Design and analysis of low-loss linear analog phase modulator for deep space spacecraft X-band transponder (DST) application

N. Mysoor, R. Mueller
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Abstract

The authors summarize the design concepts, analyses, and development of an X-band transponder low-loss linear phase modulator for deep space spacecraft applications. A single-section breadboard circulator-coupled reflection phase modulator has been analyzed, fabricated, and evaluated. A linear phase deviation of 92 degrees with a linearity tolerance of +or-8% was measured for this modulator from 8257 MHz to 8634 MHz over the temperature range -20 degrees C to +75 degrees C. The measured insertion loss and the static delay variation with temperature were 2+or-0.3 dB and 0.16 ps/ degrees C, respectively. Based on this design, two and three cascaded sections have been modeled and simulations performed to provide an X-band DST phase modulator with +or-2.5 rad (+or-143 degrees ) of peak phase deviation to accommodate downlink signal modulation with composite telemetry data and ranging with a deviation linearity tolerance of +or-8% and insertion loss of less than 10+or-0.5 dB. A two-section phase modulator using constant gamma hyperabrupt varactors and an efficient modulator driver circuit was breadboarded. The measured results satisfy the DST phase modulator requirements, and show excellent agreement with the predicted results.<>
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用于深空航天器x波段应答器(DST)的低损耗线性模拟相位调制器设计与分析
本文综述了一种深空航天器用x波段转发器低损耗线性相位调制器的设计概念、分析和研制。对一种单节面包板环形耦合反射相位调制器进行了分析、制作和评价。在-20℃至+75℃的温度范围内,该调制器在8257 MHz至8634 MHz范围内测量到92度的线性相位偏差,线性公差为+或8%。测量到的插入损耗和静态延迟随温度的变化分别为2+或0.3 dB和0.16 ps/℃。基于该设计,对两个和三个级联部分进行了建模和仿真,以提供一个峰值相位偏差为+或2.5 rad(+或143度)的x波段DST相位调制器,以适应具有复合遥测数据的下行信号调制,其偏差线性公差为+或8%,插入损耗小于10+或0.5 dB。设计了一种采用恒伽马超突变变容管和高效调制器驱动电路的两段式相位调制器。测量结果满足DST相位调制器的要求,与预测结果吻合良好。
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