The AISAC landscape is presented, why imperfect sensing changes the learning problem, the closed-loop architecture and its three-way sensing-communication-learning tension are developed, and a vehicular edge-intelligence use case is outlined together with open problems for theory, implementation, and standardization.
Abstract
Integrated sensing and communication (ISAC) and AI-and-communication (AIAC) are identified as separate usage scenarios in the ITU IMT-2030 vision for sixth-generation (6G) networks. In practice, however, these two directions are already beginning to merge. ISAC gives the network a way to observe the physical world, while AI gives the network a way to learn from those observations and act on them. This article introduces AI-integrated sensing and communication (AISAC) as a closed-loop framework for this merger. In AISAC, AI is not only a tool used to optimize an ISAC system. ISAC is also the physical substrate through which AI receives data, context, and connectivity. The key technical message is that AISAC requires a new physical-layer design principle, in which the ISAC waveform, beam, power, bandwidth, and sensing mode should be configured for learning alignment, not for sensing distortion or communication rate alone. In particular, the sensing configuration that is most accurate from a classical estimation viewpoint need not be the one that is most useful for training or inference. We present the AISAC landscape, explain why imperfect sensing changes the learning problem, develop the closed-loop architecture and its three-way sensing-communication-learning tension, and outline a vehicular edge-intelligence use case together with open problems for theory, implementation, and standardization.
A unified view of how 6G communications, empowered by advanced AI and ML technologies and distributed intelligence, are expected to drive evolution and expedite the journey toward a smart and intelligent connected world is offered.
Jamal Hussain Arman, Fazal Muhammad, Muhammad Abdullah et al.· Telecommunications Systems· 0 citations
The sixth-generation (6G) wireless paradigm represents a
transformative leap in mobile communication, integrating Artificial Intelligence (AI) as a
native capability across architecture, spectrum, security, and service layers. We expect 6G to
meet the unmet demands for data rates, latency, connectivity, responsiven...
Jobin Thomas, Riya Sanjesh, V. V et al.· Recent Advances in Computer...· 0 citations
Agentic artificial intelligence (AI) is transforming Integrated Sensing and Communication (ISAC) from a function-oriented physical-layer technology into a goal-driven, closed-loop intelligent system, a paradigm we term AISAC. Existing work on learning-based sensing, resource allocation, reconfigurable intelligent surfa...
Kai Li, Cong-Gai Li, S. A. Siddiqui et al.· 0 citations
Integrated sensing and communications (ISAC) is emerging as a major architectural direction for next-generation wireless systems. By jointly designing environmental sensing and wireless data transmission within a unified framework, ISAC offers the potential for simultaneous gains in spectral efficiency, hardware reuse,...
I. F. Akyildiz, Shih-Chun Lin· IEEE Access· 0 citations
A unified technical perspective is provided on current standardization choices, their implementation tradeoffs, and the open challenges shaping network-grade sensing by connecting the evolving 3GPP architecture and radio studies across 5G-Advanced and 6G.