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On Hybrid MAC Approaches within MC-CDMA Systems for the use in Wireless Industrial Communications

机译:用于无线工业通信的MC-CDMA系统中的混合MAC方法

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Wireless Industrial Communication Systems are currently a hot research topic and are in the focus of both industry and academia, as new manufacturing scenarios with higher mobility and flexibility demands arise. These scenarios form the vision of the fourth industrial revolution, which is referred to as 'Industry 4.0' in Germany. Although Wireless Systems are recognized as an attractive alternative to Wire-line Systems in terms of flexibility and costs, there's still some effort necessary to get competitive with wire-line systems in terms of robustness and latency. Multi-Carrier Spread Spectrum (MC-SS) systems, combining multi-carrier (OFDM) techniques and spread spectrum techniques, are known to offer high spectral efficiency, robustness and flexibility and are therefore a promising candidate for a wireless industrial communication system. These MC-SS systems are usually used with a CDMA part consisting of standard Hadamard spreading sequences. In this paper, we will present two Hybrid MAC concepts aiming to efficiently, i.e. without unintentionally increasing the spreading factor, combine robust transmission fulfilling real-time requirements as well as transmission with best-effort traffic, which has lower robustness requirements but could use higher throughput. We will investigate overloaded code sets as well as an approach using CSMA as multiplexing technique in a MC-CDMA system. Furthermore we will compare the performance of these approaches with a simulation.
机译:随着对移动性和灵活性有更高要求的新制造场景的出现,无线工业通信系统是当前研究的热点,并且受到工业界和学术界的关注。这些场景构成了第四次工业革命的愿景,在德国被称为“工业4.0”。尽管就灵活性和成本而言,无线系统是公认的有线系统替代产品,但在健壮性和时延方面,仍需要做出一些努力才能与有线系统竞争。结合了多载波(OFDM)技术和扩频技术的多载波扩频(MC-SS)系统已知具有高频谱效率,鲁棒性和灵活性,因此是无线工业通信系统的有希望的候选者。这些MC-SS系统通常与由标准Hadamard扩频序列组成的CDMA部分一起使用。在本文中,我们将提出两个旨在有效的混合MAC概念,即在不无意增加扩展因子的情况下,将满足实时要求的健壮传输以及具有尽力而为流量的传输结合在一起,这具有较低的健壮性要求,但可以使用更高的吞吐量。我们将研究重载代码集以及在MC-CDMA系统中使用CSMA作为复用技术的方法。此外,我们将通过仿真比较这些方法的性能。

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