Claims
- 1. A picture transmission system for sampling and compressing picture data in a television frame so as to code and transmit the same, said system comprising:
- scanning means for scanning data on successive horizontal scanning lines in a vertical direction to obtain said picture data;
- differential value forming means responsive to said picture data for generating differential values between scanning lines forming primary predicted values and for generating differential values in the direction of scanning lines forming secondary predicted values;
- compression-coding means for performing compression-coding based on said secondary predicted values from said differential value forming means to provide compression-coded differential values; and
- expansion-decoding means for expansion-decoding said compression-coded differential values from said compression-coding means to obtain expansion-decoded differential values.
- 2. The system of claim 1, wherein changed portions in said picture data and other picture data immediately before said picture data are extracted, said system further comprising predicting means for performing prediction for said extracted changed portions.
- 3. The system of claim 2, said system further comprising adding means connected between said expansion-decoding means and said predicting means for adding predictors from said predicting means and said decoded differential values from said expansion-decoding means to obtain added values, said predicting means processing said added values as predictors for subsequent sampling values.
- 4. The system of claim 3, wherein said picture data comprise a plurality of bits, said plurality of bits of picture data being divided into high-order bits and low-order bits, said predicting means performing prediction on the basis of said high-order bits and said predictors to obtain differential values of said high-order bits, said compression-coding means performing compression-coding on the basis of said differential values of said high-order bits.
- 5. The system of claim 4, wherein prediction is performed for said high-order bits to obtain differential values of said high-order bits, and thereafter prediction is performed on the basis of remaining said low-order bits and said predictors on picture data for a screen, said compression-coding means performing compression-coding on the basis of said differential values of said high-order bits, and thereafter compression-coding on the basis of said differential values of said low-order bits.
- 6. The system of claim 1, wherein said picture data comprise a plurality of bits, said plurality of bits of picture data being divided into high-order bits and low-order bits, said system further comprising predicting means for performing prediction on the basis of said high-order bits and predictors to obtain differential values of said high-order bits, said compression-coding means performing compression-coding on the basis of said differential values of said high-order bits.
- 7. The system of claim 6, wherein prediction is performed for said high-order bits to obtain differential values of said high-order bits, and thereafter prediction is performed on the basis of remaining said low-order bits and said predictors on picture data for a screen, said compression coding means performing compression-coding on the basis of said differential values of said high-order bits, and thereafter compression-coding on the basis of said differential values of said low-order bits.
- 8. The system of claim 1, wherein said differential value forming means comprises a primary predictive circuit and a secondary predictive circuit.
- 9. The system of claim 8, wherein said primary predictive circuit comprises a preposition predictive circuit for generating a preposition predictive output, and a subtractor for subtractively combining sample values of the picture data and the preposition predictive output to produce then primary predicted values.
- 10. The system of claim 9, wherein said primary predictive circuit comprises an adder connected to said subtractor and to said preposition predictive circuit for additively combining said primary predicted values and the preposition predictive output to provide an adder output forming an input to said preposition predictive circuit.
- 11. The system of claim 8, wherein said secondary predictive circuit comprises a preposition predictive circuit for generating a preposition predictive output and a subtractor for subtractively combining primary predicted values and the preposition predictive output to produce the secondary predicted values.
- 12. The system of claim 11, further comprising adding means connected to said expansion decoding means and to said preposition predictive circuit for additively combining said preposition predictive output and said expansion-decoded differential values to obtain an adder output forming an input to said preposition predictive circuit.
- 13. A picture transmission system for sampling and compressing picture data in a television frame so as to code and transmit the same, said system comprising:
- differential value forming means responsive to sampling values obtained by sampling said picture data and to predictors between lines for forming differential values therebetween;
- compression-coding means for compression-coding said differential values from said differential value forming means to provide compression-coded differential values;
- expansion-decoding means for expansion-decoding said compression-coded differential values from said compression-coding means to obtain expansion-decoded differential values; and
- predictive means responsive to said expansion-decoded differential values for performing prediction to obtain said predictors between lines;
- wherein said picture data comprise a plurality of bits, said plurality of bits of picture data being divided into high-order bits and low-order bits, said predicting means performing prediction on the basis of said high-order bits and said predictors to obtain differential values of said high-order bits, said compression-coding means performing compression-coding on the basis of said differential values of said high-order bits.
- 14. The system of claim 13, wherein prediction is performed for said high-order bits to obtain differential values of said high-order bits, and thereafter prediction is performed on the basis of remaining said low-order bits and said predictors on picture data for a screen, said compression-coding means performing compression-coding on the basis of said differential values of said high-order bits, and thereafter compression-coding on the basis of said differential values of said low-order bits.
- 15. The system of claim 13, said system further comprising adding means connected between said expansion-decoding means and said predicting means for adding said predictors between lines from said predicting means and said decoded differential values from said expansion-decoding means to obtain added values, said predicting means processing said added values as predictors for subsequent sampling values.
- 16. The system of claim 15, wherein prediction is performed for said high-order bits to obtain differential values of said high-order bits, and thereafter prediction is performed on the basis of remaining said low-order bits and said predictors on picture data for a screen, said compression-coding means performing compression-coding on the basis of said differential values of said high-order bits, and thereafter compression-coding on the basis of said differential values of said low-order bits.
Priority Claims (3)
| Number |
Date |
Country |
Kind |
| 59-83146 |
Apr 1984 |
JPX |
|
| 59-130582 |
Jun 1984 |
JPX |
|
| 59-130583 |
Jun 1984 |
JPX |
|
Parent Case Info
This application is a continuation, of application Ser. No. 726,717, filed Apr. 24, 1985 now U.S. Pat. No. 4,703,348.
US Referenced Citations (8)
Foreign Referenced Citations (2)
| Number |
Date |
Country |
| 3111823 |
Mar 1982 |
DEX |
| 178874 |
Oct 1984 |
JPX |
Non-Patent Literature Citations (2)
| Entry |
| Mitrakos et al, "Nonlinear Image Processing for Optimum Composite Source Coding", IEE Proc., vol. 130, pt. G, No. 5, Aug. 1983. |
| Kawade et al, "A Variable Sampling Rate Coding Technique", UDC 621.394: 621.397.2: 654.173, pp. 97-104. |
Continuations (1)
|
Number |
Date |
Country |
| Parent |
726717 |
Apr 1985 |
|