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Resource Allocation for OFDMA System with Orthogonal Relay using Rateless Code

机译:采用无速率码的正交中继OFDMA系统资源分配

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This paper considers the resource allocation problem in the wireless OFDMA system with a relay node. We consider orthogonal relay in which the relay node cannot transmit and receive simultaneously on the same frequency. As a result, the use of relay node may enhance or degrade the achievable transmission rate depending on the instantaneous channel states between the source and the relay, the relay and the destination as well as the source and the destination. Hence, it is very important to dynamically adjust the resources (subbands) allocated to the relay node so that the relay is used only at the right time according to the instantaneous channel states. Conventional approaches dynamically schedule the usage of the relay node in a centralized manner in which full knowledge of the channel states between any two nodes in the network is required. However, perfect knowledge of the channel states at various nodes is very difficult to obtain. In this paper, we shall propose a resource allocation algorithm, which iteratively allocates resource to the source and relay, and converge to the close-to-optimal allocation. Asymptotic achievable rate of the proposed algorithm is derived. We show that the system achieves significant improvement of the achievable rate compared to the point-to-point baseline system without relay as well as the baseline system with random subband allocation.
机译:本文考虑了具有中继节点的无线OFDMA系统中的资源分配问题。我们考虑正交中继,其中中继节点不能在同一频率上同时发送和接收。结果,根据源与中继,中继与目的地以及源与目的地之间的瞬时信道状态,中继节点的使用可以提高或降低可达到的传输速率。因此,动态调整分配给中继节点的资源(子带)非常重要,以便根据瞬时信道状态仅在正确的时间使用中继。常规方法以集中方式动态地调度中继节点的使用,在该集中方式中,需要完全了解网络中任何两个节点之间的信道状态。但是,很难获得各个节点的信道状态的完整知识。在本文中,我们将提出一种资源分配算法,该算法迭代地将资源分配给源和中继,并收敛到接近最优的分配。推导了该算法的渐近可实现率。我们表明,与没有中继的点对点基线系统以及具有随机子带分配的基线系统相比,该系统实现了可实现速率的显着提高。

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