Cyclic orthogonal codes in CDMA-based asynchronous Wireless Body Area Networks

Ali M Tawfiq, J. Abouei, K. Plataniotis
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引用次数: 16

Abstract

This work considers a CDMA-based Wireless Body Area Network (WBAN) where multiple biosensors communicate simultaneously to a central node in an asynchronous fashion. The main goal of this paper is to present an augmentation protocol for the physical layer of the IEEE 802.15.6 specifications with focus on the Multiple Access Interference (MAI) mitigation in a proactive WBAN. The proposed methodology uses a new set of orthogonal codes from the conventional Walsh-Hadamard matrix which has the special property of “cyclic orthogonality”. This property ensures that the asynchronous nature of the WBAN does not produce MAI amongst the multiple on-body sensors. The work investigates the optimality of such codes in WBANs from the link Bit Error Rate (BER) performance. We show that the proposed spreading codes outperform conventional non-cyclic orthogonal spreading codes in a practical Rayleigh fading environment.
基于cdma的异步无线体域网络中的循环正交码
这项工作考虑了基于cdma的无线体域网络(WBAN),其中多个生物传感器以异步方式同时与中心节点通信。本文的主要目标是针对IEEE 802.15.6规范的物理层提出一种增强协议,重点关注主动WBAN中的多址干扰(MAI)缓解。该方法采用了一组新的正交码,该码来自于传统的Walsh-Hadamard矩阵,具有“循环正交”的特殊性质。此属性确保WBAN的异步特性不会在多个体上传感器之间产生MAI。该工作从链路误码率(BER)性能的角度研究了这种编码在wban中的最优性。在实际的瑞利衰落环境下,本文提出的扩频码优于传统的非循环正交扩频码。
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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