Optimal fully adaptive power management protocols for asynchronous multi-hop ad hoc wireless networks

Zi-Tsan Chou, Yu-Hsiang Lin, R. Jan
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引用次数: 7

Abstract

In wireless ad hoc networks, IEEE 802.11 power management may completely fail if power-saving (PS for short) stations are out of synchronization. To fix this problem, proposed various cyclic quorum-based power management (CQPM) protocols, which, however, may also completely fail if some PS stations have different schedule repetition intervals (SRIs). To conquer all these problems, we propose the OAPM protocol, which has the following attractive features. (i) By means of novel factor-hereditary quorum space techniques, OAPM ensures that two PS neighbors can discover each other in finite time regardless of their clock difference and their individual SRIs. (ii) Given the maximum value of SRI, Smax, the number of tunable SRIs for every PS station is Smax. (iii) The idle duty cycles for all SRIs are minimal. (iv) The time complexity of OAPM neighbor maintenance is constant. (v) A cross-layer SRI adjustment scheme is proposed such that a PS station can adaptively tune its SRI according to traffic QoS requirements. Primary simulation results show that OAPM achieves better energy efficiency than existing CQPM protocols.
异步多跳自组织无线网络的最佳全自适应电源管理协议
在无线自组织网络中,如果省电站(简称PS)不同步,IEEE 802.11电源管理可能会完全失败。为了解决这个问题,提出了各种基于循环群体的电源管理(CQPM)协议,然而,如果某些PS站具有不同的调度重复间隔(SRIs),这些协议也可能完全失败。为了解决这些问题,我们提出了OAPM协议,它具有以下吸引人的特点。(i)通过新颖的因子遗传仲裁空间技术,OAPM确保两个PS邻居在有限时间内发现彼此,而不考虑它们的时钟差异和各自的sri。(ii)给定SRI的最大值Smax,则每个PS站的可调SRI数为Smax。(iii)所有sri的空闲占空比最小。(iv) OAPM邻居维护的时间复杂度是恒定的。(v)提出了一种跨层SRI调整方案,使PS站能够根据流量QoS需求自适应调整其SRI。初步仿真结果表明,OAPM比现有的CQPM协议具有更好的能效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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