体域网低占空比超宽带通信设计

K. Sodeyama, R. Kohno
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引用次数: 1

摘要

低占空比(LDC)算法是一种干扰抑制技术,它通过降低脉冲重复间隔或脉冲占用时间来减少对现有无线电系统的平均干扰。此外,LDC算法还通过降低脉冲重复间隔或脉冲占用时间来降低功耗。因此,为了设计一种适用于低数据低功耗体制下的体域网(BAN)的新型超宽带(UWB)系统,有必要从理论和实践的角度特别关注UWB系统的能量需求和组织加热(损伤)的风险因素。本文研究了低数据速率UWB系统(如BAN无线传感器网络)与现有的OFDM宽带系统的共存环境。为了分析LDC算法在脉冲超宽带(LDC-UWB)系统中的抗干扰能力,研究了两种LDC-UWB系统的帧误码率(FER):二极信号和单极信号。通过计算机仿真表明,无论超宽带通信系统的传输能量如何定义,LDC算法都是一种有效的低数据速率超宽带BAN通信干扰抑制技术,并且二元极子信号适用于LDC-UWB系统以减轻对其他无线电系统的干扰。我们进一步研究了LDC-UWB系统在各种UWB通信发射功率定义下的适当占空比。
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Low duty-cycle UWB communications design for body area network
Low duty-cycle (LDC) algorithm is interference mitigation technique, which can reduce the average interference to the existing radio systems by lowering pulse repetition interval or pulse occupation time. Moreover, LDC algorithm is also low power consumption by using lowering pulse repetition interval or pulse occupation time. Thus, in order to design a novel ultra wideband (UWB) system for body area network (BAN) application in the low data low power regime, it is necessary to pay special attentions in the energy requirements and the risk factor for tissue heating (damage) of UWB systems from theoretical and practical viewpoints. In this paper, the coexistence environment between low data rate UWB system such as wireless sensor network including BAN and the existing wideband system using OFDM is considered. In order to analyze the interference mitigation capability of LDC algorithm with impulse based UWB (LDC-UWB) system, the frame error rate (FER) of wideband OFDM system is examined for two types of LDC-UWB system: binary pole signals and mono pole signals. We present that LDC algorithm is an efficient interference mitigation technique for low data rate UWB communication for BAN via computer simulations regardless of definitions of transmitted energy of UWB communication system, and also that the binary pole signal is suitable for LDC-UWB system to mitigate interference to the other radio systems. We further investigate the adequate duty-cycle of LDC-UWB system for each definition of transmitted power of UWB communication.
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