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Broadcasting and transmission coordination for ad hoc and sensor networks.

机译:临时和传感器网络的广播和传输协调。

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This thesis studies the performance benefit of coordination in wireless sensor networks (WSNs) and ad hoc networks (AHNs). WSNs are often comprised of a large number of inexpensive nodes with short battery life and limited communication and processing capabilities. AHNs are wireless networks operating without the benefits of network infrastructure (basestations) or centralized control.;WSNs often require control messages be broadcast to the entire network. We study the performance of a class of randomized broadcast protocols that employ coordination to reduce the transmission of redundant messages and to reduce the occurrence of message collisions. Specifically, information coordination entails a potential transmitter employ local information to infer whether or not its potential receivers would be interested in its message, while communication coordination entails a potential transmitter employ local information to infer whether or not its transmission would interrupt other ongoing transmissions. The individual and joint benefits of these two forms of coordination are assessed through their impact on a variety of natural performance indicators.;AHNs working with limited spectrum perform best when simultaneous transmissions are coordinated to avoid collisions. Optimal transmission coordination is a combinatorial optimization problem that is, in general, intractable for large size networks, even with global information and central control. Constraints on simultaneous transmissions may arise from both transceiver limitations (e.g., half-duplex designs) and from requirements on the signal to interference ratio. We study the transmission coordination optimization problem under a variety of natural communication constraints. Our work identifies particular instances where the problem may be solved by greedy algorithms, and studies the performance of several natural heuristic solutions.
机译:本文研究了无线传感器网络(WSN)和自组织网络(AHN)中协调的性能优势。 WSN通常由大量廉价节点组成,这些节点的电池寿命短,通信和处理能力有限。 AHN是没有网络基础设施(基站)或集中控制优势的无线网络。WSN通常要求将控制消息广播到整个网络。我们研究了一类使用协调来减少冗余消息的传输并减少消息冲突发生的随机广播协议的性能。具体地说,信息协调需要潜在的发射机使用本地信息来推断其潜在接收机是否会对它的消息感兴趣,而通信协调需要潜在的发射机使用本地信息来推断其传输是否会中断其他正在进行的传输。这两种协调形式的个人和共同利益是通过它们对各种自然性能指标的影响来评估的。在协调同时传输以避免冲突的情况下,频谱有限的AHN表现最佳。最佳的传输协调是一个组合优化问题,通常对于大型网络来说,即使具有全局信息和中央控制,也难以解决。对同步传输的限制可能既来自收发器的局限性(例如,半双工设计),又来自对信号干扰比的要求。我们研究了多种自然通信约束下的传输协调优化问题。我们的工作确定了可能通过贪婪算法解决问题的特定情况,并研究了几种自然启发式解决方案的性能。

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