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Simple asynchronous multiple access (SAMA) for ad hoc wireless networks in unlicensed bands

机译:适用于非许可频段中的ad hoc无线网络的简单异步多路访问(SAMA)

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Effective spectrum sharing between non-interoperable radio devices as well as collocated but non-communicating radio networks is an important goal for the designers of RF spectrum. Apart from the traditional approach of selecting separate channels for distinct systems, there are methods such as spread spectrum, scheduling of transmissions in non-overlapping intervals to reduce collisions and also spatial diversity to reduce the effects of interference. The last two are the most promising methods to use to achieve multi-megabit data rates and high traffic densities. The listen-before-transmit (LBT) etiquette has been used with limited success in the past in decentralized RF environments to enable non-interoperable systems to share spectrum. We introduce the simple asynchronous multiple access (SAMA) scheme that combines some of the known channel access techniques in a novel way to achieve an implicit reservation effect that allows high throughput with modest overhead and low complexity without demanding interoperability or even explicit communications between the collocated systems. We analyze the throughput and spatial performance of SAMA. The analysis is based on the radio propagation law and the geometry of the users and antennas in the plane. It is aimed at establishing the fundamental performance bounds dictated by our basic assumptions. We cover the omni-directional antenna case and give preliminary results for the directional antenna.
机译:对于射频频谱的设计者来说,不可互操作的无线电设备之间以及并置但非通信的无线电网络之间的有效频谱共享是一个重要的目标。除了为不同系统选择单独信道的传统方法外,还有诸如扩频,以非重叠间隔调度传输以减少冲突以及以空间分集以减少干扰影响之类的方法。后两种是用于实现多兆位数据速率和高流量密度的最有前途的方法。过去,在分散的RF环境中使用先听后发(LBT)礼节取得了有限的成功,以使不可互操作的系统共享频谱。我们介绍了一种简单的异步多址访问(SAMA)方案,该方案以新颖的方式结合了一些已知的信道访问技术,以实现隐式的保留效果,该效果允许高吞吐量,适度的开销和低复杂度,而无需互操作性,甚至不需要在并置之间进行显式通信系统。我们分析了SAMA的吞吐量和空间性能。该分析基于无线电传播定律以及平面中用户和天线的几何形状。它旨在建立我们的基本假设所规定的基本性能界限。我们介绍了全向天线的情况,并给出了定向天线的初步结果。

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