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Efficient multiple access control using a channel-adaptive protocol for a wireless ATM-based multimedia services network

机译:基于无线ATM的多媒体服务网络使用信道自适应协议的高效多路访问控制

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As tetherless multimedia computing environments are becoming much desired, broadband wireless communication infrastructures such as wireless ATM will play an important role and thus, are expected to proliferate. However, despite much research efforts have been expended, the multiple access control of the precious bandwidth remains a challenging problem because of the existence of two common drawbacks in state-of-the-alt protocols f (1) channel condition is ignored or not exploited, and (2) inflexible or biased time slots allocation algorithms are used. Indeed, existing protocols mostly ignore the burst errors due to fading and shadowing, which are inevitable in a mobile and wireless communication environment. A few protocols take into account the burst errors but just “handle” the errors in a passive manner. On the other hand, most of the existing protocols employ an inflexible or biased allocation algorithm such that over-provisioning may occur for a certain class of users at the expense of the poor service quality received by other users. ln this paper, a new judicious MAC protocol, called SCAMA (synergistic channel adaptive multiple access) is proposed. The proposed protocol works closely with the underlying physical layer in that through observing the channel state information (CSI) of each mobile user, the MAC protocol first segregates a set of users with good CSI from requests gathered in the request contention phase of an uplink frame. The MAC protocol then judiciously allocates information time slots to the users according to the respective traffic types, CSI, urgency, and throughput, which are collectively represented by a novel and flexible priority function. Extensive simulation results indicate that the protocol is robust and considerably outperforms previous protocols.
机译:随着无线网络多媒体计算环境的迫切需求,诸如无线ATM之类的宽带无线通信基础设施将发挥重要作用,因此有望激增。然而,尽管已经进行了大量的研究工作,但是宝贵的带宽的多路访问控制仍然是一个具有挑战性的问题,因为在最新状态协议f(1)中存在两个共同的缺点,即信道条件被忽略或未被利用。 ,以及(2)使用不灵活或有偏差的时隙分配算法。实际上,现有协议大多忽略由于衰落和阴影引起的突发错误,这在移动和无线通信环境中是不可避免的。一些协议考虑了突发错误,但仅以被动方式“处理”错误。另一方面,大多数现有协议采用不灵活的或有偏见的分配算法,使得对于某些类别的用户可能发生过度供应,而以其他用户接收的较差的服务质量为代价。在本文中,提出了一种新的明智的MAC协议,称为SCAMA(协同信道自适应多路访问)。所提出的协议与基础物理层紧密协作,因为通过观察每个移动用户的信道状态信息(CSI),MAC协议首先将具有良好CSI的一组用户与在上行链路帧的请求竞争阶段收集的请求隔离开来。 。然后,MAC协议会根据相应的流量类型,CSI,紧急性和吞吐量明智地为用户分配信息时隙,这些类型分别由新颖而灵活的优先级功能表示。大量的仿真结果表明该协议是健壮的,并且大大优于以前的协议。

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