The success rate of line-based deployed barrier coverage in cartesian and polar coordinate systems

Shuyao Wu
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Abstract

The integrity of barrier coverage has an important influence on the communication quality of wireless sensor networks. Therefore, calculating the success rate of barrier coverage is of great significance in the study of wireless sensor network coverage. Due to the influence of environmental factors, wireless sensor nodes will be offset accordingly during the process of throwing. This paper mainly focuses on the success rate of line-based deployed barrier coverage under right-angle and polar coordinate systems that obey normal distribution and compares the success rate of barrier coverage under right-angle and polar coordinate systems through simulation. The experimental results show that the success rate of the line-based deployed barrier coverage increases as the offset decreases and the simulated success rate is almost lower than the analogue success rate, both in the Cartesian and polar coordinate systems when the experimental data meet the constraints. The simulated values are more consistent with the analogue values in the Cartesian coordinate system, but the deviations in the Polar coordinate system are larger.
在直角坐标系和极坐标系下基于线的部署屏障覆盖的成功率
屏障覆盖的完整性对无线传感器网络的通信质量有重要影响。因此,计算障碍物覆盖成功率在无线传感器网络覆盖研究中具有重要意义。由于环境因素的影响,无线传感器节点在投掷过程中会发生相应的偏移。本文主要研究服从正态分布的直角坐标系和极坐标坐标系下基于线的部署屏障覆盖成功率,并通过仿真比较直角坐标系和极坐标坐标系下的屏障覆盖成功率。实验结果表明,当实验数据满足约束条件时,在直角坐标系和极坐标系下,基于线的部署屏障覆盖成功率随着偏移量的减小而增大,模拟成功率几乎低于模拟成功率。在直角坐标系下的模拟值与模拟值较为一致,但在极坐标系下的偏差较大。
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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