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A Team Study of a Multiple-Power Wireless Random Channel Access Mechanism with Capture Effect

机译:具有捕获效应的多功率无线随机信道接入机制的团队研究

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摘要

We present a team analysis of a slotted random wireless channel access mechanism. Under the proposed scheme, denoted wireless random access mechanism with multiple power levels (MPL-WRA), each mobile station contends for a transmission opportunity following the principles of a slotted access mechanism incorporating a random transmitting power value selected among various available power levels. In this way, a capture effect may be produced allowing the packet to be decoded whenever the signal-to-interference-plus-noise ratio is higher than a given threshold. In order to analyze the performance and optimization of the proposed setup, we build a Markovian model integrating the wireless access mechanism supplemented by the use of multiple power levels in an attractive and simple cross-layer fashion. We follow a team problem approach allowing us to fine tune the design parameters of the overall system configuration. Throughout an extensive numerical analysis, our main results set the basis for the social optimal system configuration of the proposed mechanism taking into account the physical constraints of using multiple power levels and the actual practical implementation of a slotted access mechanism. We end the paper with concluding remarks and future research directions including guidelines for the actual implementation of our proposal.
机译:我们介绍了时隙随机无线信道访问机制的团队分析。在提出的方案下,表示为具有多个功率电平的无线随机接入机制(MPL-WRA),每个移动台都遵循时隙接入机制的原理争夺传输机会,该时隙接入机制结合了从各种可用功率电平中选择的随机发射功率值。以这种方式,只要信号干扰加噪声比高于给定阈值,就可以产生捕获效果,从而允许对分组进行解码。为了分析建议的设置的性能和优化,我们建立了一个马尔可夫模型,该模型以有吸引力且简单的跨层方式集成了无线访问机制,并辅以使用多个功率级别。我们遵循团队问题方法,使我们可以微调整个系统配置的设计参数。在广泛的数值分析中,我们的主要结果为拟议机制的社会最优系统配置奠定了基础,同时考虑到了使用多个功率级别的物理限制以及时隙访问机制的实际实际实现。最后,本文以总结性发言和未来的研究方向,包括对我们提案的实际实施进行指导。

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