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Energy aware power allocation strategies for multihop-cooperative transmission schemes

机译:多跳协作传输方案的能源意识功率分配策略

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This paper is focused on the optimization of transmitted power in a cooperative decoded relaying scheme for nodes belonging to the single primary route towards. a destination. The proposed transmission protocol, referred to as Multihop Cooperative Transmission Chain (MCTC), is based on the linear combination of copies of the same message by multiple previous terminals along the route in order to maximize the multihop diversity. Power allocations among transmitting nodes in the route can be obtained according to the average (not instantaneous) node-to-node path attenuation using a recursive power assignment. The latter can be employed locally on each node with limited signalling exchange (for fixed or nomadic terminals) among nodes. In this paper the power assignments for the MCTC strategy employing conventional linear combining schemes at receivers (i.e., selection combining, maximal ratio combining and equal gain combining) have been derived analytically when the power optimization is constrained to guarantee the end-to-end outage probability. In particular, we show that the power assignment that minimize the maximum spread of received power (min-max strategy) can efficiently exploit the multihop diversity. In addition, for ad hoc networks where the energy of each node is an issue, the MCTC protocol with the min-max power assignment increases considerably the network lifetime when compared to non-cooperative multihop schemes
机译:本文集中于针对单个主路由的节点的协作解码中继方案中的发射功率优化。一个目的地。所提出的传输协议称为多跳合作传输链(MCTC),它基于沿路径的多个先前终端对同一消息副本的线性组合,以使多跳分集最大化。可以使用递归功率分配,根据平均(非瞬时)节点间路径衰减来获得路由中的传输节点之间的功率分配。后者可以在每个节点上本地使用,节点之间的信令交换有限(对于固定或游牧终端)。在本文中,当功率优化受到约束以保证端到端中断时,已通过分析得出了在接收器上采用常规线性组合方案(即选择组合,最大比率组合和等增益组合)的MCTC策略的功率分配可能性。特别是,我们表明,使接收功率的最大散布最小化的功率分配(最小-最大策略)可以有效利用多跳分集。此外,对于其中每个节点的能量都是问题的自组织网络,与非协作式多跳方案相比,具有最小-最大功率分配的MCTC协议可显着增加网络寿命

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