Hybrid Precoder Design for Cache-enabled Millimeter Wave Radio Access Networks
Shiwen He, Yongpeng Wu, Ju Ren, Yongming Huang, Robert Schober, and, Yaoxue Zhang

TL;DR
This paper proposes a hybrid precoder design for cache-enabled millimeter wave networks, optimizing user rates under fronthaul and power constraints, and compares hard and soft fronthaul strategies through simulations.
Contribution
It introduces a novel hybrid precoder optimization framework for CeMm-RANs considering two fronthaul transfer strategies and develops a convergent algorithm for non-convex problems.
Findings
Soft fronthaul transfer outperforms hard transfer at moderate fronthaul capacities.
The proposed algorithm converges reliably to a local optimum.
Hybrid precoding improves user rates compared to fully digital precoding in simulations.
Abstract
In this paper, we study the design of a hybrid precoder, consisting of an analog and a digital precoder, for the delivery phase of downlink cache-enabled millimeter wave (mmWave) radio access networks (CeMm-RANs). In CeMm-RANs, enhanced remote radio heads (eRRHs), which are equipped with local cache and baseband signal processing capabilities in addition to the basic functionalities of conventional RRHs, are connected to the baseband processing unit via fronthaul links. Two different fronthaul information transfer strategies are considered, namely, hard fronthaul information transfer, where hard information of uncached requested files is transmitted via the fronthaul links to a subset of eRRHs, and soft fronthaul information transfer, where the fronthaul links are used to transmit quantized baseband signals of uncached requested files. The hybrid precoder is optimized for maximization…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Advanced MIMO Systems Optimization · Cooperative Communication and Network Coding
