EV Ecosystem Management for Charging, Power, and E-Point Coordination
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Solution Overview
Problem
The introduction of electric vehicles (EVs) leads to various economic and industrial changes, including issues related to charging facilities, power supply, environmental pollution, and data management, which existing technologies have not effectively addressed.
Innovation Solution
An EV ecosystem management device that receives and manages EV eco data, including information on electric energy, carbon emission rights, and E-points, to adaptively manage industrial and economic activities within the EV ecosystem, utilizing a hierarchical structure of EV ecosystem participation devices and an integrated payment system for E-points.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If EV charging facilities are increased to support more EVs, then EV adoption and usage are improved, but power supply capacity and infrastructure requirements worsen
Solution Approach 1:
The patent segments the EV ecosystem into multiple independent but interconnected components: EVs, charging facilities, power plants, and management devices. This segmentation allows each component to be optimized and managed independently while maintaining overall system balance, resolving the contradiction between charging capacity expansion and power supply requirements.
Solution Approach 2:
The management device provides universal functionality by managing multiple types of entities (EVs, charging facilities, power plants) through a unified platform. It handles diverse operations including charging management, power generation coordination, E-point transactions, and carbon emission trading, allowing the system to scale without proportionally increasing infrastructure complexity.
2Adaptability or versatility
If a comprehensive EV ecosystem management system is implemented to manage all economic and industrial changes, then ecosystem coordination and synergy are improved, but system complexity and management overhead worsen
Solution Approach 1:
The management device serves as an intermediary between various ecosystem participants (EVs, charging facilities, power plants). It mediates transactions, coordinates resource allocation, and manages E-points and carbon emission rights, simplifying the interactions between diverse entities while maintaining comprehensive ecosystem control.
Solution Approach 2:
The system implements feedback mechanisms where the management device continuously monitors ecosystem activities, processes generated data, and adjusts management decisions accordingly. This feedback loop enables adaptive management of charging facilities, power generation, and economic incentives without requiring complex manual intervention.
3Measurement precision
If data collection and processing from multiple EV ecosystem participants is expanded to enable adaptive management, then management precision and decision-making quality are improved, but data processing complexity and computational requirements worsen
Solution Approach 1:
The patent merges data collection, processing, and management functions into a single integrated management device. This consolidation combines multiple data streams from EVs, charging facilities, and power plants into a unified processing system, improving data accuracy while avoiding the complexity of distributed processing across multiple independent systems.
Data Source
AI summary
The present invention relates to a method for implementing an electric vehicle (EV) ecosystem and a device for performing the method. The method for implementing an EV ecosystem may comprise the steps of: receiving, by an EV ecosystem management device, EV eco-data from EV ecosystem participant devices; and managing, by the EV ecosystem management device, the EV ecosystem on the basis of the EV eco-data.


