Precoding With Received-Interference Power Control for Multibeam Satellite Communication Systems

E. Lagunas, A. Pérez-Neira, M. Martínez, M. Lagunas, M. Vázquez, B. Ottersten
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引用次数: 2

Abstract

Zero-Forcing (ZF) and Regularized Zero-Forcing (RZF) precoding are low-complexity sub-optimal solutions widely accepted in the satellite communications community to mitigate the resulting co-channel interference caused by aggressive frequency reuse. However, both are sensitive to the conditioning of the channel matrix, which can greatly reduce the achievable gains. This paper brings the attention to the benefits of a design that allows some residual received interference power at the co-channel users. The motivation behind this approach is to relax the dependence on the matrix inversion procedure involved in conventional precoding schemes. In particular, the proposed scheme aims to be less sensitive to the user scheduling, which is one of the key limiting factors for the practical implementation of precoding. Furthermore, the proposed technique can also cope with more users than satellite beams. In fact, the proposed precoder can be tuned to control the interference towards the co-channel beams, which is a desirable feature that is not met by the existing RZF solutions. The design is formulated as a non-convex optimization and we study various algorithms in order to obtain a practical solution. Supporting results based on numerical simulations show that the proposed precoding implementations are able to outperform the conventional ZF and RZF schemes.
多波束卫星通信系统中具有接收干扰功率控制的预编码
零强迫(Zero-Forcing, ZF)和正则化零强迫(regulregulated Zero-Forcing, RZF)预编码是卫星通信界广泛接受的低复杂度次优方案,用于减轻激进频率复用引起的同信道干扰。然而,这两种方法都对信道矩阵的调节很敏感,这会大大降低可实现的增益。本文介绍了允许同信道用户接收到一些剩余干扰功率的设计的好处。这种方法背后的动机是放松对传统预编码方案中涉及的矩阵反演过程的依赖。特别是,该方案旨在降低用户调度的敏感性,这是实际实现预编码的关键限制因素之一。此外,该技术还可以处理比卫星波束更多的用户。事实上,所提出的预编码器可以调谐以控制对同信道波束的干扰,这是现有RZF解决方案无法满足的理想特性。该设计被表述为一个非凸优化,我们研究了各种算法以获得一个实用的解决方案。基于数值模拟的支持结果表明,所提出的预编码实现能够优于传统的ZF和RZF方案。
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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