发明名称 APPARATUS AND METHOD FOR MODULATION/DEMODULATION WITH CONSECUTIVE MINIMUM RUNLENGTH LIMITATION
摘要 1. A modulation apparatus for converting data with a basic data length of m bits into variable length code (d k; m, n; r) with a basic code length of n bits where d is a minimum run and k is a run length limit, said modulation apparatus characterized by having conversion means for converting input data into code in accordance with a conversion table wherein said conversion table enforces a conversion rule, according to which the remainder of division of a "1" count of an element in a data string by 2 having a value of 0 or 1 shall always be equal to the remainder of division of a "1" count of an element in the string of code words resulting from conversion of said data string by 2 and conversion codes of said conversion table comprise: basic codes for d = 1, k = 7, m = 2 and n = 3; first substitution codes for limiting the number of consecutive appearances of said minimum run d; and second substitution codes for keeping said run length limit k. 2. A modulation apparatus according to claim 1 characterized in that the number of pairs each comprising a data string and a code string composing said basic codes for a constraint length l of 1 is smaller than 4 (= 2<m> = 2<2>). 3. A modulation apparatus according to claim 1 characterized in that said basic codes of said conversion tables have a variable length structure. 4. A modulation apparatus according to claim 1 characterized in that said basic codes of said conversion tables include a code"*0*"wherein the symbol * is an indeterminate code which is "0" if an immediately preceding or succeeding code word is "1' and "1" if said immediately preceding or succeeding code word is "0", implying that said code "*0*" is either "000" or "101". 5. A modulation apparatus according to claim 1 characterized in that said conversion codes of said conversion tables include codes each determined by referring to an immediately succeeding string of code words or an immediately succeeding data string. 6. A modulation apparatus according to claim 1 characterized in that said conversion codes of said conversion tables include codes each determined by referring to an immediately succeeding string of code words or a string of code words of a specific type. 7. A modulation apparatus according to claim 5 characterized in that said codes each determined by referring to an immediately succeeding string of code words or an immediately succeeding data string is said first or second substitution codes. 8. A modulation apparatus according to claim 1 characterized in that the number of pairs each comprising a data string and a code string composing said basic codes for a constraint length i of 1 is equal to 4 (= 2<m> = 2<2>). 9. A modulation apparatus according to claim 1 characterized in that, for constraint lengths i of 2 and greater, said conversion codes are all said first and second substitution codes. 10. A modulation apparatus according to claim 1 characterized in said conversion codes for a constraint length i of 2 are codes for keeping said minimum run d at 1. 11. A modulation apparatus according to claim 1 characterized in that said conversion codes of said conversion tables include codes each determined by referring to an immediately preceding string of code words. 12. A modulation apparatus according to claim 1 characterized in that said apparatus further has a synchronization signal inserting means for inserting a synchronization signal including a unique pattern not included in said conversion codes of said conversion table into any arbitrary position in said string of code words. 13. A modulation apparatus according to claim 12 characterized in that said unique pattern is a pattern that breaks said maximum run k. 14. A modulation apparatus according to claim 12 characterized in that said unique pattern is a pattern that keeps said minimum run d. 15. A modulation apparatus according to claim 12 characterized in that a unique pattern in said synchronization signal comprises 1 code word at the head thereof serving as a connection bit with a code word resulting from conversion of up to immediately preceding data, a second bit for keeping said minimum run d and a third bit. 16. A modulation apparatus according to claim 12 characterized in that said synchronization signal is at least 12 code words in size. 17. A modulation apparatus according to claim 12 characterized in that, for a synchronization signal of at least 21 code words in size, said synchronization signal includes at least 2 patterns with a maximum run k of 8. 18. A modulation apparatus according to claim 12 characterized in that said conversion codes of said conversion table include termination codes each for terminating said code resulting from conversion. 19. A modulation apparatus according to claim 18 characterized in that said termination codes are prescribed for said basic codes with a constraint length i, for which the number of pairs each comprising a data string and a code string composing said basic codes is smaller than 4 (= 2<m> = 2<2>), and enforce a conversion rule, according to which the remainder of division of a"1"count of an element in a data string by 2 having a value of 0 or 1 shall always be equal to the remainder of division of a "1" count of an element in the string of code words resulting from conversion of said data string by 2. 20. A modulation apparatus according to claim 18 characterized in that, in order to identify said termination code, 1 code word at the head of said synchronization signal pattern serving as a connection bit is set at "1" when said termination code is used and at "0" when said termination code is not used. 21. A modulation apparatus according to claim 12 characterized in that said unique pattern is sandwiched by 3 bits at the head of said synchronization signal and 3 bits at the tail of said synchronization signal and said 3 bits at said head and 3 bits at said tail are each used as a junction comprising mixed data and connection bits. 22. A modulation apparatus according to claim 12 characterized in that the leading first one of 3 bits at the head of said synchronization signal has a value representing data words prior to conversion viewed in m-bit units; the next second one of said 3 bits is set at "1" to prescribe said synchronization signal; the leading first one of 3 bits at the tail of said synchronization signal is set at "0" to prescribe said synchronization signal; and the next second one of said 3 bits at said tail has a value representing said data words prior to conversion viewed in m-bit units. 23. A modulation apparatus according to claim 1 characterized in that said apparatus further has DSV control means for controlling a DSV of input data and supplying said DSV to said conversion means. 24. A modulation apparatus according to claim 1 characterized in that said conversion means comprises: a first code detecting means for detecting said first substitution codes for limiting the number of consecutive appearances of said minimum run d; and a second code detecting means for detecting said second substitution codes for keeping run length limit. 25. A modulation method to be adopted in a modulation apparatus for converting data with a basic data length of m bits into variable length code (d, k; m, n; r) with a basic code length of n bits where d is a minimum run and k is a run length limit, said. modulation method characterized by including a conversion step of converting input data into code in accordance with a conversion table wherein said conversion table enforces a conversion rule, according to which the remainder of division of a "1" count of an element in a data string by 2 having a value of 0 or 1 shall always be equal to the remainder of division of a "1" count of an element in the string of code words resulting from conversion of said data string by 2 and conversion codes of said conversion table comprise: basic codes for d = 1, k = 7, m = 2 and n = 3; first substitution codes for limiting the number of consecutive appearances of said minimum run d ; and second substitution codes for keeping said run length limit k. 26. A program presenting medium for presenting a program implementing processing including a conversion step of converting input data into code in accordance with a conversion table data in a modulation apparatus for converting data with a basic data length of m bits into variable length code (d, k; m, n; r) with a basic code length of n bits where d is a minimum run and k is a run length limit, said program presenting medium characterized in that said conversion table enforces a conversion rule, according to which the remainder of division of a "1" count of an element in a data string by 2 having a value of 0 or 1 shall always be equal to the remainder of division of a "1" count of an element in the string of code words resulting from conversion of said data string by 2 and conversion codes of said conversion table comprise: basic codes for d = 1, k = 7, m = 2 and n = 3; first substitution codes for limiting the number of consecutive appearances of said minimum run d; and second substitution codes for keeping said run length limit k. 27. A demodulation apparatus for converting variable length code (d, k; m, n; r) with a basic code length of n bits into data with a basic data length of m bits where d is a minimum run and k is a run length limit, said demodulation apparatus characterized by having conversion means for converting input code into data in accordance with a conversion table wherein said conversion table enforces a conversion rule, according to which the remainder of division of a "1" count of an element in a data string by 2 having a value of 0 or 1 shall always be equal to the remainder of division of a "1" count of an element in the string of code words resulting from conversion of said data string by 2 and conversion codes of said conversion table comprise: basic codes for d = 1, k = 7, m = 2 and n = 3; first substitution codes
申请公布号 EA002209(B1) 申请公布日期 2002.02.28
申请号 EA20000000175 申请日期 1999.05.25
申请人 KONINKLIJKE PHILIPS ELECTRONICS N.V.;SONY CORPORATION 发明人 SCHOUHAMER IMMINK, KORNELIS, A.;KAHLMAN, JOSEPH, A.,H.,M.;VAN DER EDEN, GIJSLBERT, J.;NAKAGAWA, T.;SHINPUKU, Y.;NAOYARA, T.;NAKAMURA, K.
分类号 H03M7/14;G06F7/00;G11B;G11B5/60;G11B20/14;G11B21/21;H03M;H03M5/14;H03M7/00;H03M7/02;H03M7/40;H04L27/00;H04L27/04 主分类号 H03M7/14
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