Integration of hearing aids with smart glasses to improve intelligibility in noise
US-2015036856-A1 · Feb 5, 2015 · US
US2016133151A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016133151-A1 |
| Application number | US-201414534581-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 6, 2014 |
| Priority date | Nov 6, 2014 |
| Publication date | May 12, 2016 |
| Grant date | — |
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A wearable device conveys information to a user. The device includes a master soft circuit cell and a plurality of actuation soft circuit cells. These cells are physically interconnected to form a garment that is worn by a user and each of these cells includes an electrically non-conductive fabric covering. Each of the actuation cells is electrically connected to and operates under the control of the master cell. The master cell is configured to wirelessly receive actuation instructions and activate a combination of the actuation cells based on the received actuation instructions. Each of the actuation cells is configured to generate a particular actuation that is perceived by one or more senses of the user whenever the actuation cell is activated by the master cell. A system also conveys affective state information to a user.
Opening claim text (preview).
Wherefore, what is claimed is: 1 . A wearable device for conveying information to a user, comprising: a master soft circuit cell; and a plurality of actuation soft circuit cells, the master and actuation soft circuit cells being physically interconnected to form a garment being worn by the user, the master soft circuit cell and each of the actuation soft circuit cells comprising an electrically non-conductive fabric covering, each of the actuation soft circuit cells being electrically connected to and operating under the control of the master soft circuit cell, the master soft circuit cell being configured to wirelessly receive actuation instructions and activate a combination of the actuation soft circuit cells based on the received actuation instructions, and each of the actuation soft circuit cells being configured to generate a particular actuation that is perceived by one or more senses of the user whenever the actuation soft circuit cell is activated by the master soft circuit cell. 2 . The wearable device of claim 1 , wherein, the master soft circuit cell further comprises a battery, a microcontroller, and a wireless receiver, the electrical connection between each of the actuation soft circuit cells and the master soft circuit cell comprises a power distribution bus and a communication bus that serially pass through the master and actuation soft circuit cells, the received actuation instructions specify a set of actuations, the power distribution bus is configured to supply power from the battery to each of the actuation soft circuit cells, and the microcontroller is configured to interpret the received actuation instructions and send commands over the communication bus to each of the actuation soft circuit cells, said commands causing the actuation soft circuit cells whose particular actuation is in said set to be activated, and causing the actuation soft circuit cells whose particular actuation is not in said set to be deactivated. 3 . The wearable device of claim 2 , wherein the wireless receiver comprises one of: a Bluetooth personal area network receiver; or a Wi-Fi local area network receiver. 4 . The wearable device of claim 2 , wherein the communication bus comprises an Inter-Integrated Circuit (I2C) bus and said commands follow the I2C message protocol. 5 . The wearable device of claim 1 , wherein, each of the actuation soft circuit cells further comprises a microcontroller and an actuator unit, the electrical connection between each of the actuation soft circuit cells and the master soft circuit cell comprises a power distribution bus and a communication bus that serially pass through the master and actuation soft circuit cells, each of the actuation soft circuit cells is configured to receive power from the master soft circuit cell over the power distribution bus, and the microcontroller on each of the actuation soft circuit cells is configured to receive commands from the master soft circuit cell over the communication bus, and either turn on or turn off the actuator unit on the actuation soft circuit cell based on the received commands. 6 . The wearable device of claim 5 , wherein the actuator unit on one or more of the actuation soft circuit cells comprises one of: a heating element that when turned on generates heat; or a cooling element that when turned on removes heat from the body of the user; or an audio output element that when turned on plays a desired one of a plurality of different sounds; or a vibration element that when turned on vibrates; or a light output element that when turned on displays a desired one of a plurality of different lighting effects; or a pressure producing element that when turned on applies pressure to the body of the user; or a shape changing element that when turned on changes the physical shape of said one or more actuation soft circuit cells. 7 . The wearable device of claim 1 , wherein, the information being conveyed to the user comprises the current affective state of the user, and the received actuation instructions specify a set of actuations which distinctly conveys said current affective state to the user. 8 . The wearable device of claim 7 , wherein, whenever the current affective state of the user is stressed said set of actuations comprises a short sequence of vibration pulses followed by removing heat from the body of the user, playing a soothing and slow type of music, and applying pressure to the body of the user, whenever the current affective state of the user is sad said set of actuations comprises a short sequence of vibration pulses followed by applying heat to the body of the user, playing a cheerful and upbeat type of music, and displaying a soothing type of lighting effect, whenever the current affective state of the user is calm said set of actuations comprises a short sequence of vibration pulses, whenever the current affective state of the user is happy said set of actuations comprises a short sequence of vibration pulses followed by playing a cheerful and upbeat type of music, and displaying a soothing type of lighting effect, and whenever the current affective state of the user is excited said set of actuations comprises a short sequence of vibration pulses followed by removing heat from the body of the user, playing a cheerful and upbeat type of music, and displaying a festive type of lighting effect. 9 . The wearable device of claim 7 , wherein, whenever the current affective state of the user is stressed said set of actuations comprises a short sequence of vibration pulses followed by applying heat to the body of the user, playing a soothing and slow type of music, and applying pressure to the body of the user, whenever the current affective state of the user is sad said set of actuations comprises a short sequence of vibration pulses followed by applying heat to the body of the user, and playing a cheerful and upbeat type of music, whenever the current affective state of the user is calm said set of actuations comprises a short sequence of vibration pulses, whenever the current affective state of the user is happy said set of actuations comprises a short sequence of vibration pulses followed by playing a cheerful and upbeat type of music, and whenever the current affective state of the user is excited said set of actuations comprises a short sequence of vibration pulses followed by playing a cheerful and upbeat type of music. 10 . The wearable device of claim 1 , wherein the actuation soft circuit cells comprise at least one of: a heating cell configured to generate a heating actuation that warms the user whenever the heating cell is activated by the master soft circuit cell; or a cooling cell configured to generate a cooling actuation that cools the user whenever the cooling cell is activated by the master soft circuit cell; or an audio cell configured to generate an audio actuation that may be heard and felt by the user whenever the audio cell is activated by the master soft circuit cell; or a vibration cell configured to generate a vibration actuation that may be felt by the user whenever the vibration cell is activated by the master soft circuit cell; or a lighting cell configured to generate a lighting actuation that may be seen by the user whenever the lighting cell is activated by the master soft circuit cell; or a pressure cell configured to generate a pressure actuation that may be felt by the user whenever the pressure cell is activated by the master soft circuit cell; or a rubbing cell configured to generate a rubbing actuation that may be felt by the user whenever the rubbing cell is activated by the master soft circuit cell.
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