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Design Realization and Tests of a Space-Borne GaN Solid State Power Amplifier for Second Generation Galileo Navigation System

机译:第二代伽利略导航系统的空间氮化镓固态功率放大器的设计实现和测试

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This paper discusses the design, realization, and tests of an engineering qualified model solid state power amplifier (SSPA) based on Gallium Nitride (GaN) technology, suitable for the second generation Galileo (G2G) constellation. The developed SSPA includes a power supply unit (PSU) to interface the module with the satellite primary bus, and an electronic power conditioner unit (EPC) to actuate remote telecommand and telemetry services. The radio frequency unit (RFU), based on 0.5-μm GaN technology, delivers a saturated output power of 300 W, with a minimum gain of 60 dB and 60% of efficiency in the whole E1-Band (i.e., 50 MHz centered at f0= 1.575 GHz). The RFU, PSU, and EPC subsystems are housed in a single box with limited volume and mass, which has carefully been designed to account for both mechanical and thermal aspects. The realized SSPA has been subject to an extensive test campaign as foreseen by the European Cooperation for Space Standardization standards. It included environmental and mechanical tests, endurance and EMC tests leading to a technology readiness level equal to 6. In particular, under continuous-wave operations and temperatures ranging from -10 °C to 70 °C in a vacuum, the SSPA delivers, at the reference operating point (correspondingly to roughly 2 dB of compression), an output power in excess of 230 W with a gain higher than 60 dB and an overall efficiency, including the power consumption of the PSU and the EPC, higher than 44%. The SSPA was also tested with the modulated signal that will probably be adopted for the G2G constellation, having 4 dB of peak-to-average power ratio. Results have shown a spectral regrowth of just 25 dBc with 40% of efficiency at 180 W of average output power.
机译:本文讨论了基于氮化镓(GaN)技术的工程合格模型固态功率放大器(SSPA)的设计,实现和测试,该放大器适用于第二代伽利略(G2G)星座。开发的SSPA包括将模块与卫星主要总线接口的电源单元(PSU),以及用于启动远程遥控和遥测服务的电子功率调节器(EPC)。基于0.5-μmGaN技术的射频单元(RFU)提供300 W的饱和输出功率,最小增益为60 dB,在整个E1频段(即50 MHz)中的效率为60%集中在f n 0 n = 1.575 GHz)。 RFU,PSU和EPC子系统装在一个具有有限体积和质量的盒子中,该盒子经过精心设计,可以兼顾机械和散热方面的问题。根据欧洲空间标准化合作组织的标准,已实现的SSPA已接受了广泛的测试。它包括环境和机械测试,耐久性和EMC测试,从而使技术准备水平达到6。特别是,在连续波操作以及在-10°C至70°C的真空温度下,SSPA可以提供参考工作点(对应大约2 dB的压缩),超过230 W的输出功率,高于60 dB的增益以及包括PSU和EPC的功耗在内的整体效率高于44 %。还使用调制信号测试了SSPA,该调制信号可能会被用于G2G星座,具有4 dB的峰均功率比。结果表明,在平均输出功率为180 W时,频谱再生长仅为25 dBc,效率为40%。

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