18488623. Signal Processing Coordination Among Digital Voice Assistant Computing Devices simplified abstract (GOOGLE LLC)

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Signal Processing Coordination Among Digital Voice Assistant Computing Devices

Organization Name

GOOGLE LLC

Inventor(s)

Anshul Kothari of Cupertino CA (US)

Gaurav Bhaya of Sunnyvale CA (US)

Tarun Jain of Los Altos CA (US)

Signal Processing Coordination Among Digital Voice Assistant Computing Devices - A simplified explanation of the abstract

This abstract first appeared for US patent application 18488623 titled 'Signal Processing Coordination Among Digital Voice Assistant Computing Devices

Simplified Explanation

In a voice-driven computing environment, coordinating signal processing among computing devices is described in the patent application. The system involves multiple digital assistants detecting an input audio signal, checking its quality, and indicating their operational status to process the signal. One digital assistant is selected for further processing, receiving data packets with commands and generating action data structures for network-connected devices based on the received data.

  • Explanation of the patent/innovation:
  • Detecting and processing input audio signals by multiple digital assistants
  • Selecting a digital assistant for further processing based on signal quality
  • Generating action data structures for network-connected devices from received commands
  • Coordinating signal processing among computing devices in a voice-driven environment

Potential Applications

The technology described in the patent application could be applied in various industries and scenarios, including:

  • Smart home automation systems
  • Voice-controlled virtual assistants
  • Telecommunication networks
  • Audio processing software development

Problems Solved

The patent application addresses several challenges in signal processing coordination, such as:

  • Ensuring efficient and accurate processing of input audio signals
  • Coordinating multiple digital assistants to handle complex commands
  • Optimizing network-connected device actions based on received data packets

Benefits

The technology offers several benefits, including:

  • Improved accuracy and speed in processing voice commands
  • Enhanced coordination among digital assistants for seamless user experience
  • Increased efficiency in network-connected device actions based on input signals

Potential Commercial Applications

The technology described in the patent application has potential commercial applications in various industries, such as:

  • Consumer electronics
  • Telecommunications
  • Software development
  • Home automation systems

Possible Prior Art

One possible prior art related to this technology could be the coordination of multiple computing devices in a network environment to process audio signals and commands efficiently. This could include existing voice recognition systems and network communication protocols used in similar applications.

Unanswered Questions

How does the system prioritize which digital assistant to select for further processing?

The patent application does not provide specific details on the criteria or algorithm used to select the digital assistant for further processing. Further information on the decision-making process could enhance understanding of the system's functionality.

What types of network-connected devices are compatible with the system for transmitting action data structures?

The patent application does not specify the range or types of network-connected devices that can receive and process the action data structures generated by the system. Clarification on device compatibility could help in assessing the technology's versatility and potential applications.


Original Abstract Submitted

Coordinating signal processing among computing devices in a voice-driven computing environment is provided. A first and second digital assistant can detect an input audio signal, perform a signal quality check, and provide indications that the first and second digital assistants are operational to process the input audio signal. A system can select the first digital assistant for further processing. The system can receive, from the first digital assistant, data packets including a command. The system can generate, for a network connected device selected from a plurality of network connected devices, an action data structure based on the data packets, and transmit the action data structure to the selected network connected device.