18064101. METHOD AND APPARATUS FOR MANAGING MISSIONS OF A VEHICLE simplified abstract (THE BOEING COMPANY)

From WikiPatents
Revision as of 09:07, 14 June 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

METHOD AND APPARATUS FOR MANAGING MISSIONS OF A VEHICLE

Organization Name

THE BOEING COMPANY

Inventor(s)

Aniruddha Katre of Natick MA (US)

Evan Orenstein of Cambridge MA (US)

Sergio Tamayo of Framingham MA (US)

METHOD AND APPARATUS FOR MANAGING MISSIONS OF A VEHICLE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18064101 titled 'METHOD AND APPARATUS FOR MANAGING MISSIONS OF A VEHICLE

Simplified Explanation

The patent application describes a method and system for managing missions of a vehicle using active and passive storage to control and execute flight missions effectively.

  • The apparatus includes processors to control and manage flight missions.
  • It has active storage for the current mission and passive storage for subsequent missions.
  • Subsequent missions are queued on the passive storage for validation and modification before execution.
  • The processors store multiple missions in a data store, each with tasks and route maps for the vehicle.

Key Features and Innovation

  • Utilizes active and passive storage for managing flight missions effectively.
  • Allows for queuing, validation, and modification of subsequent missions before execution.
  • Stores multiple missions with tasks and route maps for efficient mission management.

Potential Applications

The technology can be applied in various industries such as aviation, defense, surveillance, and transportation for efficient mission planning and execution.

Problems Solved

  • Ensures positive control over the aircraft during mission execution.
  • Allows for validation and modification of missions before execution.
  • Efficiently manages multiple missions with tasks and route maps.

Benefits

  • Improved control and management of flight missions.
  • Enhanced efficiency in mission planning and execution.
  • Better utilization of resources for mission management.

Commercial Applications

  • Title: Advanced Mission Management System for Vehicles
  • The technology can be commercialized for use in drone operations, military missions, search and rescue operations, and commercial transportation for optimized mission planning and execution.

Prior Art

There may be prior art related to mission management systems for vehicles, including technologies that focus on task scheduling and route optimization for vehicles.

Frequently Updated Research

Stay updated on advancements in mission management systems for vehicles, including new algorithms for task optimization and route planning.

Questions about Mission Management Systems

How does this technology improve mission planning for vehicles?

This technology improves mission planning by allowing for validation and modification of missions before execution, ensuring efficient and effective mission management.

What industries can benefit from this advanced mission management system?

Industries such as aviation, defense, surveillance, and transportation can benefit from this system for optimized mission planning and execution.


Original Abstract Submitted

Presented herein is a method and system for managing one or more missions of a vehicle. The apparatus includes one or more processors configured to control and manage flight missions and includes an active storage for executing a current mission, and a separate passive storage for subsequent missions. Subsequent missions are cued on the second storage to be validated and may be modified in view of additional information, prior to execution for maintaining positive control over the aircraft. The one or more processors are further configured to store a plurality of missions, including the current mission and a second mission, in a data store of a mission manager, each of the plurality of missions including a task graph having selected tasks to be completed for the mission, and a route map including a route for the vehicle to travel on the mission.