ANSI SCTE 56:2016 pdf free download – Digital Multiprogram Distribution by Satellite

02-22-2022 comment

ANSI SCTE 56:2016 pdf free download – Digital Multiprogram Distribution by Satellite
NOTE: This document is identical to SCTE 56 2011 except for informative components such as the title page, NOTICE text, headers and footers. No changes have been made to any text in the document beyond this point, other than headers and footers. Satellite Digital TV systems have shown their advantages with respect to the analog TV allowing a more efficient use of the satellite frequency spectrum available and establishing a more robust scenario with respect to interference protection. With the aim to promote the convergence on a worldwide standard for satellite digital multi- program reception systems for television, sound and data services, the systems for the reception of Digital Multiprogram Distribution by Satellite are described. These descriptions configure the universal elements of the satellite Integrated Receiver Decoder (IRD). The universal elements of the satellite IRD are capable of receiving emissions from System I, and System II. The common and specific elements of each system have been analyzed and it has been concluded on the feasibility of the implementation of the universal elements of a Satellite IRD. This document analyses the common elements among existing systems, defines and describes the functions of a generic system model and identifies the processes and the minimum set of parameters of the various sub-systems of the universal elements of a Satellite IRD. The feasibility of the implementation of the common elements in a satellite IRD has been demonstrated in consultation with the industry.
3.1.4 Sync byte decoder
This universal element shall decode the sync bytes. This decoder provides synchronization information for the deinterleaving. It is also in a position to recover π ambiguity of QPSK demodulator (not detectable by the Viterbi decoder). Specific characteristics are provided in § 5.3.
3.1.5 Convolutional deinterleaver
This universal element allows the error bursts at the output of the inner decoder to be randomized on a byte basis in order to improve the burst error correction capability of the outer decoder. This universal element of a satellite IRD shall be capable of receiving Ramsey Type III (Forney approach) (I=12, M=17 and J=19) convolutional interleaver systems, as specifically defined in § 5.4.
3.1.7 Energy dispersal removal
This universal element of a satellite IRD recovers the user data by removing the randomizing pattern used for energy dispersal purposes. It can be implemented in such a way to be capable of derandomizing signals where the derandomization process has been placed before deinterleaving or after RS decoder. This universal element of a satellite IRD may implement a bypass to this feature. Specific characteristics are provided in § 5.6.

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