Joint transceiver beamforming design and power allocation for multiuser MIMO systems

Li-Yu Daisy Liu, Chang Wen Chen
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引用次数: 9

Abstract

Multi-user multiple input multiple output (MU-MIMO) system is an excellent choice for the next generation broadband communications because of its great potential in enhancing MIMO system capacity. One major challenge of such system is the jointly optimal transceiver beamforming design that maximizes the sum capacity under a total power constraint. Existing approaches have provided convex optimization solution by exploiting the duality between transmitter and receiver. However, with high computation complexity, these approaches are ineligible of practical implementation. In this paper, we aim to provide complexity efficient transceiver beamformer and power allocation design in MU-MIMO downlink (broadcast) channels. We first develop an iterative sub-optimal algorithm based on cyclic self-SINR-maximization (CSSM) beamforming design and water-filling power allocation. Comparing to convex-optimization-based (COB) approaches, the proposed solution (i.e. CSSM-WF algorithm) have insignificant sum-rate degradation but very low computational complexity and extremely fast converging speed. Trying to improve the performance of CSSM-WF algorithm, we then introduce another algorithm denoted as efficient COB (ECOB) algorithm in which CSSM-WF algorithm is used to generate a good start point for optimal COB approaches. Simulation results prove the efficiency of both proposed algorithms.
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多用户MIMO系统的联合收发器波束形成设计与功率分配
多用户多输入多输出(MU-MIMO)系统在提高MIMO系统容量方面具有巨大的潜力,是下一代宽带通信的理想选择。该系统面临的一个主要挑战是在总功率限制下实现最大总容量的联合优化收发器波束成形设计。现有的方法利用发射端和接收端之间的对偶性,给出了凸优化解。但由于计算复杂度高,这些方法不适合实际实现。在本文中,我们的目标是在MU-MIMO下行(广播)信道中提供复杂高效的收发器波束形成和功率分配设计。首先提出了一种基于循环自信噪比最大化(CSSM)波束形成设计和注水功率分配的迭代次优算法。与基于凸优化(COB)的方法相比,该方法(即CSSM-WF算法)的求和速率退化不明显,但计算复杂度极低,收敛速度极快。为了提高CSSM-WF算法的性能,我们引入了另一种称为高效COB (ECOB)算法,其中CSSM-WF算法用于生成最优COB方法的良好起点。仿真结果证明了两种算法的有效性。
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