EV Charging Interface With Reservation and Real-Time Charger Status
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Solution Overview
Problem
The increasing demand for electric vehicle charging stations has outpaced the growth of charging infrastructure, leading to user inconvenience in identifying available and reliable charging options, with faulty chargers causing additional issues.
Innovation Solution
A vehicle charging optimization system that facilitates users in identifying optimal public or private chargers based on preferences, provides real-time availability information, enables charger reservation, and executes smart charging and discharging operations to ensure efficient energy usage and battery health.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Quantity of substance
If the number of EVs increases, then the demand for charging stations increases, but the growth rate of charging infrastructure cannot match the EV adoption rate
Solution Approach 1:
The patent introduces a communication system as an intermediary that connects EV users with charging station operators. This mediator facilitates real-time information exchange about charger availability, status, and location, enabling users to efficiently locate and utilize existing charging infrastructure without requiring proportional increases in physical charging station数量
Solution Approach 2:
The system implements feedback mechanisms where charging station status information (availability, operational state, queue status) is continuously collected and transmitted to users via communication devices. This feedback loop enables dynamic routing and charging decisions, optimizing the utilization of existing infrastructure to accommodate growing EV numbers
2Ease of operation
If users can identify available charging stations, then charging accessibility improves, but faulty chargers cause inconvenience and reduce reliability
Solution Approach 1:
The system performs preliminary verification of charger status by collecting and transmitting operational information before users arrive at charging stations. Users receive advance notice of charger availability and operational status, allowing them to plan their charging stops accordingly and avoid arriving at faulty chargers
Solution Approach 2:
The patent implements real-time feedback loops where charging station operational status is continuously monitored and communicated to users. This feedback mechanism provides up-to-date information about charger functionality, enabling users to make informed decisions and report issues, thereby improving the overall reliability of the charging network
Data Source
AI summary
A vehicle charging optimization system including a transceiver and a processor is disclosed. The transceiver may be configured to receive a trigger signal from a user device associated with a user. The processor may be configured to render a communication interface on the user device responsive to obtaining the trigger signal from the user device, and obtain a user preference for charging a vehicle associated with the user via the communication interface responsive to rendering the communication interface. The processor may further determine a charger type preference of the user based on the user preference. The processor may perform a first predefined action when the charger type preference is of a first type, and a second predefined action when the charger type preference is of a second type.


