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iHAC: A Hybrid Cluster Architecture for Enhanced Performance and Resilience
May 18, 2026 ยท Grace Period ยท + Add venue
Authors
Siddique Abubakr Muntaka, Edward Danso Ansong, Benjamin Yankson, Oliver Kornyo, Faiza Hussein, Mohammed Nadhir Muntaka, Joshua Dagadu, Prince Clement Addo, Maxwell Dorgbefu Jnr., Franco Osei-Wusu, Foster Yeboah, Michael Asante
arXiv ID
2605.18361
Category
cs.DC: Distributed Computing
Cross-listed
cs.AR
Citations
0
Abstract
Uninterrupted system availability is a critical requirement for enterprise operations, yet traditional high-availability clusters suffer from limitations such as single points of failure and inefficient resource allocation. This paper introduces and evaluates the Integrated High Availability Cluster (iHAC), a hybrid architecture designed to enhance system resilience and performance. The iHAC integrates the strengths of active-active and active-passive configurations to optimize workload distribution and failover capabilities. We conducted a comparative analysis, simulating iHAC against conventional (legacy) clusters using Riverbed Modeler (OPNET). The results reveal significant performance improvements: iHAC reduced the average HTTP page response time by over 40%, from five seconds in a traditional active-active setup to under three seconds. This was achieved alongside reduced network latency and increased overall throughput. This study validates the iHAC architecture as a superior design for building robust, high-performance systems, offering a practical path to greater operational continuity and resilience.
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