Secure Display Glasses Encoding and Authentication
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Solution Overview
Problem
Current display technologies for wearable electronic glasses lack effective security measures for ensuring authorized display data transmission and decoding, particularly in wireless connections, which can lead to unauthorized access and data breaches.
Innovation Solution
The proposed solution involves an apparatus and method that includes a receiver for decoding formatted encoded display data, a decoder for authenticating and decoding the data, and a transmitter for encoding and transmitting secure display data. This system ensures that only authorized display glasses can receive and display the encoded data, using techniques such as key-based encryption and secure key exchange methods.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If display data is transmitted wirelessly without encoding, then transmission speed and ease of operation are improved, but security and reliability deteriorate due to unauthorized access
Solution Approach 1:
The system performs preliminary authentication and key exchange before data transmission. The encoder on the transmitting device and decoder on the receiving device establish secure credentials in advance, ensuring that only authorized devices can communicate. This preliminary security setup enables subsequent wireless transmission to maintain both convenience and security.
Solution Approach 2:
The patent introduces encoding and decoding as intermediary processes between the transmitting and receiving devices. The encoder transforms display data into encrypted format, and the decoder reconstructs it, acting as a security mediator that protects the transmission channel while maintaining wireless communication functionality.
2Reliability
If encoding and authentication protocols are implemented, then security and reliability are improved, but device complexity increases
Solution Approach 1:
The encoder and decoder are designed as multi-functional components that integrate multiple security operations. The encoder performs both data encryption and transmission formatting, while the decoder handles authentication verification and data reconstruction. This consolidation reduces overall system complexity compared to having separate dedicated components for each function.
Solution Approach 2:
The authentication system is designed to be self-service, where the encoder and decoder automatically manage key exchange and credential verification without requiring external authentication servers or manual intervention. This self-contained approach reduces system complexity while maintaining security.
3Ease of operation
If no authentication mechanism is used, then ease of operation is improved, but loss of information occurs due to unauthorized access and data breaches
Solution Approach 1:
The system applies preliminary anti-action by implementing pre-transmission authentication that prevents unauthorized access before data can be intercepted or corrupted. The encoder verifies the receiver's credentials beforehand, and the decoder validates the transmitter's authority, creating a preventive security layer that protects against information loss from unauthorized access.
Data Source
AI summary
An apparatus can be provided for display glasses with securely displayed data. The apparatus can include a receiver configured to receive a signal containing formatted encoded display data and to extract encoded display data from the signal. The apparatus can include a decoder configured to decode the encoded display data to provide display data. The apparatus can further include a display configured to display the display data. The display can include glasses and the decoder can be configured to decode the encoded display data when the glasses are authorized to receive display data from a remote device.


