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A Real-Time Vendor-Neutral Programmable Scheduler Architecture for Cellular Networks
Conference proceeding

A Real-Time Vendor-Neutral Programmable Scheduler Architecture for Cellular Networks

Wenhao Zhang, Zhouyou Gu, Wibowo Hardjawana, Branka Vucetic, Simon Lumb, David McKechnie, Todd Essery and IEEE
IEEE Wireless Communications and Networking Conference : [proceedings] : WCNC, Vol.2020-, pp.1-6
IEEE Wireless Communications and Networking Conference
01/01/2020

Abstract

Computer Science Computer Science, Information Systems Engineering Engineering, Electrical & Electronic Science & Technology Technology Telecommunications
The current Downlink Shared Channel (DLSCH) resource scheduler for cellular networks has the following features: 1) it is integrated with an evolved NodeB (eNB) and 2) uses proprietary interfaces. The first causes a temporary outage whenever the scheduler logic is reprogrammed to accommodate traffic profiles that have different requirements, while the latter prevents multi-vendor interoperability. In this paper, we propose a real-time vendor-neutral programmable DLSCH scheduler architecture. The scheduler and eNB are separated into two binary files that communicate via an agent. The agent uses standard interfaces to interpret information from/to different eNB vendors in real time. The proposed architecture is implemented on two open source 3rd Generation Partnership Project standard-compliant eNB stacks from the OAI and SRS. Experimental results show that the proposed architecture addresses the real time and proprietary challenges mentioned above.

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