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Performance Analysis of Integrated Wireless Sensor and Multibeam Satellite Networks Under Terrestrial Interference

机译:地面干扰下集成无线传感器和多波束卫星网络的性能分析

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摘要

This paper investigates the performance of integrated wireless sensor and multibeam satellite networks (IWSMSNs) under terrestrial interference. The IWSMSNs constitute sensor nodes (SNs), satellite sinks (SSs), multibeam satellite and remote monitoring hosts (RMHs). The multibeam satellite covers multiple beams and multiple SSs in each beam. The SSs can be directly used as SNs to transmit sensing data to RMHs via the satellite, and they can also be used to collect the sensing data from other SNs to transmit to the RMHs. We propose the hybrid one-dimensional (1D) and 2D beam models including the equivalent intra-beam interference factor β from terrestrial communication networks (TCNs) and the equivalent inter-beam interference factor α from adjacent beams. The terrestrial interference is possibly due to the signals from the TCNs or the signals of sinks being transmitted to other satellite networks. The closed-form approximations of capacity per beam are derived for the return link of IWSMSNs under terrestrial interference by using the Haar approximations where the IWSMSNs experience the Rician fading channel. The optimal joint decoding capacity can be considered as the upper bound where all of the SSs’ signals can be jointly decoded by a super-receiver on board the multibeam satellite or a gateway station that knows all of the code books. While the linear minimum mean square error (MMSE) capacity is where all of the signals of SSs are decoded singularly by a multibeam satellite or a gateway station. The simulations show that the optimal capacities are obviously higher than the MMSE capacities under the same conditions, while the capacities are lowered by Rician fading and converge as the Rician factor increases. α and β jointly affect the performance of hybrid 1D and 2D beam models, and the number of SSs also contributes different effects on the optimal capacity and MMSE capacity of the IWSMSNs.
机译:本文研究了地面干扰下集成无线传感器和多波束卫星网络(IWSMSN)的性能。 IWSMSN组成传感器节点(SN),卫星接收器(SS),多波束卫星和远程监视主机(RMH)。多波束卫星覆盖多个波束和每个波束中的多个SS。这些SS可以直接用作SN,以通过卫星将感测数据发送到RMH,也可以用来从其他SN收集感测数据,以发送到RMH。我们提出一种混合的一维(1D)和2D波束模型,包括来自地面通信网络(TCN)的等效波束内干扰因子β和来自相邻波束的等效波束间干扰因子α。地面干扰可能是由于来自TCN的信号或接收器的信号被传输到其他卫星网络所致。通过使用IWSMSN经历Rician衰落信道的Haar近似,得出在地面干扰下IWSMSN的返回链路的每波束容量的闭合形式近似值。最佳的联合解码能力可以看作是上限,在此范围内,多波束卫星上的超级接收器或知道所有密码本的网关站可以对所有SS信号进行联合解码。线性最小均方误差(MMSE)容量是多波束卫星或网关站对所有SS信号进行单个解码的地方。仿真表明,在相同条件下,最优容量明显高于MMSE容量,但随着Rician衰落而降低,并且随着Rician因子的增加而收敛。 α和β共同影响一维和二维混合梁模型的性能,并且SS的数量也对IWSMSN的最佳容量和MMSE容量产生不同的影响。

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