EP0807304A1

Time compression/expansion without pitch change

Abstract

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Projected expiry passed 12 October 2015, 11 years ago.

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1 claim: 1 independent, 0 dependent

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    Claims of equivalent WO 9612270 A1 WHAT IS CLAIMED Claim 1. A method of converting an input signal having frequency related information reproduced over a first time period to an output signal having substantially the same frequency related information reproduced over a second, different time period, said method comprising determining the ratio between the second time period and first time period and then altering the alpha length of the output signal by said ratio. Claim 2. The method of Claim 1 characterized in that altering the alpha length of the output signal includes digitally sampling one of the input or output signal and then modifying the number of samples of the digitally sampled signal. Claim 3. The method of Claim 2 characterized in that at least said number of samples is stored in a memory. Claim 4. The method of Claim 3 characterized in that the number of samples are modified prior to storage in memory. Claim 5. The method of Claim 3 characterized in that the number of samples are modified after storage in memory. Claim 6. The method of Claim 3 wherein at least said number of samples are stored in a memory having a limited value and characterized by the addition of a resetting of the memory upon the comparison of two signals. Claim 7. The method of Claim 6 characterized in that the output signal is compared to the input signal to trigger resetting. Claim 8. The method of Claim 6 characterized in that at least said number of samples is stored in two memories having outputs and reset areas, one of which is active for modifying the number of samples, with said resetting of the memories including switching from the active memory to the reset area in the inactive memory. Claim 9. The method of Claim 8 characterized in that the output of the inactive memory is compared to the active memory to trigger resetting. Claim 10. The method of Claim 6 characterized in that said switching includes a time fade. Claim 11. The method of Claim 1 whereof the output signal needs to be synchronized with associated channel and characterized by altering the alpha length of the output signal to also synchronize it to the associated channel. Claim 12. An apparatus for converting an input signal having frequency related information reproduced over a first time period to an output signal having substantially the same frequency related information reproduced over a second, different time period, said apparatus comprising means for determining the ratio between the second time period and first time period and means for altering the alpha length of the output signal by said ratio. Claim 13. The apparatus of Claim 12 characterized in that said means for altering the alpha length of the output signal includes means for digitally sampling one of the input or output signal and means for modifying the number of samples of the digitally sampled signal. Claim 14. The apparatus of Claim 13 characterized by the addition of means for storing at least said number of samples in a memory. Claim 15. The apparatus of Claim 14 characterized in that the number of samples are modified prior to storage in memory. Claim 16. The apparatus of Claim 14 characterized in that the number of samples are modified after storage in memory. Claim 17. The apparatus of Claim 14 wherein at least said number of samples are stored in a memory having a limited value and characterized by the addition of a means for resetting of memory upon the comparison of two signals. Claim 18. The apparatus of Claim 17 characterized in that the output signal is compared to the input signal to trigger resetting. Claim 19. The apparatus of Claim 17 characterized by the addition of means to store at least said number of samples in two memories having outputs and reset areas, one of which is active for modifying the number of samples, with said means for resetting the memories including means for switching from the active memory to the reset area of the inactive memory. Claim 20. The apparatus of Claim 17 characterized in that an output of the inactive memory is compared to the active memory to trigger resetting. Claim 21. The apparatus of Claim 17 characterized in that said means for switching includes a time fade. Claim 22. The method of Claim 12 whereof the output signal needs to be synchronized with an associated channel and characterized by said means for altering the alpha length of the output signal including means to synchronize it to the associated channel. Claim 23. A method of synchronizing a signal having frequency related information timed relative to a first time reference to a second signal on an associated channel timed relative to the same time reference which signal may or may not be synchronized to the second signal at any point in actual time, said method comprising determining the time differential between the signal and the second signal on the associated channel and then altering the alpha length of the signal in response to time differential. Claim 24. The method of Claim 23 wherein the associated channel includes a synchronization pulse and characterized by the determination of the time differential includes the synchronization pulse. Claim 25. The method of Claim 23 characterized in that altering the alpha length of the signal includes digitally sampling one of the input or output signal and then modifying the number of samples of the digitally sampled signal. Claim 26. The method of Claim 25 characterized in that at least said number of samples is stored in a memory. Claim 27. The method of Claim 25 wherein at least said number of samples are stored in a memory having a limited value and characterized by the addition of a resetting of the memory upon the comparison of two signals. Claim 28. The method of Claim 25 wherein the second signal is a stored signal normally reproduced over a timer period differing from real time and the altering the alpha length of the signal includes compensating for the difference between the time period and real time. Claim 29. An apparatus of synchronizing a signal having frequency related information timed relative to a first time reference to a second signal on an associated channel timed relative to the same time reference which signal may or may not be synchronized to the second signal at any point in actual time, said apparatus comprising means for determining the time differential between the signal and the second signal on the associated channel and means for altering the alpha length of the signal in response to time differential. Claim 30. The apparatus of Claim 29 wherein the associated channel includes a synchronization pulse and characterized by the means for determining the time differential includes means to recognize the synchronization pulse. Claim 31. The apparatus of Claim 29 characterized in that means for altering the alpha length of the signal includes means for digitally sampling one of the input or output signal and means for modifying the number of samples of the digitally sampled signal. Claim 32. The apparatus of Claim 31 characterized in that at least said number of samples is stored in a memory. Claim 33. The apparatus of Claim 31 wherein at least said number of samples are stored in a memory having a limited value and characterized by the addition of means for resetting of the memory upon the comparison of two signals. Claim 34. The apparatus of Claim 23 wherein the second signal is a stored signal normally reproduced over a time period differing from real time and said means for altering the alpha length of the signal including means for compensating for the difference between the time period and real time. Claim 35. A method of converting an input signal having frequency related information reproduced over a first time period to an output signal having substantially the same frequency related information reproduced over a second, different time period, said method comprising getting an input signal, over sampling said input signal through an over sampling digital coding scheme device to produce a first set of digital samples, determining the ratio between the second time period and the first time period, modifying said first set of said digital samples in a signal modification circuit in accord with said difference ratio to produce a second set of digital samples, converting said second set of digital samples to produce an output signal having an alpha length altered in the signal modification circuit by said difference ratio, and remitting said output signal. Claim 36. The method of claim 35 characterized in that the input signal is clocked relative to an input clock and the output signal is clocked relative to an output clock and characterized by the addition of clocking the input signal with the output clock prior to said oversampling. Claim 37. The method of claim 35 characterized in that the input signal is clocked relative to an input clock and the output signal is clocked relative to an output clock and characterized by the addition of clocking the first set of digital samples relative to the output clock prior to said modification in the signal modification circuit. Claim 38. The method of claim 35 characterized in that the input signal is clocked relative to an input clock and the output signal is clocked relative to an output clock and characterized by the addition of clocking said second set of digital samples relative to the output clock prior to said converting. Claim 39. The method of Claim 35 characterized in that altering the alpha length of the output signal includes digitally sampling one of the input or output signal and then modifying the number of samples of the digitally sampled signal. Claim 40. The method of Claim 39 characterized in that at least said number of samples is stored in a memory. Claim 41. The method of Claim 40 wherein at least said number of samples are stored in a memory having a limited value and characterized by the addition of a resetting of the memory upon the comparison of two signals. Claim 42. The method of Claim 41 characterized in that at least said number of samples is stored in two memories having outputs and reset areas, one of which is active for modifying the number of samples, with said resetting of the memories including switching from the active memory to the reset area of the inactive memory. Claim 43. The method of Claim 42 characterized in that there is a first modification circuit associated with one of the memories and a second signal modification circuit associated with the other of the memories and characterized by the additional step of cross fading between the output of the first signal modification circuit and the second signal modification circuit. Claim 44. The method of Claim 42 characterized in that the output of said first modification circuit is compared to said output of said second modification circuit to trigger resetting. Claim 45. The method of Claim 35 whereof the output signal needs to be synchronized with associated channel and characterized by altering the alpha length of the output signal to also synchronize it to the associated channel. Claim 46. An apparatus for converting an input signal having frequency related information reproduced over a first time period to an output signal having substantially the same frequency related information reproduced over a second, different time period, said apparatus comprising means to get an input signal, means for over sampling said input signal through an over sampling digital coding scheme device to produce a first set of digital samples, means for determining the ratio between the second time period and the first time period, means for modifying said first set of said digital samples in a signal modification circuit in accord with said difference ratio to produce a second set of digital samples, means for converting said second set of digital samples to produce an output signal having an alpha length altered in the signal modification circuit by said difference ratio, and remitting said output signal. Claim 47. The apparatus of claim 46 characterized in that the input signal is clocked relative to an input clock and the output signal is clocked relative to an output clock and characterized by the addition of means to clock the input signal with the output clock prior to said oversampling. Claim 48. The apparatus of claim 46 characterized in that the input signal is clocked relative to an input clock and the output signal is clocked relative to an output clock and characterized by the addition of means to clock the first set of digital samples relative to the output clock prior to said modification in the signal modification circuit. Claim 49. The apparatus of claim 46 characterized in that the input signal is clocked relative to an input clock and the output signal is clocked relative to an output clock and characterized by the addition of means to clock said second set of digital samples relative to the output clock prior to said converting. Claim 50. The apparatus of claim 46 characterized in that said means for altering the alpha length of the output signal includes means to digitally sampling one of the input or output signals and means to modify the number of samples of the digitally sampled signal. Claim 51. The apparatus of Claim 46 characterized in that at least said number of samples is stored in a memory. Claim 52. The apparatus of Claim 51 wherein at least said number of samples are stored in a memory having a limited value and characterized by the addition of means for resetting of the memory upon the comparison of two signals. Claim 53. The apparatus of Claim 52 characterized in that at least said number of samples is stored in two memories having outputs and reset areas, one of which is active for modifying the number of samples, with said means for resetting of the memories including means to change over from the active memory to the reset area of the inactive memory. Claim 54. The apparatus of Claim 53 characterized in that there is a first modification circuit associated with one of the memories and a second signal modification circuit associated with the other of the memories and characterized by the additional step of means for cross fading between the output of the first signal modification circuit and the second signal modification circuit. Claim 55. The apparatus of Claim 53 characterized in that the output of said first modification circuit is compared to said output of said second modification circuit to trigger resetting. Claim 56. The apparatus of Claim 46 whereof the output signal needs to be synchronized with associated channel and characterized by said means for altering the alpha length of the output signal including means to synchronize it to the associated channel. Claim 57. A method for increasing the apparent delay length of a memory having a beginning and an end, said method comprising:A) inputting an input signal into the memory, B) utilizing the memory to produce first and second signals from a location, position, or point which may include the beginning and the end of the memory respectively, C) utilizing said first signal for producing an output signal for a first period of time traversing the memory from a reset area while simultaneously comparing two signals, D) changing over to utilizing said second signal for producing the output signal when said two signals are similar, said second signal beginning in said reset area, E) utilizing said second signal for producing an output signal for a second period of time traversing the memory from a reset area while simultaneously comparing said two signals for similarity, F) changing over to utilizing said first signal for producing an output signal when said two signals have similar signal shape, said first signal beginning in said reset area, G) then repeating steps C to F so as to change the apparent delay length of the memory. Claim 58. The method of claim 57 wherein the memory includes a single RAM memory array. Claim 59. The method of claim 57 wherein the memory includes two RAM memory arrays. Claim 60. The method of claim 57 wherein the first signal has an alpha length and wherein utilizing said first signal for producing an output signal including a modification circuit that modifies the alpha length of said first signal to produce the output signal. Claim 61. The method of claim 57 wherein the second signal has an alpha length and wherein utilizing said second signal for producing an output signal including a modification circuit that modified the alpha length of said second signal to produce the output signal. Claim 62. The method of claim 60 wherein the alpha length is compressed and characterized in that said first signal is reset to the beginning of the memory. Claim 63. The method of claim 60 wherein the alpha length is contracted and characterized in that said first signal is reset to the end of the memory. Claim 64. The method of claim 61 wherein the alpha length is compressed and characterized in that said second signal is reset to the beginning of the memory. Claim 65. The method of claim 61 wherein the alpha length is contracted and characterized in that said second signal is reset to the end of the memory. Claim 66. The method of claim 57 wherein said two signals compared for similarity includes said first and said second signals. Claim 67. The method of claim 57 wherein said two signals compared for similarity include the input and output signal. Claim 68. A apparatus for increasing the apparent delay length of a memory having a beginning and an end, said apparatus comprising: A) means for inputting an input signal into the memory, B) means for utilizing the memory to produce first and second signals from a location, position, or point which may include the beginning and the end of the memory respectively, C) means for utilizing said first signal for producing an output signal for a first period of time traversing the memory from a reset area while simultaneously comparing two signals, D) means for changing over to utilizing said second signal for producing the output signal when said two signals are similar, said second signal beginning in said reset area, E) means for utilizing said second signal for producing an output signal for a second period of time traversing the memory from a reset area while simultaneously comparing said two signals for similarity, and F) means for changing over to utilizing said first signal for producing an output signal when said two signals have similar signal shape, said first signal beginning in said reset area, G) then repeating steps C to F so as to change the apparent delay length of the memory. Claim 69. The apparatus of claim 68 wherein the memory includes a single RAM memory array. Claim 70. The apparatus of claim 68 wherein the memory includes two RAM memory lines. Claim 71. The apparatus of claim 68 wherein the first signal has an alpha length and wherein said means for utilizing said first signal for producing an output signal includes a modification circuit means that modifies the alpha length of said first signal to produce the output signal. Claim 72. The apparatus of claim 68 wherein the second signal has an alpha length and wherein said means for utilizing said second signal for producing an output signal includes a modification circuit means that modifies the alpha length of said second signal to produce the output signal. Claim 73. The apparatus of claim 71 wherein the alpha length is compressed and characterized by means to reset said first signal to the beginning of the memory. Claim 74. The apparatus of claim 71 wherein the alpha length is contracted and characterized by means to reset said first signal to the end of the memory. Claim 75. The apparatus of claim 72 wherein the alpha length is compressed and characterized by means to reset said second signal to the beginning of the memory. Claim 76. The apparatus of claim 72 wherein the alpha length is contracted and characterized by means to reset said second signal to the end of the memory. Claim 77. The apparatus of claim 68 wherein said two signals compared for similarity includes said first and said second signals. Claim 78. The apparatus of claim 68 wherein said two signals compared for similarity include the input and output signal. Claim 79. A method of converting -an input signal having frequency related information reproduced over a first time period to an output signal having frequency related information reproduced over a second time period, said method comprising determining the ratio between the second frequency and first frequency and then altering the alpha length of the output signal by said ratio. Claim 80. The method of claim 79 characterized in that the output signal is reproduced over a different time period than the input signal and said determining the ratio between the second frequency and first frequency includes comparing the time period of reproduction of the output signal to the time period of reproduction of the input signal in order to provide an output signal having the same frequency related information as the input signal now reproduced over a second different time period. Claim 81. The method of claim 79 wherein the input signal has frequency information to be synchronized to a second signal on an associated channel and characterized by the addition of determining the time differential of synchronization between the input signal and the second signal on the associated channel and then using said time differential in determining the ratio between the second frequency and the first frequency so as to synchronize the output signal to the second signal. Claim 82. The method of claim 1 wherein the input signal is an intermittent signal and characterized by the addition of altering the intermittent input signal into a substantially continuous output signal. Claim 83. The method of claim 1 wherein the method is utilized to transfer a signal over a lower bandwidth transfer or storage means and characterized by the addition of passing the output signal over the lower bandwidth transfer or storage means, determining the ratio between the second time period and the time period of a desired signal, and then altering the alpha length of the output signal by said ratio to produce a desired signal. Claim 84. The method of claim 83 wherein the input signal is an intermittent signal and characterized by the addition of altering the intermittent input signal into a substantially continuous output signal. Claim 85. The method of claim 1 wherein the input signal is a continuous signal and characterized by the addition of altering the continuous input signal into an intermittent output signal. Claim 86. The method of claim 1 wherein the altering of the alpha length of the output signal by said ratio occurs in real time. Claim 87. The method of claim 1 characterized in that altering the alpha length of the output signal by said ratio includes digital sampling at a clocking rate and changing the digital sampling and clocking rate of the output signal in respect to those of the input signal. Claim 88. The method of claim 1 characterized by the addition of also determining the output frequency and the input frequency, determining the output frequency time product and the input frequency time product, determining the difference ratio by dividing the output frequency time product by the input frequency time product, and altering the alpha length of the output signal by said difference ratio. 2270 PCMJS95/14631 75 Claim 89. The method of claim 1 characterized by the addition of deleting blocks of signal information from the input signal. Claim 90. The method of claim 1 characterized by the addition of storing the input signal and adding blocks of signal information to the input signal. Claim 91. The method of claim 6 characterized in that the resetting occurs during periods of no substantive signal information on either of the two signals. Claim 92. The method of claim 6 characterized in that the resetting occurs during periods of substantially identical signal information on either of the two signals. Claim 93. The method of claim 6 characterized in that at least one of said two signals is selected from a plurality of signals. Claim 94. The method of claim 6 characterized in that said comparison utilizes at least one of look forward and look back comparisons to optimize the comparison with time displaced information as well as current signal status. Claim 95. The method of claim 1 characterized in that the input signal is referenced to a first clock rate and the output signal is referenced to a second clock rate and said first clock rate being different than said second clock rate. Claim 96. The method of claim 1 characterized in that the input signal is scanned from a storage medium and altering the alpha length of the output signal includes controlling the scanning of the input signal from the storage medium. Claim 97. The method of claim 1 characterized by the addition of the output signal being reccrded at variable rates and the determining the ratio between the second time period and the first time period including compensating for the variable rates of output signal recording. Claim 98. The method of claim 6 characterized in that said resetting is gradual. Claim 99. The method of claim 6 characterized in that said two signals are compared by slope and instantaneous amplitude. Claim 100. The method of claim 23 characterized in that there are multiple signals timed relative to the same time reference, which multiple signals may or may not be synchronized at any point in actual time, and said method further including determining the time differential between said multiple signals and altering the alpha length of at least one of the multiple signals to resynchronize said multiple signals. Claim 101. The apparatus of claim 12 wherein the input signal is an intermittent signal and characterized by the addition of means for altering the intermittent input signal into a substantially continuous output signal. Claim 102. The apparatus of claim 12 wherein the apparatus is utilized to transfer a signal over a lower bandwidth transfer or storage means and characterized by the addition of means for passing the output signal over the lower bandwidth transfer or storage means, means for determining the ratio between the second time period and the time period of a desired signal, and means for altering the alpha length of the output signal by said ratio to produce a desired signal. Claim 103. The apparatus of claim 102 wherein the input signal is an intermittent signal and characterized by the addition of means for altering the intermittent input signal into a substantially continuous output signal. Claim 104. The apparatus of claim 12 wherein the input signal is a continuous signal and characterized by the addition of means for altering the continuous input signal into an intermittent output signal. Claim 105. The apparatus of claim 1 wherein said means for altering of the alpha length of the output signal by said ratio operates in real time. Claim 106. The apparatus of claim 1 characterized in that said means for altering the alpha length of the output signal by said ratio ' includes a digital sampling means that operates at a clocking rate and means for changing the digital sampling and clocking rate of the output signal in respect to those of the input signal. Claim 107. The apparatus of claim 1 characterized by the addition of means for determining the output frequency and the input frequency, means for determining the output frequency time product and the input frequency time product, means for determining the difference ratio by dividing the output frequency time product by the input frequency time product, and means for altering the alpha length of the output signal by said difference ratio. Claim 108. The apparatus of claim 1 characterized by the addition of means for deleting blocks of signal information from the input signal. Claim 109. The apparatus of claim 1 characterized by the addition of means for storing the input signal and means for adding blocks of signal information to the input signal. Claim 110. The apparatus of claim 17 characterized in that said means for resetting operates during periods of no substantive signal information on either of the two signals. Claim 111. The apparatus of claim 17 characterized in that said means for resetting operates during periods of substantially identical signal information on either of the two signals. Claim 112. The apparatus of claim 17 characterized by the addition of means to select at least one of said two signals from a plurality of signals. Claim 113. The apparatus of claim 17 characterized in that said comparison means includes at least one of look forward comparison means and look back comparison means to optimize the comparison with time displaced information as well as current signal status. Claim 114. The apparatus of claim 1 characterized in that the input signal is referenced to a first clock rate and the output signal is referenced to a second clock rate and said first clock rate being different than said second clock rate. Claim 115. The apparatus of claim 1 characterized by the addition of means to scan the input signal from a storage medium and said means for altering the alpha length of the output signal including means for controlling the scanning of the input signal from the storage medium. Claim 116. The apparatus of claim 1 characterized by the addition of means to record the output signal at variable rates and said means for determining the ratio between the second time period and the first time period including means for compensating for the variable rates of output signal recording. Claim 117. The apparatus of claim 17 characterized in that said means for resetting of memory operates gradually. Claim 118. The apparatus of claim 17 characterized in that said means for resetting of memory compares said two signals by slope and instantaneous amplitude. Claim 119. The apparatus of claim 29 characterized in that there are multiple signals timed relative to the same time reference, which multiple signals may or may not be synchronized at any point in actual time, and said apparatus further including means for determining the time differential between said multiple signals and means for altering the alpha length of at least one of the multiple signals to resynchronize said multiple signals. Claim 120. The method of claim 35 wherein the input signal is an intermittent signal and characterized by the addition of altering the intermittent input signal into a substantially continuous output signal. Claim 121. The method of claim 35 wherein the method is utilized to transfer a signal over a lower bandwidth transfer or storage means and characterized by the addition of passing the output signal over the lower bandwidth transfer or storage means, determining the ratio between the second time period and the time period of a desired signal, and then altering the alpha length of the output signal by said ratio to produce a desired signal. Claim 122. The method of claim 121 wherein the input signal is an intermittent signal and characterized by the addition of altering the intermittent input signal into a substantially continuous output signal. Claim 123. The method of claim 35 wherein the input signal is a continuous signal and characterized by the addition of altering the continuous input signal into an intermittent output signal. Claim 124. The method of claim 35 wherein the altering of the alpha length of the output signal by said difference ratio in said signal modification circuit occurs in real time. Claim 125. The method of claim 35 characterized in that altering the alpha length of the output signal by said difference ratio in said signal modification circuit includes digital sampling at a clocking rate and changing the digital sampling and clocking rate of the output signal in respect to those of the input signal. Claim 126. The method of claim 35 characterized by the addition of also determining the output frequency and the input frequency, determining the output frequency time product and the input frequency time product, and determining the difference ratio by dividing the output frequency time product by the input frequency time product. Claim 127. The method of claim 35 characterized by the addition of deleting blocks of signal information from the input signal. Claim 128. The method of claim 36 characterized by the addition of storing the input signal and adding blocks of signal information to the input signal. Claim 129. The method of claim 41 characterized in that the resetting occurs during periods of no substantive signal information on either of the two signals. Claim 130. The method of claim 41 characterized in that the resetting occurs during periods of substantially identical signal information on either of the two signals. Claim 131. The method of claim 41 characterized in that at least one of said two signals is selected from a plurality of signals. Claim 132. The method of claim 41 characterized in that said comparison utilizes at least one of look forward and look back comparisons to optimize the comparison with time displaced information as well as current signal status. Claim 133. The method of claim 35 characterized in that the input signal is referenced to a first clock rate and the output signal is referenced to a second clock rate and said first clock rate being different than said second clock rate. Claim 134. The method of claim 35 characterized in that the input signal is scanned from a storage medium and altering the alpha length of the output signal includes controlling the scanning of the input signal from the storage medium. Claim 135. The method of claim 35 characterized by the addition of the output signal being recorded at variable rates and the determining the ratio between the second time period and the first time period including compensating for the variable rates of output signal recording. Claim 136. The method of claim 41 characterized in that said resetting is gradual. Claim 137. The method of claim 41 characterized in that said two signals are compared by slope and instantaneous amplitude. Claim 138. The apparatus of claim 46 wherein the input signal is an intermittent signal and characterized by the addition of means for altering the intermittent input signal into a substantially continuous output signal. Claim 139. The apparatus of claim 46 wherein the apparatus is utilized to transfer a signal over a lower bandwidth transfer or storage means and characterized by the addition of means for passing the output signal over the lower bandwidth transfer or storage means, means for determining the ratio between the second time period and the time period of a desired signal, and means for altering the alpha length of the output signal by said ratio to produce a desired signal. Claim 140. The apparatus of claim 139 wherein the input signal is an intermittent signal and characterized by the addition of means for altering the intermittent input signal into a substantially continuous output signal. Claim 141. The apparatus of claim 46 wherein the input signal is a continuous signal and characterized by the addition of means for altering the continuous input signal into an intermittent output signal. Claim 142. The apparatus of claim 46 wherein said means for altering of the alpha length of the output signal by said ratio operates in real time. Claim 143. The apparatus of claim 46 characterized in that said means for altering the alpha length of the output signal by said ratio includes a digital sampling means that operates at a clocking rate and means for changing the digital sampling and clocking rate of the output signal in respect to those of the input signal. Claim 144. The apparatus of claim 46 characterized by the addition of means for determining the output frequency and the input frequency, means for determining the output frequency time product and the input frequency time product, and means for determining the difference ratio by dividing the output frequency time product by the input frequency time product. Claim 145. The apparatus of claim 46 characterized by the addition of means for deleting blocks of signal information from the input signal. Claim 146. The apparatus of claim 46 characterized by the addition of means for storing the input signal and means for adding blocks of signal information to the input signal. Claim 147. The apparatus of claim 52 characterized in that said means for resetting operates during periods of no substantive signal information on either of the two signals. Claim 148. The apparatus of claim 52 characterized in that said means for resetting operates during periods of substantially identical signal information on either of the two signals. Claim 149. The apparatus of claim 52 characterized by the addition of means to select at least one of said two signals from a plurality of signals. Claim 150. The apparatus of claim 52 characterized in that said comparison means includes at least one of look forward comparison means and look back comparison means to optimize the comparison with time displaced information as well as current signal status. Claim 151. The apparatus of claim 46 - characterized in that the input signal is referenced to a first clock rate and the output signal is referenced to a second clock rate and said first clock rate being different than said second clock rate. Claim 152. The apparatus of claim 46 characterized by the addition of means to scan the input signal from - storage medium and said means for altering the alpha length of the output signal including means for controlling the scanning of the input signal from the storage medium. Claim 153. The apparatus of claim 46 characterized by the addition of means to record the output signal at variable rates and said means for determining the ratio between the second time period and the first time period including means for compensating for the variable rates of output signal recording. Claim 154. The apparatus of claim 52 characterized in that said means for resetting of memory operates gradually. Claim 155. The apparatus of claim 52 characterized in that said means for resetting of memory compares said two signals by slope and instantaneous amplitude.