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A novel channel-adaptive uplink access control protocol for nomadic computing

机译:用于游牧计算的新型频道自适应上行链路访问控制协议

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We consider the uplink access control problem in a mobile computing system, which is based on a cellular phone network in that a user can use the mobile device to transmit voice or file data. This resource management problem is important because efficient solution to uplink access control is critical for supporting a large user population with a reasonable level of quality of service (QoS). While there are a number of recently proposed protocols for uplink access control, these protocols possess a common drawback in that they do not exploit well the burst error properties, which are inevitable in a wireless communication system. In this paper, we propose a novel TDMA-based uplink access protocol, which employs a channel state dependent allocation strategy. Our protocol is motivated by two observations: (1) when channel state is bad, the throughput is low due to large amount of FEC (forward error correction) or excessive ARQ (automatic repeated request) is needed; and (2) because of (1), much of the mobile device's energy is wasted. 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 protocol then judiciously allocates channel bandwidth to contending users based on their channel conditions. Simulation results indicate that the proposed protocol considerably outperforms five state-of-the-art protocols in terms of packet loss, delay, and throughput.
机译:我们考虑移动计算系统中的上行链路访问控制问题,其基于蜂窝电话网络,因为用户可以使用移动设备来发送语音或文件数据。这种资源管理问题很重要,因为上行链路访问控制的有效解决方案对于支持具有合理的服务质量(QoS)的大型用户群体至关重要。虽然有许多最近提出的上行链路访问控制协议,但是这些协议具有共同的缺点,因为它们不会利用良好的突发误差属性,这在无线通信系统中是不可避免的。在本文中,我们提出了一种新的基于TDMA的上行链路访问协议,其采用信道状态相关分配策略。我们的协议受到两个观察的动机:(1)当信道状态不好时,由于大量FEC(前向纠错)或过度ARQ(自动重复请求),吞吐量很低; (2)因为(1),大部分移动设备的能量都被浪费了。所提出的协议与底层物理层密切合作,因为通过观察每个移动用户的信道状态信息(CSI),MAC协议首先将一组具有良好CSI的用户从上行链路帧的请求争用阶段中收集的请求分离。然后,该协议基于其信道条件明智地将信道带宽分配给竞争用户。仿真结果表明,该协议在丢包,延迟和吞吐量方面大大优于五个最先进的协议。

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