Integrated Sensing-Communication-Computation for Edge Artificial Intelligence

June 01, 2023 Β· Declared Dead Β· πŸ› IEEE Internet of Things Magazine

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Authors Dingzhu Wen, Xiaoyang Li, Yong Zhou, Yuanming Shi, Sheng Wu, Chunxiao Jiang arXiv ID 2306.01162 Category cs.IT: Information Theory Cross-listed cs.AI, cs.LG Citations 47 Venue IEEE Internet of Things Magazine Last Checked 6 months ago
Abstract
Edge artificial intelligence (AI) has been a promising solution towards 6G to empower a series of advanced techniques such as digital twins, holographic projection, semantic communications, and auto-driving, for achieving intelligence of everything. The performance of edge AI tasks, including edge learning and edge AI inference, depends on the quality of three highly coupled processes, i.e., sensing for data acquisition, computation for information extraction, and communication for information transmission. However, these three modules need to compete for network resources for enhancing their own quality-of-services. To this end, integrated sensing-communication-computation (ISCC) is of paramount significance for improving resource utilization as well as achieving the customized goals of edge AI tasks. By investigating the interplay among the three modules, this article presents various kinds of ISCC schemes for federated edge learning tasks and edge AI inference tasks in both application and physical layers.
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