Medium access control with channel state information for large sensor networks

S. Adireddy, L. Tong
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引用次数: 12

Abstract

Traditionally, random access protocols have been designed and studied by assuming simple models for the physical layer. We introduce a reception model that incorporates the channel states of the transmitting users and allows for multiple simultaneous successes. We assume that each user has access to his channel state and propose a variant of the Slotted ALOHA protocol for medium access where the transmit probability is chosen as a function of the channel state. We introduce the notion of asymptotic stable throughput and characterize the achievable asymptotic stable throughput through the use of channel state information. As an example, we consider the application of the results to sensor networks.
基于通道状态信息的大型传感器网络介质访问控制
传统上,随机访问协议是通过假设物理层的简单模型来设计和研究的。我们引入了一个接收模型,该模型结合了发送用户的信道状态,并允许多个同时成功。我们假设每个用户都可以访问他的信道状态,并提出了一种用于介质访问的Slotted ALOHA协议的变体,其中传输概率被选择为信道状态的函数。引入了渐近稳定吞吐量的概念,并利用信道状态信息对可实现的渐近稳定吞吐量进行了表征。作为一个例子,我们考虑了结果在传感器网络中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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