摘要:
A personal audio assistant includes a first microphone for capturing audio, a communication module communicatively coupled to the first microphone and for accessing information from a network, a memory storage unit communicatively coupled to the first microphone, and a voice controlled interface coupled to the microphone. The voice controlled interface is configured to access the network in response to detection of at least one or more voice commands from the captured audio and present results in response to accessing the network to a speaker via a text-to-speech synthesizer. Other embodiments are disclosed.
摘要:
A personal audio assistant includes comprising a first microphone for capturing audio, a logic circuit coupled to the first microphone for analyzing the captured audio, a communication module coupled to the logic circuit, and a user interaction element. The interaction element is configured to control at least one function or operation among invoking an operation of an electronic device communicatively coupled to the personal audio assistant via the communication module, invoking access to information on a network, invoking delivery of audio content, invoking delivery of text to speech, invoking speech to text processing of email, invoking delivery of text to speech of stock market information, invoking execution of a commercial transaction, invoking delivery of calendaring information, invoking delivery of medication reminders, or invoking access to location information using a GPS system. Other embodiments are disclosed.
摘要:
A personal audio assistant includes a housing for an electronic device, a first microphone for capturing audio, a logic circuit communicatively coupled to the first microphone, a communication module communicatively coupled to the first microphone and a user interaction element. The interaction element, logic circuit, and communication module are configured to form a peer-to-peer network. Other embodiments are disclosed.
摘要:
At least one exemplary embodiment is directed to a method and device for voice operated control with learning. The method can include measuring a first sound received from a first microphone, measuring a second sound received from a second microphone, detecting a spoken voice based on an analysis of measurements taken at the first and second microphone, learning from the analysis when the user is speaking and a speaking level in noisy environments, training a decision unit from the learning to be robust to a detection of the spoken voice in the noisy environments, mixing the first sound and the second sound to produce a mixed signal, and controlling the production of the mixed signal based on the learning of one or more aspects of the spoken voice and ambient sounds in the noisy environments.
摘要:
An earpiece (100) and a method (300) personalized voice operable control can include capturing (302) an ambient sound from an Ambient Sound Microphone (111) to produce an electronic ambient signal (426), delivering (304) audio content (402) to an ear canal (131) by way of an Ear Canal Receiver (125) to produce an acoustic audio content (404) and capturing (306) in the ear canal an internal sound (402) from an Ear Canal Microphone (123) to produce an electronic internal signal (410). The electronic internal signal includes an echo of the acoustic audio content and a spoken voice generated by a wearer of the earpiece. The Method also includes detecting (312) the spoken voice in the electronic internal signal in the presence of the echo, and controlling (314) a voice operation of the earpiece when the spoken voice is detected.
摘要:
A system that records audio and stores the recording is provided. The system includes first and second monitoring assemblies mounted in an earpiece that occludes and forms an acoustic seal of an ear canal. The first monitoring assembly includes an ambient sound microphone (ASM) to monitor an ambient acoustic field and produce an ASM signal. The second monitoring assembly includes an ear canal microphone (ECM) to monitor an acoustic field within the ear canal and produce an ECM signal. The system also includes a data storage device configured to act as a circular buffer for continually storing at least one of the ECM signal or the ASM signal, a further data storage device and a record-activation system. The record-activation system activates the further data storage device to record a content of the data storage device.
摘要:
Methods and devices for sound isolation are provided. A sound isolation device includes an expandable element and an insertion element. The expandable element is operatively attached to the insertion element. The expandable element includes an expanding medium, where the pressure of the expanding medium is varied to vary a sound isolation across the expandable element.
摘要:
A method of auditory communication is provided. The method includes measuring physiological data from at least one sensor to form a data set; identifying a type of the data set; identifying an auditory cue associated with the type of the data set; and generating an auditory notification based on the data set and the auditory cue. The auditory notification indicates at least one of a temporal, spectral, spatial or power characteristic of the data set. The method also includes emitting the auditory notification.
摘要:
Methods and devices for sound isolation are provided. A sound isolation device includes an expandable element and an insertion element. The expandable element is operatively attached to the insertion element. The expandable element includes an expanding medium, where the pressure of the expanding medium is varied to vary a sound isolation across the expandable element.
摘要:
Systems and methods for monitoring a sound pressure level dose at an ear are provided. A system includes an audio transducer which outputs a sound signal is placed within an ear to receive sound at the ear. A sound level threshold detector determines whether a sound pressure level of the sound signal is at a minimum level and outputs a sound pressure level signal corresponding to the sound pressure level when the sound pressure level is not at the minimum level. A time period is calculated during which the sound pressure level is not at the minimum threshold level. A listening fatigue calculator determines whether a cumulative effect of exposure to the sound signal at the ear over the time period will cause harm to the ear. At least a portion of the system is disposed in situ at the ear.