Open Radio Access Network (RAN) and its embodiment through the O-RAN Alliance specifications have the potential to truly transform the telecom ecosystem. O-RAN promotes virtualized and disaggregated RANs, where disaggregated components are connected via open interfaces and optimized by intelligent controllers. The result is a new paradigm for the RAN design, deployment, and operations: O-RAN networks can be built with multi-vendor, interoperable components, and can be programmatically optimized through a centralized abstraction layer and data-driven closed-loop control. Therefore, understanding O-RAN, its architecture, its interfaces, and workflows is key for researchers and practitioners in the wireless community. In this article, we present the first detailed tutorial on O-RAN. We also discuss the main research challenges and review early results. We provide a deep dive on the O-RAN specifications, describing its architecture, design principles, and the O-RAN interfaces. We then describe how the O-RAN RAN Intelligent Controllers (RICs) can be used to effectively control and manage 3GPP-defined RANs. Based on this, we discuss innovations and challenges that relate to O-RAN networks, including the Artificial Intelligence (AI) and Machine Learning (ML) workflows that the architecture and interfaces enable, and security and standardization issues. Finally, we review experimental research platforms that can be used to design and test O-RAN networks, along with recent research results, and we outline future directions for O-RAN development.
翻译:开放无线电接入网络(RAN)及其通过O-RAN联盟规格的体现,有可能真正改变电信生态系统。O-RAN促进虚拟化和分类的RAN,通过开放接口与分解组件连接,并由智能控制器优化。结果为RAN设计、部署和运行提供了一个新的范例:O-RAN网络可以用多点网络、互操作组件来建立,并通过集中的抽象层和数据驱动的闭路控制在方案上优化。因此,了解O-RAN、其结构、界面和工作流程是无线社区研究人员和从业者的关键。在本篇文章中,我们介绍了关于O-RA的首次详细指导大纲。我们还讨论了主要研究挑战并审查了早期结果。我们深入潜没了O-RAN的规格,描述了其结构、设计原则和O-RA的界面。然后我们描述了O-RA的智能管理员(ICRIS)如何能够有效地控制和管理3GPM-最近定义的网络和无线用户方向。我们使用的ARA的研究成果和最终的测试结构,包括我们用来进行研究的ARAN-RA的网络, 以及最后的模型设计、我们用来进行我们用来进行研究的实验室-RADILA的模型的模型的流程。