Empirical Analysis of Cloud-Edge Infrastructure Complexity: Practitioner Pain Points and Architectural Directions
Pawissanutt Lertpongrujikorn, Hai Duc Nguyen, Mohsen Amini Salehi
Abstract
The proliferation of cloud, edge, and Internet of Things (IoT) computing has created unprecedented opportunities for distributed applications. However, this architectural shift introduces profound infrastructural complexity, acting as a significant barrier to developer productivity and innovation. In this paper, we present an empirical analysis based on 101 semi-structured interviews across 86 organizations to investigate the state of cloud-native development practices, pain points, and expectations. Our findings quantitatively validate that deployment complexity (38.6%) and onboarding difficulty (35.6%) are the dominant operational bottlenecks, while developers heavily prioritize productivity (53.5%) and automation (44.6%) over raw performance optimization. Based on these empirical insights, we examine four architectural directions that address the validated pain points: unified object abstractions (Object-as-a-Service), platform engineering via Internal Developer Platforms, declarative AI/ML serving pipelines, and lightweight edge runtimes based on WebAssembly. Furthermore, we detail the multi-stakeholder ecosystem required for adopting novel infrastructure paradigms, emphasizing that security, operational integration, and strict multi-tenant isolation are prerequisites for production readiness. Our results demonstrate that the primary barrier to distributed computing adoption is not execution performance but infrastructural complexity, and that declaratively governed, higher-level abstractions across multiple paradigms offer viable architectural paths toward alleviating it.
Create a lesson
Related papers
Replication-Aware Placement of Functions and Data in the Edge-Cloud Continuum
Dario d'Abate, Matteo Cenzato, Matteo Briscini et al.
Ermes: a Stateful Serverless Platform for the Edge-to-Cloud Continuum
Matteo Cenzato, Dario d'Abate, Arianna Dragoni et al.
Fluid Notarization: Verifiable Evolution of Concurrently Edited Structured Documents
Amos Brocco, Giuliano Gremlich, Roberto Guidi
Ask the Tool, Don't Guess: Agent Tool Calls Hold Their Progress, and the Serving System Should Read It
Yipeng Liu, Yingqiang Zhang, Feifei Li et al.
A Distributed Computing Framework for Satellite Swarms
Ezra Fielding, Clement Demazure, Guthemberg Silvestre et al.
Vigil: Accountable Liveness against Selective Silence
Jiawei Cheng, Huiping Sun, Rui Zhou et al.