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Hierarchy schedule sensing protocol for CDMA wireless networks performance study under multipath, multiuser interference, and collision-capture effect

机译:多路径,多用户干扰和冲突捕获效应下用于CDMA无线网络性能研究的层次调度感知协议

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This paper studies a multiple access control protocol, hierarchy schedule sensing protocol, for CDMA wireless data centric networks characterized by high terminal density in a small area. In particular, this paper focuses on the impact of packet collision with capture effect on performance of a network based on the protocol, where a common-coded permission frame beacon is used to schedule-transmission requests to avoid collisions. To further reduce scheduling delay, hierarchical group-based coding is introduced to the scheme. The performance of such a network is analyzed considering packet collisions, capture effect, multipath-interference (Ml), and multiuser interference (MUI) with the help of a Markovian chain model. The average packet collision-rate with and without capture effect is explicitly derived, the performance of the protocol is compared with traditional receiver-based code protocol to show that, despite its low complexity, it is a fairly robust multiple access control protocol featured by uniformly high throughput and low delay.
机译:本文研究了针对以小区域内高终端密度为特征的CDMA无线数据中心网络的多址控制协议,层次调度感知协议。尤其是,本文重点讨论基于协议的数据包冲突以及捕获对网络性能的影响,在该协议中,使用公共编码的许可帧信标来调度传输请求以避免冲突。为了进一步减少调度延迟,将基于分层组的编码引入该方案。在马尔可夫链模型的帮助下,考虑了数据包冲突,捕获效果,多径干扰(M1)和多用户干扰(MUI),分析了这种网络的性能。明确推导了具有和不具有捕获效果的平均数据包冲突率,将该协议的性能与传统的基于接收器的代码协议进行了比较,以表明尽管其复杂度较低,但它是一个相当强大的多访问控制协议,具有统一的特点高吞吐量和低延迟。

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