A Periodic Space of Distributed Computing: Vision & Framework
Mohsen Amini Salehi, Adel N. Tousi, Hai Duc Nguyen, Murtaza Rangwala, Omar Rana, Tevfik Kosar, Valeria Cardellini, Rajkumar Buyya

TL;DR
This paper introduces a 'periodic framework' inspired by the periodic table to systematically characterize, compare, and predict the evolution of distributed computing systems for future intelligent applications.
Contribution
It proposes a novel structured framework for understanding the distributed computing landscape, aiding in analysis and future trajectory prediction.
Findings
The framework helps identify patterns in system properties like responsiveness and availability.
It enables comparison of different distributed solutions based on structured properties.
The framework can predict future trends in distributed computing evolution.
Abstract
Advances in networking and computing technologies throughout the early decades of the 21st century have transformed long-standing dreams of pervasive communication and computation into reality. These technologies now form a rapidly evolving and increasingly complex global infrastructure that will underpin the next aspiration of computing: supporting intelligent systems with human-level or even superhuman capabilities. We examine how today's distributed computing landscape can evolve to meet the demands of future users, intelligent systems, and emerging application domains. We propose a "periodic framework" for characterizing the distributed computing landscape, inspired by the systematic structure and explanatory power of the "periodic table" in chemistry. This framework provides a structured way to describe, compare, and reason about the behaviors and design choices of different…
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