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Interference Investigations of Active Communications and Passive Earth Exploration Services in the THz Frequency Range

机译:太赫兹频率范围内有源通信和无源地球探测服务的干扰调查

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摘要

At Terahertz (THz) frequencies, passive space-borne Earth exploration services may be interfered by upcoming active communication applications. Aiming for coexistent use of the THz band by both active and passive applications, this paper identifies critical scenarios where interference can possibly occur. Atmospheric attenuation simulations are used along with appropriate propagation models to account for correct scenario-specific wave propagation conditions. Furthermore, distance-dependent measurements of the path loss are taken at 300 GHz. The atmospheric attenuation and propagation models are then employed in order to simulate possible interference powers for the individual reference scenarios under worst case-conditions. Based on existing data for the maximum allowed interference, guidelines for appropriate system specifications of active THz hardware (e.g., transmit power constraints) are developed and achievable system performances are evaluated. Countermeasures against potential interference are discussed. Thus, any interference can be anticipated and compensated for already in the early design phase of THz communication systems.
机译:在太赫兹(THz)频率,被动的星载地球探测服务可能会受到即将来临的主动通信应用的干扰。为了主动和被动应用同时使用THz频段,本文确定了可能发生干扰的关键场景。大气衰减模拟与适当的传播模型一起使用,以解决特定于场景的正确波传播条件。此外,在300 GHz处进行路径损耗的距离相关测量。然后采用大气衰减和传播模型,以模拟最坏情况下各个参考场景的可能干扰功率。基于最大允许干扰的现有数据,制定了有源THz硬件的适当系统规格(例如,发射功率限制)的准则,并评估了可达到的系统性能。讨论了防止潜在干扰的措施。因此,在THz通信系统的早期设计阶段就可以预期并补偿任何干扰。

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