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On-demand synchronous X-MAC protocol

机译:按需同步X-MAC协议

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This paper proposes a hybrid duty-cycle Medium Access Control (MAC) protocol named as On-demand Synchronous X-MAC (OSX-MAC) to improve the performance of the X-MAC protocol. X-MAC, one of typical asynchronous duty-cycle MAC protocols, was designed to save energy in Wireless Sensor Networks (WSNs) by allowing awaken receivers to immediately respond in the middle of the preamble transmission. X-MAC, however, still inefficiently wastes a lot of time before delivering data frames due to two drawbacks; unavailability of the receiver's exact wake-up time and the lack of a mechanism to deal with collision frequented in congested WSNs. To solve these two problems, OSX-MAC is equipped with two techniques, an On-demand Schedule Exchange (OSE) scheme and a modified Binary Exponential Backoff (BEB) algorithm. Without the periodic schedule exchange, OSE lets the receiver explicitly provide its wakeup time whenever it acknowledges the sender. After that, the sender can transmit its preambles near the predicted wakeup time of its receiver. To reduce the degree of collisions, OSX-MAC also adopts the modified BEB algorithm that differs from the legacy BEB in that it does not reset the contention window (CW) to the predetermined initial CW but gradually decreases the CW for new transmissions. Simulation experiments confirmed that OSX-MAC outperformed X-MAC in terms of throughput and energy usage in various WSNs.
机译:本文提出了一种混合占空比的媒体访问控制(MAC)协议,称为按需同步X-MAC(OSX-MAC),以提高X-MAC协议的性能。 X-MAC是典型的异步占空比MAC协议之一,旨在通过允许唤醒的接收器在前同步码传输过程中立即做出响应,从而在无线传感器网络(WSN)中节省能源。然而,由于两个缺点,X-MAC在传送数据帧之前仍然无效率地浪费了大量时间。接收器的确切唤醒时间不可用,并且缺乏处理拥塞WSN中频繁发生的冲突的机制。为了解决这两个问题,OSX-MAC配备了两种技术:按需计划交换(OSE)方案和改进的二进制指数退避(BEB)算法。如果没有定期的时间表交换,则OSE使接收者在确认发送者时便明确提供其唤醒时间。之后,发送方可以在其接收方的预计唤醒时间附近发送其前同步码。为了减少冲突程度,OSX-MAC还采用了改进的BEB算法,该算法不同于传统的BEB,因为它不会将竞争窗口(CW)重置为预定的初始CW,而是逐渐降低了新传输的CW。仿真实验证实,在各种WSN中,OSX-MAC在吞吐量和能耗方面均优于X-MAC。

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