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GPS receiver with extended security |
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Control propulsion unit, especially for exerting transverse forces on a missile |
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Bit allocation among carriers in multicarrier communications
| Details |
Inventors: Shapiro, Jerome M.; Sandberg, Stuart D.; Tzannes, Marcos C.;
Assignee: Aware, Inc. (Bedford, MA)
Primary Examiner: Liu; Shuwang
Assistant Examiner:
Attorney, Agent or Firm: Miles & Stockbridge P., Vick; Jason H.
A technique is provided that may be employed in multicarrier communications to improve the efficiency of error correction using symbol-oriented error correction methodologies, by reducing the number of error correction code symbols (102, 104 . . . ) that are received in error that result from a single channel error. More specifically, in this technique, bits from the symbols are allocated among the channels in such a way as to minimize the number of respective channels that are allocated bits belonging to more that one respective symbol during a respective transmission period. |
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DETAILED DESCRIPTION Accordingly, the present invention provides a technique that may be employed in multicarrier communications to improve the efficiency of error correction using symbol-oriented error correction methodologies, by reducing the number of symbol errors (e. g. , FECC symbol errors) that result from individual channel errors. More specifically, in the technique of the present invention, bits from the symbols are allocated among the channels in such a way as to minimize the number of respective channels that are allocated bits belonging to more than one respective symbol during a respective transmission period. As will be appreciated by those skilled in the art, if the error correction code methodology being employed in the communications is symbol-oriented, then the likelihood of errors being correctable increases if single channel errors result in fewer symbols being received in error. Thus, since in the present invention, the number of channels that are assigned respective bits from more than one respective symbol during a respective transmission period is minimized, the likelihood that an error on a given channel during that transmission period will introduce errors into more than one symbol is reduced compared to the prior art. Thus, according to the present invention, it is more likely, compared to the prior art, that channel errors will be correctable. Advantageously, this permits multicarrier communications according to the present invention to exhibit improved error correction and data communication efficiency compared to the prior art. In one embodiment of the present invention which is used to advantage in a multicarrier data modulation method, a plurality of carrier signals are provided for use in modulating data bit signals of a serial input data stream. The data bit signals are mapped to FECC symbols, with each symbol containing a finite number of bit signals. Each FECC symbol may have a respective size of one byte. Each carrier signal is associated with a respective transmission channel
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