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Exploiting processing gain in wireless ad hoc networks using synchronous collision resolution medium access control schemes

机译:使用同步冲突解决方案媒体访问控制方案在无线自组织网络中利用处理增益

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Signal spreading is used in military wireless networks to make them more difficult to detect, jam, and intercept. With signal spreading comes the opportunity to use code division multiple access (CDMA) to create multiple channels using the same spectrum. The requirement for all nodes in ad hoc networks to receive broadcast transmissions from any of their neighbors has made implementing channelization schemes impractical, especially with contention protocols. When CDMA is the method of channelization, then the near-far effect must also be addressed. We describe these challenges and then how the contention based medium access control protocol, synchronous collision resolution (SCR) solves them. We describe how SCR creates a geometry of transmitters that benefits from using CDMA. We provide results of several different types of simulation experiments that demonstrate the relative benefits of different levels of processing gain. We demonstrate that tuning SCR for the available processing gain dramatically improves throughput.
机译:信号扩展在军事无线网络中使用,使其更加难以检测,阻塞和拦截。信号扩展带来了使用码分多址(CDMA)创建使用相同频谱的多个信道的机会。自组织网络中所有节点都必须从其邻居中的任何一个接收广播传输的要求使得实施信道化方案不切实际,尤其是在竞争协议中。当CDMA是信道化方法时,还必须解决远近效应。我们描述了这些挑战,然后描述了基于竞争的媒体访问控制协议,同步冲突解决方案(SCR)如何解决它们。我们描述了SCR如何创建受益于使用CDMA的发射机的几何结构。我们提供了几种不同类型的仿真实验的结果,这些结果证明了不同级别的处理增益的相对优势。我们证明了针对可用处理增益调整SCR可以显着提高吞吐量。

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