无线网络中使用分布式链路调度的拥塞控制

I. J. Reddy, R. Meenakshi
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引用次数: 1

摘要

在无线多跳系统中,两个端点之间的通信是由一些中间节点完成的,这些中间节点的功能是将信息从一个点中继到另一个点。虽然利用物理层技术提高了多行程系统的性能,但链路调度问题仍然存在。用跨层设计解决链路调度问题。跨层设计是在信噪比(SINR)模型下,利用连续干扰消除(SIC)能力解决无线系统中的拥塞和调度问题的过程。SIC有效地推进了容忍多个相邻并发通信共存,使多包接收成为可能。跨层设计置于物理层和MAC层之间。两层的技术可以支持额外的困难的跨层设计,旨在改善系统过程。该系统采用分布式链路调度来解决通信过程中的干扰问题。这种调度是一种有效的处理干扰关系的方法,利用先进的物理层技术,利用SIC消除干扰,并对接收端数据进行解码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Congestion control using distributed link scheduling in wireless networks
In a wireless multi-hop system the communication between the two endpoints is carried out by a some intermediate nodes whose function is to relay information from one point to another. Although there has been exploitation of the physical layer technique enhance the capability of multi-trip system, link scheduling problems still exist. Link scheduling problem addressed with a cross layer design. Cross layer design is a process of solving congestion and scheduling problems in wireless systems wherever nodes capable by way of the Successive interference cancelation (SIC) capability under Signal to Interference Noise Ratio (SINR) model. SIC an efficient advance to tolerate the multiple adjacent concurrent communication to coexist, enable multi-packet reception. Cross layer design placed among the physical layer and MAC layer. The technique of both layers can support the additional difficult cross layer design intended use of improve system process. The proposed system consists of distributed link scheduling for solving the interference occurring during communications. This scheduling is an effectual process used for managing the interference relationships and with the help of advanced physical layer technique using SIC to take out the interference moreover decode the data by receivers.
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