On the diversity-multiplexing tradeoff of unconstrained MIMO fading channels

Y. Yona, M. Feder
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Abstract

In this work the optimal diversity-multiplexing tradeoff (DMT) is studied for the multiple-input multiple-output fading multiple-access channel with no power constraints (infinite constellations). For K users (K > 1), M transmit antennas for each user, and N receive antennas, infinite constellations in general and lattices in particular are shown to attain the optimal DMT of finite constellations for the case N ≥ (K + 1)M - 1, i.e. user limited regime. On the other hand for the case N <; (K + 1) M - 1 it is shown that infinite constellations can not attain the optimal DMT. This is in contrast to the point-to-point case where infinite constellations are DMT optimal for any M and N. In general, this work shows that when the network is heavily loaded, i.e. K > max (1, N - M + 1/ M), taking into account the shaping region in the decoding process plays a crucial role in pursuing the optimal DMT.
无约束MIMO衰落信道分集-复用权衡研究
本文研究了无功率约束的多输入多输出衰落多址信道(无限星座)的最优分集-复用权衡(DMT)。对于K个用户(K > 1),每个用户M个发射天线,N个接收天线,一般情况下,无限星座,特别是晶格,可以得到N≥(K + 1)M - 1情况下有限星座的最优DMT,即用户有限区域。另一方面,对于N max (1, N - M + 1/ M)的情况,在解码过程中考虑整形区域对追求最优DMT起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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