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首页> 外文期刊>IEEE/ACM Transactions on Networking >Code assignment for hidden terminal interference avoidance in multihop packet radio networks
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Code assignment for hidden terminal interference avoidance in multihop packet radio networks

机译:多跳分组无线网络中用于避免隐藏终端干扰的代码分配

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摘要

Hidden terminal interference is caused by the (quasi-) simultaneous transmission of two stations that cannot hear each other, but are both received by the same destination station. This interference lowers the system throughput and increases the average packet delay. Some random access protocols that reduce this interference have been proposed, e.g., BTMA protocol. However, the hidden terminal interference can be totally avoided only by means of code division multiple access (CDMA) schemes. In the paper, the authors investigate the problem of assigning orthogonal codes to stations so as to eliminate the hidden terminal interference. Since the codes share the fixed channel capacity allocated to the network in the design stage, their number must not exceed a given bound. The authors seek assignments that minimize the number of codes used. They show that this problem is NP-complete, and thus computationally intractable, even for very restricted but very realistic network topologies. Then, they present optimal algorithms for further restricted topologies, as well as fast suboptimal centralized and distributed heuristic algorithms. The results of extensive simulation set up to derive the average performance of the proposed heuristics on realistic network topologies are presented.
机译:隐藏的终端干扰是由于两个站点的(准)同时传输而导致的,这两个站点彼此听不到,但都被同一目标站点接收。这种干扰会降低系统吞吐量并增加平均数据包延迟。已经提出了一些减少这种干扰的随机接入协议,例如BTMA协议。但是,仅通过码分多址(CDMA)方案就可以完全避免隐藏的终端干扰。在本文中,作者研究了为站点分配正交码的问题,以消除隐藏的终端干扰。由于这些代码共享在设计阶段分配给网络的固定信道容量,因此它们的数量不得超过给定范围。作者寻求尽量减少使用的代码数量的作业。他们表明,即使对于非常受限但非常现实的网络拓扑,此问题也是NP完全的,因此在计算上是棘手的。然后,他们提出了用于进一步受限拓扑的最佳算法,以及快速的次优集中式和分布式启发式算法。提出了广泛的仿真结果,以得出所提出的启发式方法在实际网络拓扑上的平均性能。

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