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Maximum lifetime rate control and random access in multi-hop wireless networks

机译:多跳无线网络中的最大生命周期速率控制和随机访问

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摘要

Network lifetime and transmission quality are of paramount importance for rate control in an energy constrained multi-hop wireless network. It is known that they depend on mechanisms that span several protocol layers due to the existing interference across collision links and the energy constrained nature of wireless nodes. Although separate consideration of these issues simplifies the system design, it is often insufficient for wireless networks when the overall system performance is required. In this paper, we present a framework for cross-layer rate control towards maximum network lifetime and collision avoidance. The main contributions of this paper are twofold. First, although the link attainable rate is typically a non-convex and non-separable function of persistent probabilities, we prove the convergence of this cross-layer algorithm to the global optimum of joint congestion control and random access algorithm under the framework of nonlinear programming. Second, by adjusting a parameter in the objective function, we achieve the tradeoff between transmission quality and network lifetime. Simulations illustrate the desirable properties of the proposed algorithm, including convergence to the global optimum, better performance than the layered scheme, desirable tradeoff between transmission quality and network lifetime.
机译:网络寿命和传输质量对于能量受限的多跳无线网络中的速率控制至关重要。众所周知,由于跨越冲突链路的现有干扰以及无线节点的能量受限特性,它们依赖于跨越几个协议层的机制。尽管单独考虑这些问题可以简化系统设计,但是当需要整体系统性能时,对于无线网络而言,这通常是不够的。在本文中,我们提出了一种跨层速率控制的框架,以实现最大的网络寿命和避免冲突。本文的主要贡献是双重的。首先,尽管链路可达率通常是持久概率的非凸且不可分离的函数,但是我们证明了在非线性规划的框架下,该跨层算法收敛于联合拥塞控制和随机访问算法的全局最优性。其次,通过调整目标函数中的参数,我们实现了传输质量和网络寿命之间的权衡。仿真说明了所提出算法的理想特性,包括收敛到全局最优,比分层方案更好的性能,传输质量和网络寿命之间的理想折衷。

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