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RPMA: Receiver Prohibition Multiple Access for Collision-controlled Wireless Mesh Networks and Mobile Ad Hoc Networks

机译:RPMA:接收器禁止碰撞控制无线网状网络和移动临时网络的多次访问

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There are two main problems with the current paradigm for medium access control (MAC) in multihop wireless LANs, especially when quality of service (QoS) is required. The first is that it employs mandatory carrier sensing to avoid collisions, but such a transmitter-centric paradigm is vulnerable to the hidden terminal problem, and is inefficient in terms of spatial reuse especially when power controlled. The second is that it relies on RTS/GTS dialogues to mitigate the hidden terminal problem, but RTS/CTS messages are collision-prone and thus unreliable/ineffective for this purpose. In this paper, we propose a MAC scheme based on the receiver-centric paradigm called receiver prohibition multiple access (RPMA) with mixed-band busytone (MB) that can resolve the aforementioned problems. Advantages of RPMA-based protocols over IEEE 802.11/11e include collision freedom/controllability, higher energy efficiency, as well as being not vulnerable to collisions of RTS/CTS messages. Advantages of MB-based protocols over previous busytone protocols include the capability for interference prevention against CSMA or frequency-hopping devices that are not aware of busytone or MB. A resultant RPMA/MB protocol may be more complex and require additional hardware as compared to IEEE 802.11/11e, but it is expected to become feasible and competitive in cost with the advance of VLSI technology. Moreover, it can achieve the aforementioned advantages with backward compatibility to IEEE 802.11/11e, in the presence of other CSMA or frequency-hopping appliances.
机译:多跳无线LAN中的中途访问控制(MAC)的当前范式有两个主要问题,特别是当需要服务质量(QoS)时。首先,它采用强制性载波感测以避免碰撞,但是这种发送器中心范式容易受到隐藏终端问题的影响,并且在空间重用方面效率低下,特别是当功率控制时。其次,它依赖于RTS / GTS对话来减轻隐藏的终端问题,但是RTS / CTS消息是易于冲突,因此为此目的而不可靠/无效。在本文中,我们提出了一种基于接收器禁止多次访问(RPMA)的接收器为中心的MAC方案,其中可以解决上述问题的混合带繁忙的乐队(MB)。基于RPMA的协议在IEEE 802.11 / 11e上的优点包括碰撞自由度/可控性,更高的能量效率,以及不容易受到RTS / CTS消息的冲突。基于MB的基于MB的优点在以前的忙碌协议上包括对不了解忙或MB的CSMA或跳频设备的干扰防止的能力。与IEEE 802.11 / 11e相比,所得到的RPMA / MB协议可能更复杂并且需要额外的硬件,但是预计通过VLSI技术的进展,预计在成本中变得可行和竞争。此外,在存在其他CSMA或跳频设备的存在中,它可以实现上述与IEEE 802.11 / 11e的向后兼容性的优点。

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