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TRACE: time reservation using adaptive control for energy efficiency

机译:跟踪:使用自适应控制能源效率的时间预留

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Time reservation using adaptive control for energy efficiency (TRACE) is a time frame based media access control (MAC) protocol designed primarily for energy-efficient reliable real-time voice packet broadcasting in a peer-to-peer, single-hop infrastructureless radio network. Such networks have many application areas for various scenarios that obey a strongly connected group mobility model, such as interactive group trips, small military or security units, and mobile groups of hearing impaired people. TRACE is a centralized MAC protocol that separates contention and data transmission, providing high throughput, bounded delay, and stability under a wide range of data traffic. Furthermore, TRACE uses dynamic scheduling of data transmissions and data summarization prior to data transmission to achieve energy efficiency, which is crucial for battery operated lightweight radios. In addition, energy dissipation is evenly distributed among the nodes by switching network controllers when the energy from the current controller is lower than other nodes in the network, and reliability is achieved through automatic controller backup features. TRACE can support multiple levels of quality-of-service, and minimum bandwidth and maximum delay for voice packets are guaranteed to be within certain bounds. In this paper, we describe TRACE in detail and evaluate its performance through computer simulations and theoretical analysis.
机译:使用适应性控制能源效率(轨迹)的时间预留是一种基于时间帧的媒体访问控制(MAC)协议,主要用于在对等,单跳基础设施无线电网络中的节能可靠实时语音包广播。 。这些网络具有许多应用领域,用于遵守强烈连接的群体移动模型,例如互动小组旅行,小型军事或安全单位以及听力障碍者的移动组。追踪是一个集中式MAC协议,将争用和数据传输分开,提供高吞吐量,有界延迟和在各种数据流量下的稳定性。此外,跟踪在数据传输之前使用数据传输和数据摘要的动态调度,以实现能效,这对于电池操作的轻量级无线电至关重要。此外,当来自当前控制器的能量低于网络中的其他节点时,通过切换网络控制器在节点中均匀地分布能量耗散,并且通过自动控制器备份功能实现可靠性。跟踪可以支持多个级别的服务质量,并且可以保证语音数据包的最小带宽和最大延迟,以便在某些范围内。在本文中,我们通过计算机模拟和理论分析描述了详细的痕迹并评估其性能。

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