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首页> 外文期刊>Journal of Lightwave Technology >Analyzing the performance of a nanosatellite cluster-detector array receiver for laser communication
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Analyzing the performance of a nanosatellite cluster-detector array receiver for laser communication

机译:分析用于激光通信的纳米卫星簇探测器阵列接收器的性能

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摘要

This work analyzes laser communication between a cluster of nanosatellites, which is a concentrated formation of small lightweight satellites and a ground station. The scenario under consideration is a cluster of nanosatellites communicating by means of a laser beam with a detector array receiver that is located on the earth's surface and equipped with a common optical system for all incoming beams. The beams are concentrated to spots over the detector plane by the receiver's optics. The detector array enables the ground station to communicate with a tight concentration of the nanosatellites, which reduces system complexity and cost. A critical parameter that determines the successful receipt and subsequent decoding of a transmitted signal for a given configuration is the angular separation between the satellites within the cluster. This separation must be retained to prevent critical overlapping of the spots on the detector's surface. The maximum allowable overlapping is calculated in terms of given bit-error rate. The spatial spreading of the beams, caused by scattering from aerosols in different layers of the atmosphere, is calculated for the case of single scattering. A stratified model of the atmosphere is used. Turbulence influences the beam width, especially for the case of short exposure, and is primarily caused by temperature changes, which result in fluctuations in the refractive index. In this research, a new approach is adopted for analyzing communication network performance through the atmosphere by applying optical-transfer function (OTF) concepts used in imaging and remote sensing. We evaluate the effectiveness of this new approach in applications where spatial spread between the users is very important.
机译:这项工作分析了纳米卫星簇和地面站之间的激光通信,该纳米卫星簇是小型轻型卫星的集中形式。正在考虑的场景是一簇纳米卫星,这些纳米卫星通过激光束与位于地球表面并配备有用于所有入射光束的通用光学系统的探测器阵列接收器进行通信。光束通过接收器的光学元件集中到检测器平面上的斑点。探测器阵列使地面站能够与密集的纳米卫星通信,从而降低了系统复杂性和成本。对于给定的配置,确定发射信号成功接收和随后解码的关键参数是群集内卫星之间的角度间隔。必须保持这种间隔,以防止检测器表面上的斑点严重重叠。根据给定的误码率计算最大允许重叠。对于单次散射的情况,计算了由气溶胶在大气不同层中的散射引起的光束的空间扩展。使用大气的分层模型。湍流会影响光束宽度,尤其是在短时间曝光的情况下,它主要是由温度变化引起的,温度变化会导致折射率波动。在这项研究中,采用了一种新方法,通过应用在成像和遥感中使用的光学传递函数(OTF)概念来分析通过大气的通信网络性能。我们评估了这种新方法在用户之间空间分布非常重要的应用中的有效性。

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