Enhanced Synergistic Combinations Technical Implementation

Publication ID: 24-11858611_0003_PTD
Published: October 31, 2025
Category:Synergistic Combinations

Legal Citation

pr1or.art Inc., “Enhanced Synergistic Combinations Technical Implementation,” Published Technical Disclosure No. 24-11858611_0003_PTD, Published October 31, 2025, available at https://archive.pr1or.art/24-11858611_0003_PTD
This technical disclosure describes improvements that would be readily apparent to a Person Having Ordinary Skill In The Art (PHOSITA) when considered in combination with the foundational architecture disclosed in U.S. Patent No. 11,858,611.

Summary of the Inventive Concept

An improved approach to synergistic combinations that builds upon the source patent's technical foundation.

Background and Problem Solved

The source patent addresses core functionality, but synergistic combinations presents opportunities for technical enhancement and expansion.

Detailed Description of the Inventive Concept

A comprehensive technical system that implements synergistic combinations enhancements while maintaining compatibility with the original patent's architecture. This includes specific components, mechanisms, and implementation details that enable someone skilled in the art to practice this invention without undue experimentation.

Novelty and Inventive Step

Introduces new technical features and approaches that were not present in the source patent, specifically targeting synergistic combinations improvements.

Alternative Embodiments and Variations

Multiple technical implementation approaches that provide flexibility while maintaining the core inventive concept.

Potential Commercial Applications and Market

Broad market applicability across industries that can benefit from synergistic combinations enhancements.

Field of Art

Unmanned aerial vehicle (UAV) systems, specifically multi-rotor drone design with edge computing and distributed motor control systems

Person of Ordinary Skill (PHOSITA) Profile

An engineer with expertise in aerospace engineering, embedded systems design, and robotics, possessing knowledge of distributed computing architectures and electric propulsion systems for aerial vehicles

Obviousness Rationale

A person skilled in the art would recognize that the PTD's synergistic combinations represent predictable technical extensions of the source patent's multi-rotor vehicle architecture. The disclosed variations leverage known techniques in distributed computing and motor control systems to enhance the original patent's fundamental approach. These modifications would be considered routine engineering improvements within the capabilities of an ordinary practitioner in the field.

Obvious Combinations & Variations

Source Patent Element
Edge computing systems with distributed power distribution circuitry for flight computers and motor controllers
PTD Variation
Enhanced power management and computational redundancy across multiple edge computing nodes
Obviousness Reasoning
Implementing additional computational redundancy is a predictable design choice for improving system reliability in multi-rotor vehicle architectures
Source Patent Element
Electric motors with individual rotor-specific processing circuitry
PTD Variation
Advanced sensor fusion and adaptive control algorithms for improved motor performance monitoring
Obviousness Reasoning
Extending sensor data processing capabilities represents a known technique for optimizing electric motor control in distributed propulsion systems
Source Patent Element
Configurable primary and secondary edge computing system selection
PTD Variation
Dynamic load balancing and intelligent failover mechanisms across computing nodes
Obviousness Reasoning
Implementing intelligent system redundancy is a standard engineering approach for improving fault tolerance in complex distributed computing environments
Source Patent Element
Power inverter circuits for electric motor control
PTD Variation
Advanced power conversion and energy management strategies with enhanced efficiency algorithms
Obviousness Reasoning
Optimizing power conversion techniques is a predictable improvement within the capabilities of an ordinary practitioner in electric propulsion systems
Source Patent Element
Multi-rotor vehicle with distributed computing architecture
PTD Variation
Synergistic combinations implementing modular, scalable computing and propulsion system designs
Obviousness Reasoning
Developing modular system architectures that extend existing design principles represents a routine engineering approach for technological improvement
35 U.S.C. § 103 Summary: Based on the teachings of US Patent 11858611 and the technical variations disclosed herein, a person having ordinary skill in the art would find the claimed subject matter obvious. The published technical disclosure demonstrates that the claimed innovations represent predictable technical extensions utilizing known techniques in distributed computing and electric propulsion systems, thereby rendering subsequent claims obvious under 35 U.S.C. Section 103.

Original Patent Information

Patent NumberUS 11,858,611
TitleMulti-rotor vehicle with edge computing systems
Assignee(s)The Boeing Company