1. Technical Field
At least one embodiment provides a camera system and the operating method thereof. More particularly, at least one embodiment provides a camera system able to transmit a digital token via sound waves and the operating method thereof.
2. Description of the Related Art
Camera devices are well known in the art. Camera devices are one of the common appliances intensively used in residential or corporate environments including homes, businesses, offices, or public sections. Camera devices are able to capture real-time image, video, and audio data, and stream these data to remote users via Internet. Nowadays, camera devices are used, for example, to observe crime hotspots, monitor children or senior citizens, and establish video links such as videophone calls and videoconferencing.
Conventional camera devices, webcams and surveillance systems, rely on physical links such as USB cables, parallel cables, or composite AV cables to deliver the captured data to the linked displays; therefore, conventional camera devices are, due to the length and cost of the cable network, only able to be installed within a limited range close the linked displays. Recently, developments and expansions of wireless communication technologies had greatly changed the way people live. Camera devices are now capable of accessing Internet by the 3G, LTE, Wi-Fi, or Bluetooth networks. Wireless camera devices, those camera devices with wireless communication technologies, are free from physical links which restricts the installing region of camera devices.
However, wireless camera devices come with new problems not existing in conventional camera devices. Conventional camera devices required physical links to communicate with the linked displays; at the meantime, physical links play another role which directs the routes of data transmission. Nevertheless, wireless camera devices, lacking physical links, communicate with displays in the air. Two distinct scenarios of wireless camera devices are foreseen; in the first scenario, a wireless camera device lacking the ability to pair with another device may bring the user inconvenience; in the second scenario, a wireless camera device set to be opened and does not required any authentication to access may lead to privacy issues. Therefore, an additional procedure for assigning a target to a wireless camera device is needed. In society nowadays, one space usually contains multiple displays and multiple wireless camera devices, this situation especially emphasizes the importance of device pairing, authorizing, and authenticating.
Another challenge a wireless camera device may encounter is the difficulties in accessing wireless access points (AP). For example, several wireless APs may co-exist in a space; the wireless AP may require a password to access; and, the service set identification (SSID) of wireless AP may be hidden. Under the above circumstances, a wireless camera device may be refrained from fully functioning due to the reason that lacking a user interface or a input interface to input any required information to access a wireless AP.
Wireless camera devices come with several problems not existing in conventional camera devices. In one example, wireless camera devices face a challenge to determine a target to stream the data to without wires or cables connected in-between; in a further example, wireless camera devices have difficulties in accessing a network via a secured AP. Accordingly, there is a need for methods for device pairing, authorizing, or authenticating to overcome the above-mentioned problems. At least one embodiment in accordance with the present invention provides a camera system and the operating thereof, wherein the camera system is able to transmit a digital token via sound waves.
In some embodiments, a camera system comprises: a transmitting device and a camera device. The transmitting device, for example, contains a first processing unit adapted to convert a digital token to an acoustic signal and an acoustic wave generator adapted to transmit the acoustic signal, wherein the acoustic wave generator is connected to the first processing unit. The camera device, for example, contains an acoustic wave sensor adapted to sense an acoustic signal and a second processing unit adapted to convert the acoustic signal to a digital token, wherein the second processing unit is connected to the acoustic sensor. In some implementations, the digital token contains a string of 4-bit integers and the acoustic signal contains a series of pitches, wherein the relationships between each 4-bit integer and each pitch are predefined in both the transmitting device and the camera device.
In accordance with some aspects of the present invention, the transmitting device is one selected from the group consisting of a computer, a smart TV, a mobile device, and a tablet; the acoustic wave generator is one selected from a group consisting of a speaker and an earphone; the acoustic wave sensor is one selected from a group consisting of a microphone, a surface acoustic wave filter, a surface acoustic wave resonator, and an acoustic sensor. In accordance with some other aspects of the present invention, the camera device may further comprises a network module, connected to the second processing unit, adapted to connect the camera device to a network, wherein the network module is one selected from a group consisting of a LAN transceiver, a WLAN transceiver, a cellular transceiver, a Bluetooth transceiver, an infrared transceiver, and a near field communication transceiver, and wherein the network is one selected from a group consisting of a LAN, a WLAN, a cellular network, a Bluetooth network, an infrared network, and a near field communication network. The digital token may, information for device pairing aside, further comprise user information, a MAC address, or a password needed for accessing the network.
In some embodiments, an operating method for camera device comprising: converting, by a first processing unit of a transmitting device, a string of 4-bit integers in a digital token to a series of pitches in an acoustic signal and transmitting the acoustic signal by an acoustic wave generator, wherein the first processing unit is connected to the acoustic wave generator; receiving, by an acoustic wave sensor of a camera device, the acoustic signal and transferring the acoustic signal to a second processing unit, wherein the acoustic sensor is connected to the second processing unit; converting, by the second processing unit, the acoustic signal to the digital token; and, utilizing, by the second processing unit, the digital token for device paring, authorizing, or authenticating.
In accordance with some aspects of the present invention, the operating method further contains an operating method of transmitting device and an operating method of camera device. The operating method of transmitting device may comprise: importing, by a transmitting device, a digital token; combining, by a first processing unit of the transmitting device, the digital token and a channel code to form a digital signal; dividing, by the first processing unit, the digital signal into a string of 4-bit integers; converting, by the first processing unit, the string of 4-bit integers to a series of pitches to form an acoustic signal, wherein the relationship of 16 different 4-bit integers and 16 different pitches are predefined in the camera system; inserting, by the first processing unit, a pattern into the acoustic signal, wherein the pattern is a sound with predetermined rhythm, frequency, or the combination thereof; transforming, by the first processing unit, the waveform and the amplitude of the acoustic signal; transferring, by the first processing unit, the acoustic signal to an acoustic wave generator; and, transmitting, by the acoustic wave generator, the acoustic wave generator via sound waves.
The operating method of camera device may comprise: sensing, by an acoustic wave sensor of a camera device, an acoustic signal; transferring, by the acoustic wave sensor, the acoustic signal to a second processing unit of the camera device; removing, by the second processing unit, noises in the acoustic signal; transforming, by the second processing unit, the acoustic signal with Fast Fourier transform (FFT); converting, by the second processing unit, the acoustic signal to a digital signal; determining, by the second processing unit, a reading frame of the digital signal; shifting, forwardly or backwardly by the second processing unit, the reading frame of the digital signal; retrieving, with the help of a channel code and by the second processing unit, a digital token from the digital signal; utilizing, by the second processing unit, the digital token for device pairing, authorizing, or authenticating between the camera device and the others.
In some embodiments, after the camera device and the transmitting device were paired, the operating method may further comprise: connecting, by a network module of the camera device, the camera device to a network, wherein the network module is connected to the second processing unit; and, transmitting, via the network, a message generated by the second processing unit. Since camera devices lack user interface or input interface to input information, in some embodiments, the digital token may further comprise data such as user information, a MAC address, or a password.
The camera system and operating method thereof in accordance with some embodiments provide a solution to overcome the drawbacks of wireless camera device; the camera system transmits a digital token via sound waves and uses the digital token for device pairing, authorizing, or authenticating; and, the camera device may further utilize user information, MAC addresses, or passwords contained in the digital token to access the network to transmit images, videos, audios captured by the camera device.
In a general aspect, at least one embodiment in accordance with the present invention provides a camera system and the operating method thereof. More particularly, at least one embodiment provides a camera system able to transmit a digital token via sound waves and the operating method thereof. The embodiments and drawings provided here show different aspects of the present invention. However, the present invention are neither limited to any embodiment nor drawing thereof.
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In these aspects, after the microchip retrieved the digital token from the digital signal, the microchip further utilizes the digital token to verify the identity of the mobile telephone and pair the mobile telephone with the IP camera; then, the IP camera connected to a Wi-Fi network via a Wi-Fi transceiver begins to stream captured images to the mobile telephone. In yet some other aspects of
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Number | Date | Country | Kind |
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103106725 | Feb 2014 | TW | national |