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Multidimensional Coded Modulation in Block-Fading Channels

机译:衰落信道中的多维编码调制

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We study coded modulation over multidimensional signal sets in Nakagami-$m$ block-fading channels. We consider the optimal diversity reliability exponent of the error probability when the multidimensional constellation is obtained as the rotation of complex-plane signal constellations. We show that multidimensional rotations of full dimension achieve the optimal diversity reliability exponent, also achieved by Gaussian constellations. Rotations of full dimension induce a large decoding complexity, and in some cases it might be beneficial to use multiple rotations of smaller dimension. We also study the diversity reliability exponent in this case, which yields the optimal rate–diversity–complexity tradeoff in block-fading channels with discrete inputs.
机译:我们在Nakagami- $ m $块衰落信道中研究多维信号集上的编码调制。我们将多维星座图作为复杂平面信号星座图的旋转时,考虑误差概率的最佳分集可靠性指数。我们表明,全尺寸的多维旋转实现了最佳的分集可靠性指数,也通过高斯星座实现。全尺寸旋转会导致较大的解码复杂度,在某些情况下,使用较小尺寸的多次旋转可能会有所帮助。我们还研究了这种情况下的分集可靠性指数,它在具有离散输入的块衰落信道中产生了最佳的速率-分集-复杂度折衷。

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