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Distributed transmit power control for maximizing end-to-end throughput in wireless multi-hop networks

机译:分布式发射功率控制,用于最大化无线多跳网络中的端到端吞吐量

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Wireless multi-hop network has a solidarity property in which each link consisting of the multi-hop interferes mutually and so the increase of one link's rate results in the decrease of the other links' rate. In the multi-hop link, the end-to-end throughput between source and destination is restricted by the lowest link rate, so the max-min fair allocation on the link rates is an optimal strategy to maximize the end-to-end throughput. In this paper, we verify that if the wireless links have a solidarity property, the max-min fair allocation has all link rates equal, so we propose a transmit power control (TPC) algorithm that decides the transmit power of multi-hop nodes to make all link rates be equal. The proposed algorithm operates in a distributed manner where each node averages the recognized link rates around itself, allocates its transmit power to achieve this average rate, and iterates this operation until all link rates become equal. Intensive simulation shows that the proposed TPC algorithm enables all link rates to converge on the same value and so maximizes the multi-hop end-to-end throughput while decreasing the power consumption of multi-hop nodes.
机译:无线多跳网络具有团结性,其中由多跳组成的每个链路相互干扰,因此一个链路速率的增加会导致另一链路速率的降低。在多跳链路中,源和目标之间的端到端吞吐量受最低链路速率的限制,因此,对链路速率进行最大-最小公平分配是最大化端到端吞吐量的最佳策略。 。在本文中,我们验证了如果无线链路具有团结属性,则最大-最小公平分配的所有链路速率均相等,因此我们提出了一种传输功率控制(TPC)算法,该算法决定了多跳节点的传输功率。使所有链接速率相等。所提出的算法以分布式方式进行操作,其中每个节点在其自身附近平均已识别的链路速率,分配其发射功率以实现该平均速率,并迭代此操作,直到所有链路速率都相等为止。密集仿真表明,所提出的TPC算法使所有链路速率都收敛于相同的值,从而在降低多跳节点功耗的同时最大化了多跳端到端吞吐量。

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