Claims
- 1. A digital signal transmission system comprising:
a) means for generating a first Advanced Television Systems Committee (ATSC) standard 8-VSB bit stream; b) means for generating a new bit stream capable of transmitting high priority information bits, said new bit stream and said standard 8-VSB bit stream capable of being simultaneously transmitted over a fixed bandwidth communications channel to a receiver device, wherein a data rate of said standard bit stream is inversely related to a degree of robustness of information bits comprising said new bit-stream.
- 2. The digital signal transmission system as claimed in claim 1, wherein symbols of said new bit stream are transmitted according to a mapping scheme selected from: a pseudo 2-VSB symbol mapping scheme and 4-VSB symbol mapping scheme.
- 3. The digital signal transmission system as claimed in claim 1, wherein symbols of said new bit stream mapped according to either one of said pseudo 2-VSB symbol mapping technique and 4-VSB symbol mapping technique are transmitted in a backwards compatible manner.
- 4. The digital signal transmission system as claimed in claim 1, wherein the standard 8-VSB bit stream and new bit stream capable of transmitting high priority information bits are transmitted according to a defined bit-rate ratio.
- 5. The digital signal transmission system as claimed in claim 1, wherein said new bit stream has a lower Threshold of Visibility (TOV) than said standard 8-VSB stream.
- 6. The digital signal transmission system as claimed in claim 3, further comprising:
a first Reed-Solomon encoder means capable of receiving a standard stream of bits and encoding said stream according to an ATSC 8-VSB standard; a second Reed-Solomon encoder means capable of receiving a stream of high priority information bits and encoding said stream of high priority information bits to generate said new bit stream; and, multiplexing means for multiplexing said standard 8-VSB bit stream and new bit stream for transmission.
- 7. The digital signal transmission system as claimed in claim 6, wherein said second Reed-Solomon encoder means further comprises a packet formatter device for buffering an input of high priority information bit stream and grouping said bit stream into a predetermined number of bytes.
- 8. The digital signal transmission system as claimed in claim 6, further comprising:
a data interleaver device capable of rearranging the bytes of the multiplexed standard 8-VSB stream and new stream during an interleaving process; and, a trellis encoder device coupled to an output of said data interleaver device for encoding bytes of said standard and said new bit stream; and, a symbol mapper device coupled to said trellis encoder for mapping encoded bits into an associated symbol level according to an associated symbol mapping scheme.
- 9. The digital signal transmission system as claimed in claim 8, wherein only information bits of each said bytes of said new stream are to be encoded by said trellis encoder device.
- 10. The digital signal transmission system as claimed in claim 9, wherein said information bits of each said bytes of said new stream are least significant bits (LSB) bits corresponding to bits 6, 4, 2, and 0.
- 11. The digital signal transmission system as claimed in claim 9, wherein said symbol mapper device generates an output R corresponding to a combination of three bits Z0, Z1 and Z2, said pseudo 2-VSB symbol mapping technique including making Z1 and Z2 bits equal to the information bit to result in an output R having one of four possible symbol values from an alphabet comprising {−7, −5, 5, 7}, wherein a sign of said symbol indicates a robust information bit.
- 12. The digital signal transmission system as claimed in claim 9, wherein said symbol mapper device generates an output R corresponding to a combination of three bits Z0, Z1 and Z2, said 4-VSB symbol mapping technique including making Z1 equal to the information bit and Z2 equal to Z0 to result in an output R having one of four possible symbol values from an alphabet comprising {−7, −3, 3, 7}.
- 13. The digital signal transmission system as claimed in claim 9, further comprising a “non-systematic” Reed Solomon encoder device coupled to said data interleaver device and said trellis encoder device, said “non-systematic” Reed Solomon encoder device capable of providing said apparatus with backward compatibility for an existing ATSC 8-VSB receiver.
- 14. The digital signal transmission system as claimed in claim 13, wherein said packet formatter device further comprises means for adding packet identifier (PID) bytes to said new stream for enabling said system to implement said “non-systematic” Reed Solomon encoder device when processing said new bit stream.
- 15. The digital signal transmission system as claimed in claim 1, wherein symbols of said new bit stream are transmitted according to a hierarchical VSB (H-VSB) symbol mapping technique, said digital transmission system comprising:
a first Reed-Solomon encoder means capable of receiving a standard stream of bits and encoding said stream according to an ATSC 8-VSB standard; a hierarchical processing means capable of encoding a second bit stream of high priority information bits, wherein said second bit stream comprises a first portion of bits to be encoded as a robust ATSC bit stream and a second portion of bits to be encoded as a low priority embedded bit stream; a packet multiplexer device having a first input coupled to an output of said first Reed-Solomon encoder means and having a second input coupled to an output of said hierarchical processing means, said multiplexer capable of multiplexing said standard stream and said second bit stream.
- 16. The digital signal transmission system as claimed in claim 15, further comprising:
a second Reed-Solomon encoder means capable of receiving said first portion of bits to be encoded as a robust ATSC bit stream; a third Reed-Solomon encoder means capable of receiving said second portion of bits to be encoded as a low priority 8-VSB embedded bit stream; and, a packet formatter device for combining said robust ATSC bit stream and said low priority embedded bit stream for input to said second input of said packet multiplexer device.
- 17. The digital signal transmission system as claimed in claim 16, wherein said packet formatter device comprises means for generating bytes, each byte having most significant bits (MSBs) at bits (7,5,3,1) corresponding to high priority bits and least significant bits LSBs at bits (6,4,2,0) correspond to the embedded stream.
- 18. The digital signal transmission system as claimed in claim 16, further comprising:
a data interleaver device capable of rearranging the bytes of the multiplexed standard 8-VSB stream and new stream during an interleaving process; and, a trellis encoder device coupled to an output of said data interleaver device for encoding bytes of either said standard or said new bit stream; and, a symbol mapper device coupled to said trellis encoder for mapping encoded bits into an associated symbol level according to an associated symbol mapping scheme, wherein said symbol mapper device generates an output symbol R corresponding to a combination of three bits Z0, Z1 and Z2, a value of R comprising (−1−α) assigned to a combination of Z2, Z1 and Z0 equal to (011) and, a value of R comprising (1+α) assigned to a combination of Z2, Z1 and Z0 equal to (100), wherein α has a variable value.
- 19. A method for transmitting digital signals comprising the steps of:
a) receiving a standard stream of bits and Reed-Solomon encoding said stream according to an ATSC 8-VSB standard; b) receiving a stream of high priority information bits and Reed-Solomon encoding said stream of high priority information bits to generate a new bit stream; and, c) multiplexing said standard 8-VSB bit stream and new bit stream for simultaneous transmission over a fixed bandwidth communications channel to a receiver device capable of receiving said standard and new bit stream, wherein a data rate of said standard bit stream is inversely related to a degree of robustness of information bits comprising said new bit-stream.
- 20. The method for transmitting digital signals according to claim 19, wherein symbols of said new bit stream are transmitted according to a mapping scheme selected from: a pseudo 2-VSB symbol mapping scheme and 4-VSB symbol mapping scheme.
- 21. The method for transmitting digital signals according to claim 20, wherein said step b) further includes the step of: buffering an input of high priority information bit stream and grouping said bit stream into a predetermined number of bytes.
- 22. The method for transmitting digital signals according to 20, further comprising the steps of:
rearranging the bytes of the multiplexed standard 8-VSB stream and new stream during an interleaving process; and, trellis-encoding bytes of said standard and said new bit stream; and, mapping encoded bits into an associated symbol level according to an associated symbol mapping scheme, wherein only information bits of each said bytes of said new stream are to be encoded by said trellis encoder device.
- 23. The method for transmitting digital signals according to claim 22, wherein said information bits of each said bytes of said new stream are least significant bits (LSB) bits corresponding to bits 6, 4, 2, and 0.
- 24. The method for transmitting digital signals according to claim 22, wherein said mapping step includes the step of generating an output R corresponding to a combination of three bits Z0, Z1 and Z2, said pseudo 2-VSB symbol mapping technique including the step of making Z1 and Z2 bits equal to the information bit to result in an output R having one of four possible symbol values from an alphabet comprising {−7, −5, 5, 7}, wherein a sign of said symbol indicates a robust information bit.
- 25. The method for transmitting digital signals according to claim 22, wherein said mapping step includes the step of generating an output R corresponding to a combination of three bits Z0, Z1 and Z2, said 4-VSB symbol mapping technique including the step of making Z1 equal to the information bit and Z2 equal to Z0 to result in an output R having one of four possible symbol values from an alphabet comprising {−7, −3, 3, 7}.
- 26. The method for transmitting digital signals according to claim 22, further comprising the step of: providing “non-systematic” Reed-Solomon encoding after said trellis encoding for providing said apparatus with backward compatibility for an existing ATSC 8-VSB receiver.
- 27. The method for transmitting digital signals according to claim 21, wherein said step b) further includes the step of: adding packet identifier (PID) bytes to said new stream for enabling said “non-systematic” Reed Solomon encoding when processing said new bit stream.
- 28. The method for transmitting digital signals according to claim 20, wherein symbols of said new bit stream are transmitted according to a hierarchical VSB (H-VSB) symbol mapping technique, said method comprising:
receiving a standard stream of bits and Reed-Solomon encoding said stream according to an ATSC 8-VSB standard; receiving a second bit stream of high priority information bits, said second bit stream comprising a first portion of bits to be encoded as a robust ATSC bit stream and a second portion of bits to be encoded as a low priority embedded bit stream; and, multiplexing said standard stream and said second bit stream for said simultaneous transmission.
- 29. The method for transmitting digital signals according to claim 28, further comprising the steps of:
receiving said first portion of bits of said second stream and Reed-Solomon encoding said first portion to generate a robust ATSC bit stream; receiving said second portion of bits of said second stream and Reed-Solomon encoding said second portion to generate a low priority embedded bit stream; and, combining said robust ATSC bit stream and said low priority 8-VSB embedded bit stream prior to said multiplexing of said standard stream and said second bit stream.
- 30. The method for transmitting digital signals according to claim 29, further including the steps of:
buffering an input of high priority information bit stream; and, grouping said bit stream into a predetermined number of bytes, each byte having most significant bits (MSBs) at bits (7,5,3,1) corresponding to high priority bits and least significant bits LSBs at bits (6,4,2,0) correspond to the embedded stream.
- 31. The method for transmitting digital signals according to claim 30, further comprising:
rearranging the bytes of the multiplexed standard 8-VSB stream and new stream during an interleaving process; and, trellis encoding bytes of said standard and said new bit stream; and, mapping encoded bits into an associated symbol level according to an associated symbol mapping scheme, said mapping including generating an output symbol R corresponding to a combination of three bits Z0, Z1 and Z2, a value of R comprising (−1−α) assigned to a combination of Z2, Z1 and Z0 equal to (011) and, a value of R comprising (1+α) assigned to a combination of Z2, Z1 and Z0 equal to (100), wherein a has a variable value.
- 32. A flexible digital transmission system comprising a digital television signal transmitter and digital television receiver, said transmitter comprising:
means for generating a first Advanced Television Systems Committee (ATSC) standard 8-VSB bit stream; means for generating an encoded new bit stream capable of transmitting high priority information bits, wherein symbols of said new bit stream are capable of being transmitted according to a transmission mode selected from group comprising: a pseudo 2-VSB mode, a 4-VSB mode, and a hierarchical-VSB (H-VSB) transmission mode, each mode characterized as having symbols mapped according to a respective symbol mapping scheme; and, multiplexer means for multiplexing symbols representing said standard 8-VSB bit stream and said new bit stream for simultaneous transmission over a terrestrial channel according to a broadcaster defined bit-rate ratio.
- 33. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 32, wherein a data rate of said first standard bit stream is inversely related to a degree of robustness of information bits comprising said new bit-stream.
- 34. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 32, wherein said two bit-streams are multiplexed at the packet level.
- 35. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 32, wherein in each of said pseudo 2-VSB and 4-VSB modes, one bit of information is transmitted per symbol.
- 36. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 35, whereby in said 2-VSB and H-VSB modes, a sign of a symbol indicates the robust information bit.
- 37. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 35, whereby in said 2-VSB, 4-VSB and H-VSB modes, the information bit is trellis coded using a trellis encoder device.
- 38. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 35, wherein transmission of a new bit-stream according to one of said 2-VSB, 4-VSB, and H-VSB transmission modes requires mapping of symbols to possible symbol values from an alphabet comprising respectively, {−7, −5, 5, 7}, {7, 3, −3, −7}, and {7, 5, 3, −3, −5, 7}.
- 39. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 35, wherein said transmitter further comprises a “non-systematic” Reed-Solomon encoder optionally utilized to add parity bytes to the robust bit-stream packets to ensure backward compatibility with an existing receiver device.
- 40. The flexible digital transmission system comprising a digital television signal transmitter and digital television receiver as claimed in claim 39, wherein said transmitter further comprises means for providing information needed to decode robust packets at said receiver device, said information including an indication of 2-VSB, 4-VSB, H-VSB transmission mode, and, an indication of whether said optional non-systematic RS encoder was utilized and an indication of the number of new stream packets per field.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present invention claims the benefit of commonly-owned, co-pending U.S. Provisional Patent Application Serial No. 60/280,782 filed Apr. 2, 2001. This patent application is additionally related to commonly-owned, co-pending U.S. patent application Ser. No. ______ [Atty. Docket 702230] entitled APPARATUS AND METHOD FOR GENERATING ROBUST ATSC 8-VSB BIT STREAMS, the entire contents and disclosure of which is incorporated by reference as if fully set forth herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60280782 |
Apr 2001 |
US |