Encoding of transmitted program material
First Claim
1. In a system for accompanying audio program material with a substantially inaudible audio frequency secondary message signal, the secondary message signal including an initial portion and a multi-bit code portion having mark bits within a first frequency band and space bits within a second frequency band, said first frequency band occupying a first notch in the frequency band of the audio program material and said second frequency band occupying a second notch in the frequency band of the audio program material, the decoder comprising:
- a first bandpass filter substantially centered on the center frequency of said first notch, said first bandpass filter being coupled to at least a portion of the audio program material to provide an output signal comprising primarily the mark bits,a second bandpass filter substantially centered on the center frequency of said second notch, said second bandpass filter being coupled to at least a portion of the audio program material to provide an output signal comprising primarily the space bits,said first and second bandpass filters covering separate frequency bands, spaced from one another,a summing circuit for adding the outputs of said first and second filters,a converter coupled to the output of said summing means and responsive to the frequencies of said mark and space bits to provide a first voltage in response to said mark bit and a second voltage different from said first voltage in response to said space bit,a first comparator circuit responsive to the output of said first bandpass filter to provide a first enabling signal in response to an output from said first bandpass filter that exceeds a first threshold,said first threshold being set below the signal level to be expected from said first bandpass filter during the receipt of a mark bit.
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Accused Products
Abstract
An audio program is encoded with a subaudible binary code. A first value bit (mark) is a first frequency signal and a second value bit (space) is a second frequency signal. The coded message includes an initialization period constituted by a signal having the mark frequency. In decoding, the mark and space signals are detected through first and second band pass filters specific to the mark and space signal frequencies. The mark and space frequencies are sufficiently different to permit separate filtering. The time duration for each bit of the code is substantial. The decoder through a phase locked loop and integrator reads the bit on the basis of the average value of the bit over the duration of the bit. A synchronization signal provides for synchronous reading of the code. This signal that initiates the decoding operation is generated only in response to the coincident detection of the initialization signal, the notch and a mark response at the phase locked loop.
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Citations
4 Claims
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1. In a system for accompanying audio program material with a substantially inaudible audio frequency secondary message signal, the secondary message signal including an initial portion and a multi-bit code portion having mark bits within a first frequency band and space bits within a second frequency band, said first frequency band occupying a first notch in the frequency band of the audio program material and said second frequency band occupying a second notch in the frequency band of the audio program material, the decoder comprising:
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a first bandpass filter substantially centered on the center frequency of said first notch, said first bandpass filter being coupled to at least a portion of the audio program material to provide an output signal comprising primarily the mark bits, a second bandpass filter substantially centered on the center frequency of said second notch, said second bandpass filter being coupled to at least a portion of the audio program material to provide an output signal comprising primarily the space bits, said first and second bandpass filters covering separate frequency bands, spaced from one another, a summing circuit for adding the outputs of said first and second filters, a converter coupled to the output of said summing means and responsive to the frequencies of said mark and space bits to provide a first voltage in response to said mark bit and a second voltage different from said first voltage in response to said space bit, a first comparator circuit responsive to the output of said first bandpass filter to provide a first enabling signal in response to an output from said first bandpass filter that exceeds a first threshold, said first threshold being set below the signal level to be expected from said first bandpass filter during the receipt of a mark bit. - View Dependent Claims (2, 3, 4)
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Specification