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On the performance of UNB for machine-to-machine low earth orbit (LEO) satellite communications

机译:关于UNB在机对机低地球轨道(LEO)卫星通信中的性能

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Ultra narrow band (UNB) is a widely used technology for machine-to-machine and low-power wide-area communications.Its properties, long range with small RF power, make it naturally attractive for satellite communications but also draw new challenges compared with terrestrial systems where this technology is already deployed. Indeed, the main advantage of UNB signals, their small bandwidth, makes them more sensitive to frequency drifts that are particularly present in the case of LEO satellite systems. It also implies the use of a random access method in which the carrier frequency is a parameter unknown by the receiver. In this paper, we propose a general semianalytical model to evaluate the performance of a terrestrial or satellite system using UNB technology, taking into account the multiuser interference and the frequency drift. This model is then used to assess the performance (packet loss ratio and throughput) on the return link medium access control (MAC) of a representative LEO satellite system. With our model, we analyze the effect of frequency drift on the system performance. This paper also proposes to investigate more deeply the multiuser interference modeling in order to estimate accurately the performances of a UNB system in terms of bit error rate (BER). We propose a semianalytical approach to study the interference in presence of arbitrary power imbalance that includes the effect of frequency offset and frequency drift and applicable for any linear modulation and any pulse-shaping filter. The expression of the multiuser interference is established in the general case. We then propose a methodology to compare this exact model to the Gaussian interference approximation (mainly used through the central limit theorem) in order to assess its accuracy.
机译:超窄带(UNB)是一种广泛用于机对机和低功率广域通信的技术,它的特性,远距离和小射频功率使其自然地吸引了卫星通信,但与之相比也带来了新的挑战已经部署了该技术的地面系统。确实,UNB信号的主要优点是带宽小,使它们对LEO卫星系统中特别存在的频率漂移更加敏感。它还暗示使用随机访问方法,其中载波频率是接收机未知的参数。在本文中,我们考虑到多用户干扰和频率漂移,提出了一个通用的半分析模型来评估使用UNB技术的地面或卫星系统的性能。然后,使用该模型评估代表性LEO卫星系统的回程链路媒体访问控制(MAC)的性能(分组丢失率和吞吐量)。利用我们的模型,我们分析了频率漂移对系统性能的影响。本文还建议更深入地研究多用户干扰建模,以便根据误码率(BER)准确估算UNB系统的性能。我们提出了一种半分析方法来研究在任意功率不平衡情况下的干扰,其中包括频率偏移和频率漂移的影响,并且适用于任何线性调制和任何脉冲整形滤波器。通常,建立多用户干扰的表达。然后,我们提出了一种方法,以将该精确模型与高斯干扰近似(主要通过中心极限定理使用)进行比较,以评估其准确性。

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