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An adaptive scheduling scheme for inhomogeneously distributed wireless ad hoc Networks

机译:用于不均匀分布无线临时网络网络的自适应调度方案

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An efficient scheduling strategy guarantees the simultaneous transmission and successful reception by the scheduled nodes even inside a congested wireless ad hoc network. Owing to the dispersed nature of ad hoc networks, the node packing algorithm needs to be implementable without having network-wide channel state information and should additionally be able to pack the optimum number of successful transmissions. The proposed algorithm, for a network with nonhomogeneously distributed nodes, makes the decision to either inhibit or permit an active interferer around an active receiver based on the interferer?s transmission power. The analysis evidenced that the suggested scheme provides an estimated 100 times superior transmission capacity when equated to the random aloha scheme. Moreover, the proposed strategy proved its vitality by demonstrating substantial improvement in transmission and transport capacity in comparison to the preexisting renowned scheduling schemes for distributed networks. The final results present a closed-form formula for the best possible exclusion-zone size multiplier factor in terms of the network parameters, i.e. the network?s path-loss exponent, spreading gain, SINR threshold, outage constraint, and Tx-Rx separation.
机译:一种有效的调度策略,即使在拥挤的无线临时网络内,也可以保证调度节点的同时传输和成功接收。由于Ad Hoc网络的分散性,节点包装算法需要可实现,而不具有网络宽的信道状态信息,并且另外应该能够包装最佳的成功传输数。对于具有非均匀分布节点的网络的所提出的算法使得决定禁止或允许基于干扰官传输功率围绕有源接收器围绕有源干扰。分析证明,建议方案在等同于随机的Aloha方案时提供了估计的100倍卓越的传输能力。此外,拟议的策略通过展示了与分布式网络的预先存在着名的调度计划相比,通过展示传输和运输能力的大量改善,证明了其活力。最终结果呈现了一种封闭式公式,用于网络参数的最佳排除区大小乘数因子,即网络?S路径丢失指数,扩散增益,SINR阈值,中断约束和TX-RX分离。

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