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Spectrum and power allocation in cognitive multi-beam satellite communications with flexible satellite payloads

机译:具有灵活卫星有效载荷的认知多波束卫星通信中的频谱和功率分配

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In this paper, the cognitive multi-beam satellite system, i.e., two satellite networks coexist through underlay spectrum sharing, is studied, and the power and spectrum allocation method is employed for interference control and throughput maximization. Specifically, the multi-beam satellite with flexible payload reuses the authorized spectrum of the primary satellite, adjusting its transmission band as well as power for each beam to limit its interference on the primary satellite below the prescribed threshold and maximize its own achievable rate. This power and spectrum allocation problem is formulated as a mixed nonconvex programming. For effective solving, we first introduce the concept of signal to leakage plus noise ratio (SLNR) to decouple multiple transmit power variables in the both objective and constraint, and then propose a heuristic algorithm to assign spectrum sub-bands. After that, a stepwise plus slice-wise algorithm is proposed to implement the discrete power allocation. Finally, simulation results show that adopting cognitive technology can improve spectrum efficiency of the satellite communication.
机译:本文研究了认知多波束卫星系统,即两个卫星网络通过底层频谱共享共存,并采用功率和频谱分配方法进行干扰控制和吞吐量最大化。具体而言,具有灵活有效负载的多波束卫星将重用主卫星的授权频谱,调整其传输频带以及每个波束的功率,以将其对主卫星的干扰限制在规定的阈值以下,并最大化其自身可达到的速率。这个功率和频谱分配问题被表述为混合非凸规划。为了有效解决问题,我们首先引入信噪比与噪声比(SLNR)的概念,以在目标和约束条件下解耦多个发射功率变量,然后提出一种启发式算法来分配频谱子带。在此之后,提出了一种逐步加分片算法来实现离散功率分配。最后,仿真结果表明,采用认知技术可以提高卫星通信的频谱效率。

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