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Random Access in Wireless Networks With Overlapping Cells

机译:重叠小区的无线网络中的随机访问

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We study cellular-like wireless networks in which the cells may overlap substantially, and a common channel is used for all cells. Thus, transmissions intended for one destination (or base station) can cause interference at neighboring destinations. We assume the use of a “collision-channel” model, in which arbitrary communication and interference regions are associated with each destination. The interaction between such cells is best exemplified if the protocol of access in each cell is pure random access, i.e., Slotted Aloha. We derive a mathematical formula for the maximum achievable throughput for multiple-cell networks that satisfy a “balance” condition, which is related to (but not as stringent as) symmetry. This formula implies that the throughput achieved in a cell is affected only by the degree of overlap with adjacent cells, i.e., a cell''s throughput is not affected by transmissions that are outside of its interference region. Moreover, we show that, at the point of maximum throughput, the expected channel traffic is one packet per slot in each cell, an extension of the result obtained many years ago for single-destination networks.
机译:我们研究了类似蜂窝的无线网络,其中的小区可能会大量重叠,并且所有小区都使用一个公共信道。因此,用于一个目的地(或基站)的传输可能会在相邻目的地造成干扰。我们假定使用“冲突通道”模型,其中任意通信和干扰区域与每个目的地相关联。如果每个小区中的访问协议是纯随机访问,即时隙Aloha,则最好例示这种小区之间的交互。我们推导了满足“平衡”条件的多小区网络的最大可实现吞吐量的数学公式,该条件与对称性有关(但不严格)。该公式暗示在小区中实现的吞吐量仅受与相邻小区的重叠程度的影响,即,小区的吞吐量不受其干扰区域之外的传输的影响。而且,我们表明,在最大吞吐量的点上,预期的信道业务量是每个小区中每个时隙一个数据包,这是对多目标网络多年前获得的结果的扩展。

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