Invention Title:

ELECTRONIC DEVICES AND METHODS OF PROCESSING USER UTTERANCES

Publication number:

US20260112368

Publication date:
Section:

Physics

Class:

G10L15/22

Inventors:

Assignee:

Applicant:

Smart overview of the Invention

The patent application outlines an electronic device designed to process user utterances for controlling the device itself or nearby devices. The device is equipped with a wireless communication circuit, a processor, and memory storing specific instructions. These instructions enable the device to analyze user utterances, gather necessary information for machine reading comprehension, and provide responses based on the analysis and additional information obtained.

Background

Voice assistant functions in electronic devices are increasingly common, allowing users to interact with devices through natural language. Such devices typically use AI servers to interpret user utterances, infer intent, and perform corresponding tasks. The process involves classifying user utterances into specific domains and executing tasks within those domains. This background sets the stage for understanding the new functionalities introduced by the patent.

Functional Description

The device receives user utterances and analyzes them to extract information necessary for machine reading comprehension. If the utterance includes unsupported commands or parameters, the device generates queries to gather additional data. This data is then processed to provide the user with a response. The device also offers guidance if the utterance cannot be directly executed, enhancing user interaction.

Technical Implementation

The device's architecture includes a processor that may consist of a main processor and an auxiliary processor, enabling efficient data processing and task execution. The communication module allows interaction with other devices over short or long-range wireless networks. The processor executes software to manage hardware components and process user commands, storing interim data in volatile memory and results in non-volatile memory.

Detailed Features

Key components of the device include various modules for input, sound output, display, audio, sensors, and communication. The processor can execute commands independently or in conjunction with auxiliary processors like a GPU or NPU, optimizing power consumption and performance for specific tasks. The device's design allows for flexibility, with optional components and configurations tailored to specific needs.