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Steady-state operation of a high-voltage multiresonant converter in a high-temperature environment

机译:高温环境下高压多谐振转换器的稳态运行

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Often scientific instruments on exploratory satellites are used to collect cosmic particles. These instruments, such as the Faraday cup, require a high-voltage regulated power source. On the proposed solar probe satellite there will be instruments which will collect cosmic particles close to the sun. Naturally temperature effects on the voltage regulator are a concern. Specifically power dissipation within the regulator must stay within stringent guidelines. The high-voltage regulator circuit is a resonant flyback topology with a dissipative series switch whose on resistance controls the output voltage level. The extreme temperatures in space will change the inductance of the flyback transformer which will affect the output voltage. State space analysis techniques are used to determine how the value of the transformer inductance and capacitance in the flyback converter affects the output voltage and consequently the power dissipated by the transformer and the switch. The accuracy of the analysis is verified by comparing results with those obtained from an experimental circuit. The results can then be used to help the designer chose nominal capacitance and inductance values that will work over the temperature range of interest.
机译:通常,使用探索卫星上的科学仪器来收集宇宙粒子。这些仪器,例如法拉第杯,需要高压稳压电源。在拟议的太阳探测卫星上,将有一些仪器收集接近太阳的宇宙粒子。自然,温度对稳压器的影响是一个问题。具体来说,稳压器内的功耗必须遵守严格的准则。高压调节器电路是谐振反激式拓扑,具有耗散串联开关,其导通电阻控制输出电压电平。空间中的极端温度将改变反激变压器的电感,从而影响输出电压。状态空间分析技术用于确定反激式转换器中变压器电感和电容的值如何影响输出电压,从而影响变压器和开关的功耗。通过将结果与从实验电路获得的结果进行比较,可以验证分析的准确性。然后,可将结果用于帮助设计人员选择将在目标温度范围内工作的标称电容和电感值。

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