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Transfer function bounds on performance of turbo codes for M-ary orthogonal signals

机译:转移函数界限为M-ARY正交信号的Turbo代码的性能

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We obtain upper bounds on the bit-error rate (BER) for maximum-likelihood (ML) decoding of turbo codes constructed with uniform interleavers for M-ary orthogonal signals. We use transfer function bounding techniques to obtain the above bounds. Thus, the upper bounds result in the average bound over all interleavers of a given length. We apply the techniques to parallel concatenated coding (PCC) schemes where recursive convolutional codes are used as constituent codes. We present the average bounds on the BER of turbo codes with constraint length 3 for M-ary orthogonal signals on additive white Gaussian noise (AWGN) channels. We show that the performance advantage of turbo-coded 4-ary orthogonal signals over turbo-coded binary orthogonal signals is smaller than the performance advantage in the absence of coding, which is 3.0 dB.
机译:我们在误码率(BER)上获得上限,以获得用M-ARY正交信号构成的均匀交织器构造的Turbo码的最大似然(ML)解码。我们使用传递函数绑定技术来获得上述界限。因此,上限导致平均限制给定长度的所有交织器。我们将技术应用于并行连接编码(PCC)方案,其中递归卷积码用作组成代码。我们向Curbo码BER的平均界限带有限制长度3,用于添加白色高斯噪声(AWGN)通道上的M-ARY正交信号。我们表明,在涡轮编码二进制正交信号上的涡轮编码的4-ary正交信号的性能优势小于没有编码的性能优势,这是3.0dB。

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