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LCO-MAC: A Low Latency, Low Control Overhead MAC Protocol for Wireless Sensor Networks

机译:LCO-MAC:无线传感器网络的低延迟,低控制架空MAC协议

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In wireless sensor networks (WSNs), a duty-cycling scheme is typically applied to the medium access control (MAC) protocol to reduce energy consumption due to idle listening. However, this scheme introduces huge end-to-end latency and still suffers from a large control packet overhead. We propose a new MAC protocol with low latency and low control overhead for WSNs use (the LCO-MAC). In our protocol, a DATA packet can be transmitted through multiple hops in a single duty cycle to shorten end-to-end latency. To reduce energy consumption caused by control packet overhead, we force one packet to play more than one role. In the initial transmission period, a control packet acts as an RTS (request to send) for a downstream node and a CTS (clear to send) for an upstream node. In the actual data transmission period, a DATA packet keeps its original DATA role for the downstream node, but also plays an ACK (acknowledgment) role for the upstream node. Our simulation using ns-2 has shown that LCO-MAC enables a notable improvement in energy efficiency and decreases end-to-end latency compared to those of RMAC.
机译:在无线传感器网络(WSN)中,通常将占空比控制(MAC)协议应用于媒体访问控制(MAC)协议,以降低由于闲置侦听而导致的能量消耗。然而,该方案介绍了巨大的端到端延迟,并且仍然存在大的控制分组开销。我们提出了一种新的MAC协议,具有低延迟和低控制开销,可用于WSNS使用(LCo-Mac)。在我们的协议中,可以在单个占空比中通过多个跳转传输数据分组,以缩短端到端延迟。为了减少由控制数据包开销引起的能耗,我们强制一个数据包播放多个角色。在初始传输时段中,控制分组充当用于上游节点的下游节点和CTS(清除发送)的RTS(要发送)。在实际数据传输时段中,数据包将其原始数据角色用于下游节点,但也播放上游节点的ACK(确认)角色。我们使用NS-2的模拟表明,LCO-MAC能够显着提高能量效率,并与RMAC相比降低端到端潜伏期。

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