IEEE 802.15.4无线体域网络中结合建设性时隙分配的巨大偏好数据转发(IPDF)方案的性能分析

S. Sindhuja Banu, K. Baskaran
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引用次数: 2

摘要

在无线宽带网络中,紧急数据传输过程中的大时间延迟是一项具有挑战性的任务,因为它涉及将时间敏感的关键信息传输到接收器以立即治疗患者。本文旨在以最小的延迟和能量消耗,将海量偏好数据(IPD)有效地传输到各自的最终用户。在允许的标准范围内修改IEEE 802.15.4 MAC超帧,设计并实现了根据数据类型有效分配时隙的IPDF路由方案。争用空闲期(CFP)中的保证时隙(GTS)分别在t0和t1分配给该时隙的占有者和非占有者节点的IPD。这提供了即时和有保证的数据传输,而没有任何进一步的延迟,并且还减少了在争用访问周期(CAP)上通道争用的不必要等待时间,从而使功耗和延迟最小化。CAP进一步分为两个阶段,分别传输所有者和非所有者的次要偏好数据(MPD),从而最大限度地减少数据包的碰撞,从而进一步降低MPD的延迟和功耗。在NS2中对IPDF方案进行了仿真和性能分析。与IEEE 802.15.4 MAC标准和PA-MAC相比,IPD实现了延迟和功耗最小化、PDR和吞吐量最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of Immense Preference Data Forwarding (IPDF) Scheme incorporated with Constructive Time Slot Allocation in IEEE 802.15.4 for Wireless Body Area Networks
A large time delay during emergency data transfer in WBAN is a challenging task since it involves transmission of time sensitive crucial information to the receiver for immediate treatment of the patient. This paper aims in providing an efficient transmission of Immense Preference Data (IPD) to the respective end user with minimal delay and energy consumption. IEEE 802.15.4 MAC superframe was altered within permitted standards and IPDF Routing Scheme was designed and implemented in which, time slots were efficiently allocated according to data type. Guaranteed Time Slots (GTS) in Contention Free Period (CFP) was allocated to IPD of the slot's possessor and the non-possessor node at t0 and t1 respectively. This provides an immediate and guaranteed transfer of data without any further delay and unnecessary waiting time for channel contention at Contention Access Period (CAP) was also reduced, so as to add to the minimization of power consumption and latency. CAP was further divided into two phases for transmitting Minor Preference Data (MPD) of possessor and non-possessor which minimizes collision of data packets that further decreases delay and power consumption of MPD. Simulations and performance analysis of IPDF scheme were carried out in NS2. Delay and power consumption minimization and PDR and throughput maximization for IPD in comparison to IEEE 802.15.4 MAC standard and PA-MAC was achieved.
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