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April 10, 2026Mathematics0 citationsOpen Access

Early Detection of Virtual Machine Failures in Cloud Computing Using Quantum-Enhanced Support Vector Machine

BKBhargavi KrishnamurthySDSaikat DasSSSajjan G. Shiva

Key Points

  • This research aims to develop a method for early detection of virtual machine failures in cloud computing using a quantum-enhanced support vector machine.
  • Designed a quantum-enhanced support vector machine as an optimized binary classifier.
  • Encoded classical data into quantum states and performed feature mapping to high-dimensional Hilbert space.
  • Conducted quantum kernel evaluation to determine data similarities.
  • Utilized QuCloudSim 1.0 for performance analysis and validated findings with expected value analysis methodology.
  • Achieved exponential speed-up in detecting virtual machine anomalies.
  • Successfully prevented local minima through quantum operations like entanglement and superposition.
  • Demonstrated improved performance of the quantum-enhanced support vector machine in high-dimensional data environments.

Abstract

Cloud computing is one of the essential computing platforms for modern enterprises. A total of 84 percent of large businesses use cloud computing services in 2025 to enable remote working and higher flexibility of operation with reduction in the cost of operation. Cloud environments are dynamic and multitenant, often demanding high computational resources for real-time processing. However, the cloud system’s behavior is subjected to various kinds of anomalies in which patterns of data deviate from the normal traffic. The varieties of anomalies that exist are performance anomalies, security anomalies, resource anomalies, and network anomalies. These anomalies disrupt the normal operation of cloud systems by increasing the latency, reducing throughput, frequently violating service level agreements (SLAs), and experiencing the failure of virtual machines. Among all anomalies, virtual machine failures are one of the potential anomalies in which the normal operation of the virtual machine is interrupted, resulting in the degradation of services. Virtual machine failure happens because of resource exhaustion, malware access, packet loss, Distributed Denial of Service attacks, etc. Hence, there is a need to detect the chances of virtual machine failures and prevent it through proactive measures. Traditional machine learning techniques often struggle with high-dimensional data and nonlinear correlations, ending up with poor real-time adaptation. Hence, quantum machine learning is found to be a promising solution which effectively deals with combinatorially complex and high-dimensional data. In this paper, a novel quantum-enhanced support vector machine (QSVM) is designed as an optimized binary classifier which combines the principles of both quantum computing and support vector machine. It encodes the classical data into quantum states. Feature mapping is performed to transform the data into the high-dimensional form of Hilbert space. Quantum kernel evaluation is performed to evaluate similarities. Through effective optimization, optimal hyperplanes are designed to detect the anomalous behavior of virtual machines. This results in the exponential speed-up of operation and prevents the local minima through entanglement and superposition operation. The performance of the proposed QSVM is analyzed using the QuCloudSim 1.0 simulator and further validated using expected value analysis methodology.

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Cite This Study

Krishnamurthy et al. (2026) studied this question.

synapsesocial.com/papers/69d894326c1944d70ce05125https://doi.org/10.3390/math14071229
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