采用不同调制技术的多波长星间无线光通信链路性能评价

S. Adebusola, P. Owolawi, J. Ojo
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引用次数: 0

摘要

光无线通信是当今高度安全、方便、快捷、经济的通信系统。星间无线光通信(ISO WC)是在同一轨道上或不以无线光通信为媒介的卫星之间进行通信的一种独特方式。ISOWC系统具有功耗低、频谱免授权、带宽大、数据速率高、价格低廉、可替代微波卫星系统、不受电磁干扰等优点。在设计高效的ISOWC链路(ISOWCL)时,选择具有适当调制格式的光波长将成为提高系统性能的关键。以前的研究将他们的工作限制在两种调制格式和波长上。这不能作为有效设计ISOWCL的标准。在这项研究工作中,我们评估了ISOWCL在多波长和不同调制格式下的性能。误码率被用来评价链路的性能。结果表明,不归零调制在所有波长下的性能都优于其他调制,而超割线调制的性能最差。在所有考虑的波长中,1650 nm的表现比其他所有波长都要好,这在以前的研究中没有提到。其结果将有助于发展具有良好服务质量的卫星间ISOWC链路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of Inter Satellite Optical Wireless Communication Link at Multiple Optical Wavelengths Using Diverse Modulation Techniques
In this modern day optical wireless communication is the highly secured, convenient, fast and cost-effective communic ation system. Intersatellite optical wireless communication (ISO WC) is a unique modus operandi for the communication between satellites either they are in the same orbit or not using optical wireless communication as a medium. ISOWC as a system has some merits among are low power consumption, unlicensed Spectrum, huge bandwidth, high data rate, low-priced alternative to microwave satellite systems and immune to electromagnetic interference. In designing an efficient ISOWC link (ISOWCL), the choice of choosing an optical wavelength with an appropriate modulation formats that will enhance the performance the system become paramount. Previous studies have limited their work to two modulation formats and wavelengths. This cannot be used as a yard stick to for efficient design of an ISOWCL. In this research work, we evaluated the performance of ISOWCL considering multiple wavelength and diverse modulation formats. Bit error rate was used to evaluate the performance of the link. The result obtained showed that non-Return to zero performed better than all other modulation at all wavelengths while hyper secant had the worst performance. In all the wavelength considered, 1650 nm performed better than all other wavelength which is not mentioned in previous researches. The result will assist to develop an ISOWC link with good quality of service for inter-satellite.
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