Dynamic topology control in multi-radio multichannel wireless system

M. A. Mohammed Ansar Ali, D. Adimugasivasakthi
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Abstract

Dynamic topology control in multi-hop wireless networks is a focus received much interest in the research society. In this our development, explore the joint power control, channel assignment, and radio interface selection for dynamic provisioning of link bandwidth in infrastructure multi-radio multichannel wireless networks in occurrence of channel variability and external interference. To characterize the logical relationship between spatial contention constraints and transmit power, originate the joint power control and radio-channel assignment as a generalized disjunctive programming problem. The generalized Benders decomposition technique is applied for decomposing the radio-channel assignment (combinatorial conditions) and network resource allocation (continuous conditions) so that the problem can be solved efficiently. In this algorithm is assured to converge to the optimal solution within a finite number of iterations. These schemes in providing reducing outage, packet failure possibility and larger nosiness margin.
多无线电多信道无线系统的动态拓扑控制
多跳无线网络的动态拓扑控制一直是学术界关注的热点。在本研究中,我们探讨了在发生信道可变性和外部干扰的情况下,在基础设施多无线电多信道无线网络中动态提供链路带宽的联合功率控制、信道分配和无线电接口选择。为了描述空间竞争约束与发射功率之间的逻辑关系,将联合功率控制和无线电信道分配问题归结为广义析取规划问题。应用广义Benders分解技术对信道分配(组合条件)和网络资源分配(连续条件)进行分解,有效地解决了该问题。该算法保证在有限的迭代次数内收敛到最优解。这些方案提供了减少中断、分组失败的可能性和更大的噪声裕度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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