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Optimum Integrated Link Scheduling and Power Control for Multihop Wireless Networks

机译:多跳无线网络的最佳集成链路调度和功率控制

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In this paper, a new mathematical programming formulation is developed for minimizing the schedule length in multihop wireless networks based on the optimal joint scheduling of transmissions across multi-access communication links and the allocation of transmit power levels while meeting the requirements on the signal-to-interference-plus-noise ratio at intended receivers. The authors prove that the problem can be represented as a mixed-integer linear programming (MILP) and show that the latter yields a solution that consists of transmit power levels that are "strongly Pareto optimal". It was demonstrated that the MILP formulation can be used effectively to derive optimal scheduling and power levels for networks with as many as 30 designated communication links. The authors show that the MILP formulation can also be effectively solved to provide upper and lower bounds (corresponding to an approximation factor Delta) for the optimum schedule length of networks with as many as 100 designated links. It is proved that the integrated link scheduling and power control problem (ILSP) is NP-complete. Consequently, a heuristic algorithm of polynomial complexity is developed and investigated for solving the problem in a timely and practical manner. The algorithm is based on the properties of a novel interference graph, i.e., the "generalized power-based interference graph", whose "chromatic" and "independence numbers" provide fundamental bounds for the ILSP. It is demonstrated that the frame length of schedules realized by the heuristic scheme resides in the 25th percentile of those attained by the optimal mechanism for randomly generated topologies with as many as 30 designated communication links. Furthermore, it is shown that the algorithm significantly outperforms a corresponding algorithm presented in the literature
机译:在本文中,基于跨多址通信链路的传输的最佳联合调度和发射功率电平的分配,同时满足信号到信号的要求,开发了一种新的数学编程公式,以最小化多跳无线网络中的调度长度。预期接收器处的干扰加噪声比。作者证明该问题可以表示为混合整数线性规划(MILP),并表明后者产生了一种由“强帕累托最优”发射功率级组成的解决方案。事实证明,MILP公式可有效地用于为多达30个指定通信链路的网络得出最佳调度和功率水平。作者表明,MILP公式也可以有效地解决,以为具有多达100个指定链接的网络的最佳调度长度提供上限和下限(对应于近似因子Delta)。证明了集成链路调度和功率控制问题(ILSP)是NP完全的。因此,开发并研究了一种多项式复杂度的启发式算法,以便及时,实用地解决该问题。该算法基于新颖的干扰图,即“基于功率的一般干扰图”的特性,其“色”和“独立数”为ILSP提供了基本界限。证明了通过启发式方案实现的调度的帧长度位于通过具有多达30个指定通信链路的随机生成拓扑的最佳机制所获得的调度的25%。此外,表明该算法明显优于文献中提出的相应算法。

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