QPSK block-modulation codes for unequal error protection

IEEE Transactions on Information Theory(1995)

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摘要
Unequal error protection (UEP) codes find applications in broadcast channels, as well as in other digital communication systems, where messages have different degrees of importance. Binary linear UEP (LUEP) codes combined with a Gray mapped QPSK signal set are used to obtain new efficient QPSK block-modulation codes for unequal error protection. Several examples of QPSK modulation codes that have the same minimum squared Euclidean distance as the best QPSK modulation codes, of the same rate and length, are given. In the new constructions of QPSK block-modulation codes, even-length binary LUEP codes are used. Good even-length binary LUEP codes are obtained when shorter binary linear codes are combined using either the well-known |u¯|u¯+v¯|-construction or the so-called construction X. Both constructions have the advantage of resulting in optimal or near-optimal binary LUEP codes of short to moderate lengths, using very simple linear codes, and may be used as constituent codes in the new constructions. LUEP codes lend themselves quite naturally to multistage decoding up to their minimum distance, using the decoding of component subcodes. A new suboptimal two-stage soft-decision decoding of LUEP codes is presented and its application to QPSK block-modulation codes for UEP illustrated
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关键词
good even-length binary luep,luep code,binary linear uep,unequal error protection,gray mapped qpsk signal,qpsk modulation code,new efficient qpsk block-modulation,near-optimal binary luep code,qpsk block-modulation code,new construction,pulse modulation,power system protection,block codes,electrical and computer engineering,decoding,euclidean distance,information theory,error correction code,linear code,code rate,binary sequence
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