首页> 外文期刊>Journal of The Institution of Engineers (India): Series B >Electronic Power Conditioner for Ku-band Travelling Wave Tube
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Electronic Power Conditioner for Ku-band Travelling Wave Tube

机译:Ku波段行波管电子功率调节器

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摘要

A highly sophisticated regulated power supply is known as electronic power conditioner (EPC) is required to energise travelling wave tubes (TWTs), which are used as RF signal amplifiers in satellite payloads. The assembly consisting of TWT and EPC together is known as travelling wave tube amplifier (TWTA). EPC is used to provide isolated and conditioned voltage rails with tight regulation to various electrodes of TWT and makes its RF performance independent of solar bus variations which are caused due to varying conditions of eclipse and sunlit. The payload mass and their power consumption is mainly due to the existence of TWTAs that represent about 35 % of total mass and about 70-90 % (based on the type of satellite application) of overall dc power consumption. This situation ensures a continuous improvement in the design of TWTAs and their associated EPCs to realize more efficient and light products. Critical technologies involved in EPCs are design and configuration, closed loop regulation, component and material selection, energy limiting of high voltage (HV) outputs and potting of HV card etc. This work addresses some of these critical technologies evolved in realizing and testing the state of art of EPC and it focuses on the design of HV supply with a HV and high power capability, up to 6 kV and 170 W_(RF), respectively required for a space TWTA. Finally, an experimental prototype of EPC with a dc power of 320 W provides different voltages required by Ku-band TWT in open loop configuration.
机译:需要高度复杂的稳压电源,称为电子功率调节器(EPC)才能为行波管(TWT)通电,该行波管在卫星有效载荷中用作RF信号放大器。由TWT和EPC组成的组件称为行波管放大器(TWTA)。 EPC用于为TWT的各个电极提供严格调节的隔离和调节电压轨,并使它的RF性能不受由于日食和日照条件变化而引起的太阳能总线变化的影响。有效载荷质量及其功耗主要是由于TWTA的存在,它们占总质量的35%左右,并且占整个DC功耗的70-90%(基于卫星应用的类型)。这种情况确保了TWTA及其相关EPC的设计不断改进,以实现更高效,更轻便的产品。 EPC涉及的关键技术包括设计和配置,闭环调节,组件和材料选择,高压(HV)输出的能量限制以及HV卡的灌封等。这项工作解决了在实现和测试状态方面演化出的一些关键技术是EPC技术的重点,它的重点是设计具有HV和高功率能力的HV电源,分别为空间TWTA所需的电压分别高达6 kV和170 W_(RF)。最后,EPC的实验原型具有320 W的直流功率,可在开环配置中提供Ku波段TWT所需的不同电压。

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  • 作者单位

    Department of Electrical and Electronics Engineering, Chaitanya Bharathi Institute of Technology, Osmania University, Hyderabad, Telangana, India;

    Department of Electrical and Electronics Engineering, Chaitanya Bharathi Institute of Technology, Osmania University, Hyderabad, Telangana, India;

    Department of Electrical and Electronics Engineering, G. Narayanamma Institute of Technology and Science(for Women), Jawaharlal Nehru Technological University, Hyderabad, Telangana, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TWT; EPCs; TWTAs; Switching regulator; Satellite communication;

    机译:TWT;EPC;TWTA;开关稳压器;卫星通讯;

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