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首页> 外文期刊>ScientificWorldJournal >New Ray Tracing Method to Investigate the Various Effects on Wave Propagation in Medical Scenario: An Application of Wireless Body Area Network
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New Ray Tracing Method to Investigate the Various Effects on Wave Propagation in Medical Scenario: An Application of Wireless Body Area Network

机译:新的光线跟踪方法调查医学方案中波传播的各种效果:无线体积区域网络的应用

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摘要

The advent of technology with the increasing use of wireless network has led to the development of Wireless Body Area Network (WBAN) to continuously monitor the change of physiological data in a cost efficient manner. As numerous researches on wave propagation characterization have been done in intrabody communication, this study has given emphasis on the wave propagation characterization between the control units (CUs) and wireless access point (AP) in a hospital scenario. Ray tracing is a tool to predict the rays to characterize the wave propagation. It takes huge simulation time, especially when multiple transmitters are involved to transmit physiological data in a realistic hospital environment. Therefore, this study has developed an accelerated ray tracing method based on the nearest neighbor cell and prior knowledge of intersection techniques. Beside this, Red-Black tree is used to store and provide a faster retrieval mechanism of objects in the hospital environment. To prove the superiority, detailed complexity analysis and calculations of reflection and transmission coefficients are also presented in this paper. The results show that the proposed method is about 1.51, 2.1, and 2.9 times faster than the Object Distribution Technique (ODT), Space Volumetric Partitioning (SVP), and Angular Z-Buffer (AZB) methods, respectively. To show the various effects on received power in 60 GHz frequency, few comparisons are made and it is found that on average −9.44 dBm, −8.23 dBm, and −9.27 dBm received power attenuations should be considered when human, AP, and CU move in a given hospital scenario.
机译:随着无线网络使用的越来越多的技术出现,导致了无线体积网络(WBAN)的发展,以以成本有效的方式连续监测生理数据的变化。由于在Introbody通信中已经完成了对波传播表征的许多研究,该研究强调了医院场景中的控制单元(CUS)和无线接入点(AP)之间的波传播表征。射线跟踪是一种用于预测射线以表征波传播的光线的工具。它需要巨大的模拟时间,尤其是当涉及多个发射机时涉及在现实医院环境中传输生理数据时。因此,该研究开发了一种基于最近邻电池的加速射线跟踪方法及交叉技术的先验知识。除此之外,红黑树用于存储和提供医院环境中对象的更快的检索机制。为了证明优越性,本文还提出了详细的复杂性分析和反射和透射系数的计算。结果表明,该方法分别比物体分配技术(ODT),空间体积分配(SVP)和角Z缓冲(AZB)方法快速为1.51,2.1和2.9倍。为了显示60 GHz频率的接收功率的各种影响,因此,应在人类,AP和Cu移动时考虑平均-9.44 dBm,-8.23 dBm,以及-9.27 dBm,相应的比较很少有比较。在特定的医院情景中。

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