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Making transmission schedules immune to topology changes in multi-hop packet radio networks

机译:使传输调度不受多跳分组无线网络中拓扑变化的影响

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Transmissions scheduling is a key design problem in packet radio networks, relevant to TDMA and CDMA systems. A large number of topology-dependent scheduling algorithms are available, in which changes of topology inevitably require recomputation of transmission schedules. The need for constant adaptation of schedules to mobile topologies entails significant, sometime insurmountable, problems. These are the protocol overhead due to schedule recomputation, performance penalty due to suspension of transmissions during schedule reorganization, exchange of control message and new schedule broadcast. Furthermore, if topology changes faster than the rate at which new schedules can be recomputed and distributed, the network can suffer a catastrophic failure. The authors propose a robust scheduling protocol which is unique in providing a topology transparent solution to scheduled access in multi-hop mobile radio networks. The proposed solution adds the main advantages of random access protocols to scheduled access. Similarly to random access it is robust in the presence of mobile nodes. Unlike random access, however, it does not suffer from inherent instability, and performance deterioration due to packet collisions. Unlike current scheduled access protocols, the transmission schedules of the proposed solution are independent of topology changes, and channel access is inherently fair and traffic adaptive.
机译:传输调度是与TDMA和CDMA系统相关的分组无线网络中的关键设计问题。有许多拓扑相关的调度算法可用,其中拓扑的更改不可避免地需要重新计算传输调度。不断调整时间表以适应移动拓扑的需求带来了重大的问题,有时是无法克服的。这些是由于时间表重新计算而引起的协议开销,由于时间表重新组织期间的传输暂停,控制消息的交换和新的时间表广播而导致的性能损失。此外,如果拓扑更改的速度快于重新计划和分发新时间表的速率,则网络可能会遭受灾难性故障。作者提出了一种健壮的调度协议,该协议在为多跳移动无线网络中的调度访问提供拓扑透明解决方案方面是独一无二的。所提出的解决方案将随机访问协议的主要优点添加到了计划访问中。与随机访问类似,它在存在移动节点的情况下也很健壮。但是,与随机访问不同,它不会遭受固有的不稳定,也不会因数据包冲突而导致性能下降。与当前的调度访问协议不同,所提出的解决方案的传输调度与拓扑变化无关,并且信道访问固有地是公平的并且业务自适应。

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