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Enhanced hybrid drive scheme for power saving in wireless ad-hoc networks

机译:增强型混合驱动方案,可在无线自组织网络中实现节能

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The wireless networks have become an integral component of the modern communication system. The mobile terminals have limited battery life. Also ad-hoc networks are used in situations like disaster management, battlefield etc. where the resources available for battery recharge would be limited. Hence energy efficiency is an important design criterion for ad-hoc networks. IEEE 802.11 provides a mechanism known as PSM (Power saving mechanism) in MAC layer which reduces the power consumption by the transition of mobile stations between awake and doze state. Here the energy efficiency is high when the network load is small but decreases with the increase in network load. For RTS-CTS scheme, the energy efficiency is high when the network load is heavy. Hybrid Drive Scheme (HDS) combines RTS-CTS scheme with the conventional PSM so that energy efficiency is high even if the network load is light or heavy. But after each data transmission, beacon frames are transmitted which cause additional energy wastage. This paper presents a novel energy saving mechanism, called as Enhanced Hybrid Drive Scheme (E-HDS), which extract the features of PSM as well as RTS-CTS scheme. Here a single beacon frame is transmitted per beacon interval which reduces energy wastage. Hence E-HDS out-performs HDS. Also E-HDS could obtain high energy efficiency than conventional scheme in the IEEE 802.11 standard irrespective of the network load conditions.
机译:无线网络已经成为现代通信系统的组成部分。移动终端的电池寿命有限。 Ad-hoc网络还用于灾难管理,战场等情况,这些情况下可用于电池充电的资源将受到限制。因此,能源效率是自组织网络的重要设计标准。 IEEE 802.11在MAC层中提供了一种称为PSM(省电机制)的机制,该机制可通过移动台在唤醒和休眠状态之间的转换来降低功耗。这里,当网络负载较小时,能源效率很高,但随着网络负载的增加而降低。对于RTS-CTS方案,当网络负载很重时,能量效率很高。混合驱动方案(HDS)将RTS-CTS方案与常规PSM结合使用,因此即使网络负载轻或重,能源效率也很高。但是在每次数据传输之后,信标帧都会被传输,这会导致额外的能量浪费。本文提出了一种新型的节能机制,称为增强型混合驱动方案(E-HDS),它提取了PSM和RTS-CTS方案的特征。这里,每个信标间隔发送单个信标帧,这减少了能量浪费。因此,E-HDS的性能优于HDS。此外,无论网络负载情况如何,E-HDS均可比IEEE 802.11标准中的常规方案获得更高的能源效率。

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