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Optimality Properties, Distributed Strategies, and Measurement-Based Evaluation of Coordinated Multicell OFDMA Transmission

机译:协同多小区OFDMA传输的最优性,分布式策略和基于测量的评估

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The throughput of multicell systems is inherently limited by interference and the available communication resources. Coordinated resource allocation is the key to efficient performance, but the demand on backhaul signaling and computational resources grows rapidly with number of cells, terminals, and subcarriers. To handle this, we propose a novel multicell framework with dynamic cooperation clusters where each terminal is jointly served by a small set of base stations. Each base station coordinates interference to neighboring terminals only, thus limiting backhaul signalling and making the framework scalable. This framework can describe anything from interference channels to ideal joint multicell transmission. The resource allocation (i.e., precoding and scheduling) is formulated as an optimization problem (P1) with performance described by arbitrary monotonic functions of the signal-to-interference-and-noise ratios (SINRs) and arbitrary linear power constraints. Although (P1) is nonconvex and difficult to solve optimally, we are able to prove: 1) optimality of single-stream beamforming; 2) conditions for full power usage; and 3) a precoding parametrization based on a few parameters between zero and one. These optimality properties are used to propose low-complexity strategies: both a centralized scheme and a distributed version that only requires local channel knowledge and processing. We evaluate the performance on measured multicell channels and observe that the proposed strategies achieve close-to-optimal performance among centralized and distributed solutions, respectively. In addition, we show that multicell interference coordination can give substantial improvements in sum performance, but that joint transmission is very sensitive to synchronization errors and that some terminals can experience performance degradations.
机译:多小区系统的吞吐量固有地受到干扰和可用通信资源的限制。协调的资源分配是有效性能的关键,但是随着小区,终端和子载波的数量,对回程信令和计算资源的需求迅速增长。为了解决这个问题,我们提出了一种具有动态协作集群的新颖多小区框架,其中每个终端由一小组基站共同提供服​​务。每个基站仅协调对相邻终端的干扰,从而限制了回程信令,并使框架可扩展。该框架可以描述从干扰信道到理想的联合多小区传输的所有内容。资源分配(即预编码和调度)被公式化为优化问题(P1),其性能由信噪比的任意单调函数描述(SINR)和任意线性功率约束。尽管(P1)是非凸的并且难以最佳求解,但我们可以证明:1)单流波束成形的最优性; 2)全功率使用条件; 3)基于零和一之间的一些参数的预编码参数化。这些最优属性用于提出低复杂度的策略:集中式方案和仅需要本地通道知识和处理的分布式版本。我们评估了在测量的多小区信道上的性能,并观察到所提出的策略分别在集中式解决方案和分布式解决方案中实现了接近最佳的性能。此外,我们表明,多小区干扰协调可以显着改善总和性能,但是联合传输对同步错误非常敏感,并且某些终端可能会出现性能下降。

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