IP Library Patent Application 13168985
Patent Application
App. No. 13/168,985

VOIP ENABLED FEMTOCELL WITH A USB TRANSCEIVER STATION

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Quick Facts
Patent No.
US None
App. No.
13/168,985
Abstract

Telephone calls between a mobile station (MS) and the mobile network or PSTN are routed through the Internet via VoIP using a femtocell, as opposed to the traditional macrocellular network. The femtocell can comprise a USB Transceiver Station that is connected to a personal computer through a universal serial bus port, which provides both power and a multi-megabit per second connection between the personal computer and the USB transceiver station. The USB transceiver station can comprise a microcontroller to manage signaling between the RF front end/baseband processor and the personal computer, as well as a precise timing mechanism to assist the synchronization of femtocell timing with the surrounding macrocellular network, if it is present. The USB transceiver station can have a compact form factor that that facilitates a high degree of portability by the subscriber, such as being readily attachable to their keychain.

Claims (32)

1 - 20 . (canceled)

21 . A system for coupling mobile phone radio frequency signals with voice over internet protocol messaging, the system comprising:

a voice over internet protocol client for sending registration messages from a base station, for maintaining a network address translation port binding between the base station and a server, for receiving a media frame from a mobile phone, and for receiving a call request from the server via the network address translation port binding;

a software defined radio for communicating with the voice over internet protocol client module, for processing and generating digital radio baseband signals, and for transmitting the call request to a mobile phone;

a voice over internet protocol gateway for receiving the media frame from the voice over internet protocol client, wherein the gateway transcodes the media.

22 . The system of claim 1 , wherein the mobile phone transmits the media frame using an adaptive multi-rate codec and wherein the voice over internet protocol gateway receives the media frame formatted according to the adaptive multi-rate codec.

23 . The system of claim 21 , wherein the voice over internet protocol client uses a protocol selected from one of the following: session initiation protocol (SIP), inter-asterisk exchange protocol (IAX), and extensible messaging and presence protocol (XMPP).

24 . The system of claim 21 , wherein the voice over internet protocol client receives the call request and transmits the media frame via the network address translation port binding.

25 . The system of claim 21 , further comprising a set of configuration parameters for the base station, wherein the set of configuration parameters includes at least three of the following: a password associated with the base station, an address of the server, a port number of the server, a transmit frequency value for the base station, a mobile network code transmitted by the base station, and a registration interval.

26 . The system of claim 21 , wherein the software defined radio is coupled to a radio front-end via a universal serial bus (USB) connector.

27 . The system of claim 21 , wherein the mobile phone radio frequency signals are transmitted through a licensed radio spectrum and wherein an absolute radio frequency channel number is associated with a plurality of base stations.

28 . A system for providing voice service to a mobile phone, the system comprising:

a server for receiving a registration message and a call-control message from a base station, wherein the base station communicates with the server using internet protocol;

a call-control processing unit for receiving the call-control message from the mobile phone and for translating the call-control message into a voice over internet protocol message;

a media processing unit for receiving a media frame from a mobile phone and for transmitting the media frame according to a format selected from real-time protocol and inter-asterisk exchange protocol;

a set of configuration parameters for the base station, wherein the set of configuration parameters includes a password, an address for the server, and a mobile network code transmitted by the base station.

29 . The system of claim 28 , further comprising a voice over internet protocol gateway for receiving the media frame and information associated with the call-control message.

30 . The system of claim 28 , further comprising a software defined radio for receiving signals from the mobile phone.

31 . The system of claim 28 , wherein the call-control processing unit and the media processing unit operate on a personal computer, and wherein a radio front end connects to the personal computer via a universal serial bus (USB), and wherein the radio front end communicates with the mobile phone via radio frequency signals.

32 . The system of claim 28 , wherein the base station transmits the media frame using forward error correction, and wherein a level of forward error correction is selected by measuring packet loss.

33 . The system of claim 28 wherein the voice over internet protocol message includes at least one codec, and wherein a codec is selected from the at least one codec.

34 . The system of claim 28 wherein the base station transmits the registration message to the server, the server transmits a challenge to the base station, and the base station transmits a hash value of the challenge and the password.

35 . The system of claim 28 wherein the call-control message and the media frame are transmitted from the base station to the server using the same source user datagram protocol (UDP) port number.

36 . A computer-implemented method for coupling mobile phone signals with voice over internet protocol messaging, the method comprising:

recording a set of configuration parameters for a base station, wherein the configuration parameters include an internet address of a server, a password, and a transmit frequency value;

registering a base station with a server using the password, wherein the base station transmits a registration request, the server transmits a challenge, and the base station transmits a hash value of the challenge and the password;

opening a network address translation port binding between the base station and the server;

receiving at the base station a media frame from a mobile phone, wherein the media frame is formatted according to a mobile network protocol;

transmitting from the base station the media frame to the server, wherein the media frame is formatted according to user datagram protocol.

37 . The method of claim 36 , further comprising transmitting the registration request formatted according to a protocol selected from one of the following: session initiation protocol (SIP), inter-asterisk exchange protocol (IAX), and extensible messaging and presence protocol (XMPP).

38 . The method of claim 36 , wherein the media frame contains media formatted according to one of the following codecs: global system for mobile communications (GSM) full rate, GSM enhanced full rate, adaptive multi-rate (AMR), and G.729.

39 . The method of claim 36 , further comprising transmitting the call-control message and the media frame from the base station to the server using the same source user datagram protocol (UDP) port number.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2015
From: GO2TOCALL.COM, INC.
To: SMALL CELL INNOVATIONS, LLC
Reel/Frame 035109/0619 →