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August 7, 20260 citationsOpen Access

Network Optimization for Dynamic Spectrum Allocation in Rural Cognitive Radio Networks Using Adaptive Genetic Algorithms in Television White Space Band.

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CCChimkanma Abraham CHUKWUYENUMVEVictor Onuche ELAIGWU

Key Points

  • The aim is to develop an optimized model for dynamic spectrum allocation in cognitive radio networks within television white space bands.
  • Developed a dynamic spectrum allocation model using an adaptive genetic algorithm.
  • Utilized the Hata-Okumura propagation model to incorporate physical constraints in the model.
  • Engaged in simulations to test network performance and interference management.
  • Achieved a robust average network fitness of 0.0471.
  • Eliminated interference-induced failures, resulting in a 35% reduction in network failure rates.
  • Maintained compliance with IEEE 802.22 standards, ensuring primary user protection at -114 dBm.

Abstract

Abstract: The extension of reliable broadband into rural environments and an undertaking fundamentally limited by the severe free-space path loss of high-frequency architectures are requirements to close the identified digital divide in the globe. An optimized Dynamic Spectrum Allocation (DSA) model for Cognitive Radio Networks (CRNs) operating within the sub-1 GHz Ultra-High Frequency (UHF) Television White Space (TVWS) bands was developed in this study to address the limitations. Through the design and deployment of an Adaptive Genetic Algorithm (GA), the non-convex, NP-hard nature of multi-objective resource allocation was targeted. Initial localized allocation approaches revealed a 35% network failure rate caused by localized "spectral blindness" and unmitigated Secondary User (SU) co-channel interference and this challenge was resolved by engineering a Network Optimization model. The AI's evolutionary output was grounded in physical constraints. This was actualized due to the explicit incorporation of the deterministic Hata-Okumura open-area propagation model using the advanced multi-objective fitness scalarization. Robust and stable average network fitness of 0.0471 was achieved because of the successful elimination of the interference-induced failures states by Simulation. Absolute compliance with the IEEE 802.22 wireless standard was demonstrated by the global GA by maintaining a strict Primary User (PU) protection threshold of -114 dBm. It was revealed among others that GAs functioning under memory constraints is mathematically viable for scalable, low-power embedded hardware. Also, GAs successfully balanced maximum Shannon-Hartley throughput with aggressive energy minimization. Keywords: algorithm, cognitive, spectrum, optimization, television

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Cite This Study

CHUKWUYENUM et al. (2026) studied this question.

synapsesocial.com/papers/6a758c1b847ab6d26c01fff5https://doi.org/10.5281/zenodo.21810248
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