Rate Splitting for Multi-Antenna Downlink: Precoder Design and Practical Implementation
Zheng Li, Chencheng Ye, Ying Cui, Sheng Yang, Shlomo Shamai (Shitz)

TL;DR
This paper develops practical precoder design algorithms for rate splitting in multi-antenna downlink systems, improving performance and reducing complexity for beyond 5G networks.
Contribution
It introduces novel precoder design algorithms based on CCCP for arbitrary user numbers, optimizing rate and power, and adapts them for imperfect channel information.
Findings
Significant performance gains over linear precoding schemes.
Algorithms converge to stationary points of the non-convex problems.
Reduced complexity enables implementation with many users.
Abstract
Rate splitting (RS) is a potentially powerful and flexible technique for multi-antenna downlink transmission. In this paper, we address several technical challenges towards its practical implementation for beyond 5G systems. To this end, we focus on a single-cell system with a multi-antenna base station (BS) and K single-antenna receivers. We consider RS in its most general form, and joint decoding to fully exploit the potential of RS. First, we investigate the achievable rates under joint decoding and formulate the precoder design problems to maximize a general utility function, or to minimize the transmit power under pre-defined rate targets. Building upon the concave-convex procedure (CCCP), we propose precoder design algorithms for an arbitrary number of users. Our proposed algorithms approximate the intractable non-convex problems with a number of successively refined convex…
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Taxonomy
TopicsAdvanced MIMO Systems Optimization · Advanced Wireless Network Optimization · Cooperative Communication and Network Coding
