in an optical network?

The key benefits include increased operational efficiency, enhanced network performance, and streamlined communication and execution processes.

How does the mapping of logical-view passbands to physical-view passbands improve network management?

By mapping logical-view passbands to physical-view passbands, the orchestration adapter enables efficient execution of operations on specific passbands, enhancing network management and performance.


Original Abstract Submitted

an orchestration adapter of an optical network is herein described. the orchestration adapter comprises a processor and a non-transitory computer-readable medium storing processor-executable instructions that, when executed, cause the processor to: store a mapping of a correspondence between logical-view passbands and physical-view passbands, each of the physical-view passbands comprising one or more partition(s), each corresponding to a particular logical-view passband; receive a logical-view operation request from an orchestrator of a network element, the logical-view operation request identifying an operation and a first logical-view passband, the operation being executable by a control block of the network element; and send a physical-view operation request to the control block, the physical-view operation request comprising instructions to cause the control block to execute the operation, the instructions identifying the operation and a first physical-view passband, a first partition of the first physical-view passband corresponding to the first logical-view passband.