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A tier-based asynchronous scheduling scheme for delay constrained energy efficient connectivity in asymmetrical wireless devices

机译:基于层的异步调度方案,用于非对称无线设备中的延迟受限的节能连接

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Effective energy conservation scheme should support the asymmetrical nature of wireless devices like capacity limitations and signal strength in an efficient end-to-end connectivity manner. Prolonging network lifetime has a major impact on the network and on the energy consumption of each device individually. This work considers an approach in which on a dissimilar-based schedules, the interfaces change their state in which the energy conservation mechanism takes place. The proposed model takes into account metrics like the signal strength and devices' capacity limitations, and encompasses them into the layered asynchronous scheduling scheme for providing end-to-end reliability and performance measures extraction. This work mainly proposes an association for controlling the power consumption parameters into a bounded limit and within a range of bounded values, measuring at the same time the critical transmitting range of each device. Through the designed two-tier architecture and layering approach, and through the experimental simulation, the proposed energy-aware management scheme is thoroughly evaluated in order to limit these parameters in terms of traffic density, storage measurements and the impact of caching on each device, into the desired values.
机译:有效的节能方案应以有效的端到端连接方式支持无线设备的不对称特性,例如容量限制和信号强度。延长网络寿命会严重影响网络以及每个设备的能耗。这项工作考虑了一种方法,其中在基于异类的计划中,接口会更改其发生节能机制的状态。提出的模型考虑了信号强度和设备容量限制等指标,并将其包含在分层异步调度方案中,以提供端到端的可靠性和性能指标提取。这项工作主要提出一种关联,用于将功耗参数控制在有界限制和有界值范围内,同时测量每个设备的临界传输范围。通过设计的两层体系结构和分层方法,并通过实验仿真,对提出的能量感知管理方案进行了全面评估,以在流量密度,存储量度和缓存对每个设备的影响方面限制这些参数,到所需的值。

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