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Optimized Sharable-Slot Allocation Using Multiple Channels to Reduce Data-Gathering Delay in Wireless Sensor Networks

机译:使用多通道优化共享插槽分配以减少无线传感器网络中的数据收集延迟

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摘要

The demand for event-driven real-time applications for timely and reliable data acquisition is growing in industrial sectors. However, it is challenging to satisfy the requirements since constraints such as limited available energy and bandwidth are inherent in a wireless sensor network. To deal with timely delivery, one desirable approach is to improve network throughput so that more real-time applications with tighter time constraints can be satisfied in any given network. To deal with reliable delivery, the use of a carrier sense multiple access mechanism for data transmission is preferred, along with the use of a sharable slot within which multiple nodes compete to send data. Thus, we present a method of using multiple channels and a way to optimize the size of the sharable slot. The proposed channel-slot–scheduling algorithm tries to optimize the size of a sharable slot when multiple channels are used. The algorithm also deals with situations where nodes generate multiple data packets in each round of a data-gathering period. It is shown through simulation that our approach greatly outperforms others on some selected metrics.
机译:对事件驱动的实时应用程序进行及时可靠的数据采集的需求在工业领域中日益增长。然而,由于诸如有限的可用能量和带宽的约束是无线传感器网络中固有的约束,因此满足要求是具有挑战性的。为了处理及时交付,一种理想的方法是提高网络吞吐量,以便可以在任何给定网络中满足更严格的时间约束的更多实时应用程序。为了处理可靠的传递,最好使用载波侦听多路访问机制进行数据传输,以及使用可共享的时隙,多个节点竞争发送数据。因此,我们提出了一种使用多个通道的方法以及一种优化可共享时隙大小的方法。当使用多个信道时,建议的信道时隙调度算法试图优化可共享时隙的大小。该算法还处理节点在数据收集周期的每一轮中生成多个数据包的情况。通过仿真显示,在某些选定指标上,我们的方法大大优于其他方法。

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