Performance Analysis of a High-Reliable Real-Time Wireless Transmission System with Near Field Coupling

Niels Hendrik Fliedner, U. Meier, T. Neugebauer
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Abstract

Wireless industrial environments are dominated by multipath propagation and interference. In order to handle spatial diversity, a possible approach is dividing the physical area into many small cells. The spatial diversity is turned into FDMA by utilizing different frequency bands for neighboring cells. A challenging use case with fast vehicles traveling over long distances in a short time is the packaging industry. It would require many fast handoffs for each vehicle. Thus, a small cell FDMA approach is not appropriate. Conversely, employing radiating lines eliminates FDMA-based handoff issues, and reduces multipath delay spread and signal attenuation compared to centralized approaches. Additionally, radiating lines perform well in high-speed, low-power and long-range environments. In this paper, we realize a novel radiating-line-based, high-reliable, real-time transmission system with near-field coupling. This wireless transmission method results in a frequency-flat, time-invariant radio channel for the given requirements. Employing antenna diversity results in significant improvements in the system's performance compared to single antenna solutions.
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一种具有近场耦合的高可靠实时无线传输系统性能分析
无线工业环境以多径传播和干扰为主。为了处理空间多样性,一种可能的方法是将物理区域划分为许多小单元。通过对相邻小区使用不同的频带,将空间分集转化为FDMA。快速车辆在短时间内长距离行驶的一个具有挑战性的用例是包装行业。这需要每辆车进行多次快速切换。因此,小单元FDMA方法是不合适的。相反,与集中式方法相比,采用辐射线消除了基于fdma的切换问题,并减少了多径延迟传播和信号衰减。此外,辐射线路在高速、低功耗和远程环境中表现良好。本文实现了一种新型的基于辐射线的、高可靠的、实时的近场耦合传输系统。这种无线传输方法产生一个频率平坦的、时不变的无线电信道,以满足给定的要求。与单天线解决方案相比,采用天线分集可以显著提高系统性能。
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