The present invention relates generally to wireless communications, and more particularly to automatic wireless channel hopping.
Many consumers want to enjoy a vast collection of digital audio files stored on their PC by playing those audio files on an audio system. Users have already been transferring audio files from CD storage onto their personal computers. Playing audio files directly from an Internet web site through a personal computer to a home audio system permits using the computer's processing and storage capacity to allow increased play lists, as well as an organized library of digital music files using ID3 tag song data to display artist, album, song title and genre. Wireless transmission and reception between a personal computer and the audio system would permit a higher quality listening experience for a user.
Wireless transmitter and receiver techniques must be able to send CD-quality digital audio from the personal computer to the audio system. Active users of jukebox-managed personal computer content and Internet audio listeners seeking alternatives for listening to digital quality music files require a convenient connection between their personal computer and audio system. Continuous transmission and reception between the audio file source and the audio system is required for full user experience in listening to digital quality music files available from a personal computer or a network site.
Wireless transmissions systems have employed selectable carrier frequencies for sending and receiving signals. Often, a user must manually change the carrier frequency. In audio file transfers the transmitter and receiver boards will probably be remotely located and require the user to manually switch both the transmitter and receiver boards to different channel. Accordingly there is a need for a wireless system for audio file transfers that automatically select the wireless transmission channel in both the transmitter and receiver boards to provide a user with near seamless play of music.
An apparatus includes a reception circuit with a frequency synthesizer, a decoder for digitally demodulating an audio file signal from the reception circuit, and a processor for initializing the decoder in response to a loss of a phase lock in the demodulating of the audio file signal and setting the frequency synthesizer at one of a plurality of frequencies to re-establish the phase lock in the demodulating of the audio file signal. The plurality of frequencies are 900 MHz range channel frequencies. Preferably, the plurality of frequencies are 905 MHz, 911 MHz, 917 MHz and 923 MHz. The decoder comprises an eight-to-four modulation EFM digital decoder. Demodulating the audio file signal provides a digital audio stream conforming to an I2S audio format. The processor is preferably a microprocessor.
A computer readable medium contains software instructions that, when executed by a processor, performs the steps of receiving a modulated audio file signal, demodulating the audio file signal to a digital audio stream, re-initializing the demodulating in response to a loss of a phase lock in the demodulating the audio file signal, and setting the receiving at one of a plurality of channel frequencies to establish the phase lock in the demodulating.
A communications system includes a remote control reception circuit, a streaming controller coupled to the remote control reception circuit, an encoder for converting digital audio from the controller to a modulated data signal, a transmission circuit for transmitting the modulated data signal at one of a plurality of channel frequencies selected in response to the remote control reception circuit, reception circuit including a frequency synthesizer for receiving the modulated data signal, a demodulator coupled to the receiver for demodulating the modulated data signal, and a processor for initializing the demodulator in response to a loss of a phase lock in the demodulating of the modulated data signal and setting the frequency synthesizer at the one of a plurality of channel frequencies until the phase lock in the demodulating is established.
An apparatus includes a streaming controller for providing digital audio, an encoder for converting the digital audio to a modulated data signal, and a transmission circuit for transmitting the modulated data signal at one of a plurality of channel frequencies. The transmission circuit is preferably coupled to the encoder and the streaming controller.
A more complete understanding of the present invention may be obtained from consideration of the following description in conjunction with the drawings, in which:
To facilitate understanding, identical reference numerals have been used, where possible, to designate identical elements that are common to the figures.
Referring to the block diagram of
The inventive channel hopping automatically initiated by detection of an unlocked condition in a phase lock loop PLL during demodulation of the transmitted/received audio signal provides additional user convenience. Transmitter and receiver board switches are eliminated leaving the user to enjoy near seamless listening of transmitted audio files. The user can change transmitter board channel frequency with a remote control or host system USB command. The receiver board then automatically selects the channel receiving EFM data by scanning all frequencies.
Although various embodiments which incorporate the teachings of the present invention have been shown and described in detail herein, those skilled in the art can readily devise many other varied embodiments that will still incorporate these teachings. The present invention has been described within the context of an audio system receiving transmission of audio files from a personal computer. It will be appreciated by those skilled in the art that the teachings of the present invention directed to automatic channel frequency hopping and selection may be practiced where the wireless signal is transmitting audio files stored on the computer or audio files downloaded from across the network onto the computer for streaming transfer to the audio system. The audio system can be equipped with an analog stereo input jack; e.g. a home stereo with a “LINE” or “AUX” jack. The user can listen to personal computer PC based MP3's and Internet with the wireless transmitter and receiver sending crystal clear digital audio from the PC to the audio system. The remote control feature allows a user to surf a collection of audio files from another location away from the PC.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US03/21075 | 7/7/2003 | WO | 1/9/2005 |
Number | Date | Country | |
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60394516 | Jul 2002 | US |