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Optimal Huffman Coding Performance of Ad-Hoc Networks Based on Cross-Layer Design

机译:基于跨层设计的Ad-hoc网络的最佳霍夫曼编码性能

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摘要

Effective data compression and sustainable management of limited bandwidth are the fundamental challenges in the design of current ad-hoc wireless networks. Dynamic Huffman coding protocol with optimal prefix-free codewords assigned to network parameters through cross-layer methodology can considerably address these issues for performance enhancement in these networks. In this paper, the entropy based Huffman binary and ternary coding schemes are implemented with cross-layer design in mobile ad-hoc networks. This cross-layer approach for achieving higher adaptivity incorporated four layers of the traditional networking stack. The simulation results demonstrated the performance trade-off between throughput and coding metrics for the proposed cross-layer architecture. Moreover, our proposed model exhibits substantially higher compression ratio and coding efficiency than the other existing methods through the integration of this lossless coding protocol in the developed cross-layer framework.
机译:有效的数据压缩和有限带宽的可持续管理是当前临时无线网络设计中的根本挑战。动态霍夫曼编码协议通过跨层方法分配给网络参数的最佳前缀码字可以大大解决这些网络中的性能增强问题。在本文中,基于熵的霍夫曼二进制和三元编码方案在移动ad-hoc网络中具有跨层设计。实现更高适应性的这种交叉层方法包括四层传统网络堆栈。仿真结果表明了所提出的跨层架构的吞吐量和编码度量之间的性能权衡。此外,我们所提出的模型通过在发达的交叉层框架中集成了这种无损编码协议而比其他现有方法具有基本更高的压缩比和编码效率。

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