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首页> 外文期刊>IEEE Transactions on Information Theory >Distributed QAM-Based Space-Time Block Codes for Efficient Cooperative Multiple-Access Communication
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Distributed QAM-Based Space-Time Block Codes for Efficient Cooperative Multiple-Access Communication

机译:基于分布式QAM的空时分组码,用于高效的协作多址通信

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Distributed space-time block coding schemes based on quadrature amplitude modulation (QAM) symbols are introduced that enable users in a wireless multiple-access relay channel to cooperate with each other in order to improve the reliability of their information in a fair, rate-efficient manner. The distributed coding schemes are designed for a system that consists of m users that need to send their information to a common destination. Each user is equipped with only one antenna and a half-duplex transceiver so that it can transmit to the destination or any other user at one time and also receive signals from any other user at another time. The destination is equipped with one or more receive antennas. The goal is to design cooperative schemes which achieve the maximum diversity order (which is equal to the diversity order of the outage probability) while being fair to the users in terms of rate allocation. Two cooperative coding schemes are proposed that meet these requirements-a two-phase cooperative scheme and a single-phase self-information canceling linear (SCL) scheme. The two-phase scheme is of lower decoding complexity and it requires the users to only transmit QAM symbols. The SCL scheme is of higher complexity with the users transmitting linear combination of QAM symbols but it also achieves better performance. Both schemes incorporate new classes of cooperation rules for deciding whether or not a user acts as a relay for another user. The usual "outage-based" cooperation rule, whereby a user cooperates with another user provided the mutual information of the channel between them is greater than the rate, is sufficient for deriving information-theoretic limits but it cannot be used directly for analysis of a particular coding scheme. Even though the decoder used by the destination in the proposed coding schemes assumes that the inter-user communication is always successful, our performance analysis does not make this assumption. In fact, it rigorously accou--nts for the decoding errors arising from the information exchange between users. Consequently, it sheds light on precisely what cooperation rules (among the class of rules analyzed) lead to maximal diversity.
机译:引入了基于正交幅度调制(QAM)符号的分布式时空块编码方案,该方案使无线多路访问中继信道中的用户能够相互协作,从而以公平,高效的速率提高其信息的可靠性方式。分布式编码方案是为包含m个用户的系统设计的,这些用户需要将其信息发送到公共目的地。每个用户仅配备一个天线和一个半双工收发器,这样它既可以一次发送到目的地或任何其他用户,又可以在另一时间接收来自任何其他用户的信号。目的地装有一个或多个接收天线。目标是设计一种协作方案,该方案可以实现最大分集阶数(等于中断概率的分集阶数),同时在速率分配方面对用户公平。提出了两种满足这些要求的协作编码方案-两阶段协作方案和单阶段自信息抵消线性(SCL)方案。两阶段方案具有较低的解码复杂度,并且它要求用户仅发送QAM符号。 SCL方案具有更高的复杂度,用户可以传输QAM符号的线性组合,但也可以获得更好的性能。两种方案都包含新的合作规则类别,用于确定用户是否充当另一用户的中继。通常的“基于中断”的协作规则,即如果一个用户与另一个用户之间的信道的相互信息大于速率,则该用户与另一个用户进行协作,足以得出信息理论上的限制,但不能直接用于分析特定的编码方案。即使目标在建议的编码方案中使用的解码器假定用户间通信始终成功,我们的性能分析也没有做出此假设。实际上,它严格地保证了用户之间信息交换所引起的解码错误。因此,它准确地阐明了合作规则(在所分析的规则类别中)导致最大多样性的原因。

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