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Design of an adaptive CubeSat transmitter for achieving optimum signal-to-noise ratio (SNR)

机译:用于实现最佳信噪比(SNR)的自适应CubeSat发送器的设计

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CubeSat technology has opened the opportunity to conduct space-related researches at a relatively low cost. Typical approach to maintain an affordable cubeSat mission is to use a simple communication system, which is based on UHF link with fixed-transmit power and data rate. However, CubeSat in the Low Earth Orbit (LEO) "does not have relative motion with the earth rotation, resulting in variable propagation path length that affects the transmission signal. A transmitter with adaptive capability to select multiple sets of data rate and radio frequency (RF) transmit power is proposed to improve and optimise the link. This paper presents the adaptive UHF transmitter design as a solution to overcome the variability of the propagation path. The transmitter output power is adjustable from 0.5W to 2W according to the mode of operations and satellite power limitations. The transmitter is designed to have four selectable modes to achieve the optimum signal-to-noise ratio (SNR) and efficient power consumption based on the link budget analysis and satellite requirement. Three prototypes are developed and tested for space-environment conditions such as the radiation test. The Total Ionizing Dose measurements are conducted in the radiation test done at Malaysia Nuclear Agency Laboratory. The results from this test have proven that the adaptive transmitter can perform its operation with estimated more than seven months in orbit. This radiation test using gamma source with 1.5krad exposure is the first one conducted for a satellite program in Malaysia.
机译:CubeSat技术已开设有机会以相对较低的成本开展与空间相关的研究。维持经济实惠的CubeSat任务的典型方法是使用简单的通信系统,该系统基于具有固定发射功率和数据速率的UHF链路。然而,低地球轨道(LEO)中的CubeSat与地球旋转​​没有相对运动,导致影响传输信号的可变传播路径长度。具有自适应能力的发射机,用于选择多组数据速率和射频( RF)提出了发射功率来改进和优化链接。本文介绍了自适应UHF发射器设计作为克服传播路径可变性的解决方案。根据操作模式,发射器输出功率可调节0.5W至2W和卫星电力限制。变送器设计为具有四种可选模式,以实现基于链路预算分析和卫星要求的最佳信噪比(SNR)和高效的功耗。开发了三种原型,用于空间 - 辐射试验等环境条件。总电离剂量测量在马来西亚核酸的放射试验中进行R代理实验室。该测试的结果证明,自适应变送器可以在轨道中估计超过七个月的操作。这种使用伽马源的辐射测试具有1.5krad暴露的是在马来西亚卫星节目进行的第一个。

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