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Resource allocation for cognitive satellite uplink and fixed-service terrestrial coexistence in ka-band

机译:ka波段认知卫星上行链路和固定业务地面共存的资源分配

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摘要

This paper addresses the cognitive Geostationary Orbit (GSO) satellite uplink where satellite terminals reuse frequency bands of Fixed-Service (FS) terrestrial microwave links which are the incumbent users in the Ka 27.5-29.5 GHz band. In the scenario considered herein, the transmitted power of the cognitive satellite user has to ensure that the interference impact on potentially present FS links does not exceed the regulatory interference limitations. In order to satisfy the interference constraint and assuming the existence of a complete and reliable FS database, this paper proposes a Joint Power and Carrier Allocation (JPCA) strategy to enable the cognitive uplink access to GSO Fixed Satellite Service (FSS) terminals. The proposed approach identifies the worst FS link per user in terms of interference and divides the amount of tolerable interference among the maximum number of FSS terminal users that can potentially interfere with it. In so doing, the cognitive system is guaranteed to never exceed the prescribed interference threshold. Subsequently, powers and carriers are jointly allocated so as to maximize the throughput of the FSS system. Supporting results based on numerical simulations are provided. It is shown that the proposed cognitive approach represents a promising solution to significantly boost the performance of conventional satellite systems. © Institute for Computer Sciences, Social Informatics and Telecommunications Engineering 2015.
机译:本文介绍了认知地球静止轨道(GSO)卫星上行链路,其中卫星终端重用了固定服务(FS)地面微波链路的频段,这些频段是Ka 27.5-29.5 GHz频段的现有用户。在本文考虑的场景中,认知卫星用户的发射功率必须确保对潜在存在的FS链路的干扰影响不会超过监管干扰限制。为了满足干扰约束并假设存在完整而可靠的FS数据库,本文提出了联合功率和载波分配(JPCA)策略,以实现对GSO固定卫星服务(FSS)终端的认知上行链路访问。所提出的方法确定了每个用户在干扰方面最差的FS链路,并将可容忍的干扰量分配给了可能会干扰它的最大FSS终端用户数。这样做可以保证认知系统永远不会超过规定的干扰阈值。随后,功率和载波被联合分配以便最大化FSS系统的吞吐量。提供了基于数值模拟的支持结果。结果表明,提出的认知方法代表了一种有希望的解决方案,可以大大提高常规卫星系统的性能。 ©计算机科学,社会信息学和电信工程学院2015年。

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