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Collision avoidance and resolution multiple access for multichannel wireless networks

机译:多通道无线网络的冲突避免和解决多路访问

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We introduce and analyze CARMA-MC (for collision avoidance and resolution multiple access for multiple channels), a new stable channel access protocol for multihop wireless networks with multiple channels. CARMA-MC relies on the assignment of a unique channel and a unique identifier to each node to support correct deterministic collision resolution in the presence of hidden terminals. CARMA-MC dynamically divides the channel of each node into cycles of variable length; each cycle consists of one or more receiving periods and a transmission period. During the receiving period, stations with one or more packets to send compete for the right to acquire the floor of a particular receiver's channel using a deterministic tree-splitting algorithm. Each receiving period consists of collision resolution steps. A single round of collision resolution (i.e., a success, and idle or a collision of control packets) is allowed in each contention step. The receiving period is initiated by the receiver and takes place in the channel assigned to the receiver station. The channel utilization and packet delays are studied analytically and by simulation.
机译:我们介绍和分析CARMA-MC(用于避免冲突和解决多通道多址访问问题),这是一种用于多通道多跳无线网络的新的稳定通道访问协议。 CARMA-MC依赖于为每个节点分配唯一的信道和唯一的标识符,以在存在隐藏终端的情况下支持正确的确定性冲突解决方案。 CARMA-MC动态地将每个节点的通道划分为可变长度的周期;每个周期由一个或多个接收周期和一个传输周期组成。在接收期间,具有一个或多个要发送的数据包的站将使用确定性的树分解算法来争夺获取特定接收者信道下限的权利。每个接收周期都包含冲突解决步骤。在每个竞争步骤中允许进行单轮冲突解决(即,成功,空闲或控制数据包冲突)。接收周期由接收器启动,并发生在分配给接收站的信道中。通过分析和仿真研究了信道利用率和分组延迟。

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