Communication method operated by software and apparatus thereof
First Claim
1. A communication method comprising:
- selecting one of a cordless phone and a handset transceiver function mode through a user interface;
minimum-shift-keying (MSK)-modulating a data signal corresponding to the selected function mode, and frequency-modulating (FM) the MSK-modulated data signal;
converting the FM-modulated data signal to a radio frequency (RF) band signal corresponding to the selected function mode, and transmitting the converted RF band signal to a cordless phone base station;
if a voice signal exists when the data signal is not transmitted, FM-modulating the voice signal, converting the FM-modulated voice signal to the RF band signal corresponding to the selected function mode, and transmitting the converted RF band signal to the cordless phone base station;
detecting and filtering a channel of a signal selected by the cordless phone base station if the RF signal is received from the cordless phone base station;
FM-demodulating the filtered signal;
outputting the voice signal through a speaker when the FM-demodulated signal is a voice signal; and
decimating the FM demodulated data signal, MSK-demodulating the decimated data signal, and executing a command corresponding to the MSK demodulated data signal if the FM-demodulated signal is a data signal,wherein the operation of MSK demodulating the data signal comprises;
determining whether a frame that forms the MSK-demodulated data signal is an effective frame;
storing the frame in a queue, if the frame is an effective frame; and
dequeuing the stored frame,wherein the MSK modulation and the FM modulation are performed by software modules.
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Abstract
A software-controlled communication method and an apparatus thereof is disclosed. The apparatus includes a radio frequency (RF) front end unit for sending a data signal or a voice signal to a cordless phone base station via an antenna, an analog-to-digital for converting an analog signal received from the RF front end unit into a digital signal and a digital-to-analog converter for converting a digital signal into an analog signal and providing the converted signal to the RF front end unit, and a baseband signal processor, having a plurality of signal processing modules for processing communication signals and a control module for controlling the signal processing modules installed therein as software modules, for providing cordless phone and handset transceiver functions.
14 Citations
12 Claims
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1. A communication method comprising:
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selecting one of a cordless phone and a handset transceiver function mode through a user interface; minimum-shift-keying (MSK)-modulating a data signal corresponding to the selected function mode, and frequency-modulating (FM) the MSK-modulated data signal; converting the FM-modulated data signal to a radio frequency (RF) band signal corresponding to the selected function mode, and transmitting the converted RF band signal to a cordless phone base station; if a voice signal exists when the data signal is not transmitted, FM-modulating the voice signal, converting the FM-modulated voice signal to the RF band signal corresponding to the selected function mode, and transmitting the converted RF band signal to the cordless phone base station; detecting and filtering a channel of a signal selected by the cordless phone base station if the RF signal is received from the cordless phone base station; FM-demodulating the filtered signal; outputting the voice signal through a speaker when the FM-demodulated signal is a voice signal; and decimating the FM demodulated data signal, MSK-demodulating the decimated data signal, and executing a command corresponding to the MSK demodulated data signal if the FM-demodulated signal is a data signal, wherein the operation of MSK demodulating the data signal comprises; determining whether a frame that forms the MSK-demodulated data signal is an effective frame; storing the frame in a queue, if the frame is an effective frame; and dequeuing the stored frame, wherein the MSK modulation and the FM modulation are performed by software modules. - View Dependent Claims (2, 3, 4, 5, 6)
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7. A communication apparatus comprising:
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a radio frequency (RF) front end unit which communicates one of a data signal and a voice signal to a cordless phone base station through an antenna; an analog-to-digital unit which converts an analog signal received from the RF front end unit into a digital signal, or for converting a digital signal into an analog signal and providing the analog signal to the RF front end unit; and a baseband signal processor, having a plurality of signal processing modules for processing communication signals, and a control module which controls the signal processing modules installed therein as software modules, said base band signal processor providing cordless phone and handset transceiver functions, wherein at least one of the signal processing modules comprises; a channel detection and filter selection module which detects and filters a channel of a signal selected by the cordless phone base station; a frequency demodulation module which frequency demodulates the filtered signal; a decimation module which decimates the frequency demodulated signal if the frequency demodulated signal is a data signal; and a MSK demodulation module which MSK-demodulates the decimated signal, wherein the control module executes a command corresponding to the MSK demodulated data signal, wherein the channel detection and filter selection module performs a fast Fourier transform (FFT) on an input signal, detects the frequency having a high intensity, and detects the channel. - View Dependent Claims (8, 9)
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10. A communication apparatus comprising:
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a radio frequency (RE) front end unit which communicates one of a data signal and a voice signal to a cordless phone base station through an antenna; an analog-to-digital unit which converts an analog signal received from the RF front end unit into a digital signal, or for converting a digital signal into an analog signal and providing the analog signal to the RF front end unit; and a baseband signal processor, having a plurality of signal processing modules for processing communication signals, and a control module which controls the signal processing modules installed therein as software modules, said base band signal processor providing cordless phone and handset transceiver functions, wherein at least one of the signal processing modules comprises; a channel detection and filter selection module which detects and filters a channel of a signal selected by the cordless phone base station; a frequency demodulation module which frequency demodulates the filtered signal; a decimation module which decimates the frequency demodulated signal if the frequency demodulated signal is a data signal; and a MSK demodulation module which MSK-demodulates the decimated signal, wherein the control module executes a command corresponding to the MSK demodulated data signal, wherein the frequency demodulation is performed through a quadrature frequency demodulation method.
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11. A communication apparatus comprising:
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a radio frequency (RF) front end unit which communicates one of a data signal and a voice signal to a cordless phone base station through an antenna; an analog-to-digital unit which converts an analog signal received from the RF front end unit into a digital signal, or for converting a digital signal into an analog signal and providing the analog signal to the RF front end unit; and a baseband signal processor, having a plurality of signal processing modules for processing communication signals, and a control module which controls the signal processing modules installed therein as software modules, said base band signal processor providing cordless phone and handset transceiver functions, wherein at least one of the signal processing modules comprises; a minimum-shift-keying (MSK) modulation module which MSK-modulates a bit stream constituting a data frame to be transmitted to the cordless phone base station; an interpolation module which interpolates the MSK-modulated data signal; a frequency modulation module which frequency modulates (FM) the data signal received from the interpolation module; and a switching module which receives the voice signal from a user and the data signal from the interpolation module, switches the voice signal and the data signal, and transmits the switched signals to the FM modulation module, wherein if a value of the data signal received from the interpolation module is continuously “
0,”
the switching module determines that the data signal has not been transmitted, and transmits the voice signal to the FM module.
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12. A communication apparatus comprising:
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a radio frequency (RF) front end unit which communicates one of a data signal and a voice signal to a cordless phone base station through an antenna; an analog-to-digital unit which converts an analog signal received from the RF front end unit into a digital signal, or for convening a digital signal into an analog signal and providing the analog signal to the RF front end unit; and a baseband signal processor, having a plurality of signal processing modules for processing communication signals, and a control module which controls the signal processing modules installed therein as software modules, said base band signal processor providing cordless phone and handset transceiver functions, wherein at least one of the signal processing modules comprises; a minimum-shift-keying (MSK) modulation module which MSK-modulates a bit stream constituting a data frame to be transmitted to the cordless phone base station; an interpolation module which interpolates the MSK-modulated data signal; a frequency modulation module which frequency modulates (FM) the data signal received from the interpolation module; and a switching module which receives the voice signal from a user and the data signal from the interpolation module, switches the voice signal and the data signal, and transmits the switched signals to the FM modulation module, wherein the frequency modulation uses a carrier frequency of 700 KHz.
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Specification