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Transmit Receive Module for S-Band Electronically Scanned Antenna With on Board Digital Control, Health Monitoring and Telemetry

机译:用于S波段电子扫描天线的接收模块,用于数字控制,健康监控和遥测

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摘要

Satellites require timely tracking, telemetry, and command (TT&C) for payload operation. The ground antenna is one of the key elements that enable satellite control and payload operations. To support the operation of a large number of satellites at various orbits, operators need a network of antennas distributed around the globe, such as the Air Force Satellite Control Network (AFSCN), to contact satellites at a predetermined time and location. Currently, they use large mechanically steered parabolic dishes to provide hemispherical coverage and simultaneous transmit (Tx) and receive (Rx) capabilities in support of Department of Defense (DoD) satellite operations (SATOPS) Network designers used reflector antennas because of relatively low acquisition cost The current reflector antennas used to support satellite operations are approximately 10 m in diameter and are susceptible to single point failure and long downtime for repair and maintenance. S-Band component technology provided by the cell phone industry will now allow an affordable electronically scanned antenna (ESA). Current SATOPS require a more efficient and flexible antenna system. The ESA can offer superior performance, operability, adaptability and maintainability for satellite operation. This paper will present the design of a TR module that can provide one Transmit (Tx) and two Receive (Rx) links to a satellite. The TR module will be part of a dome shaped antenna that could provide multiple simultaneous ground to satellite links. This geodome antenna will provide multiple simultaneous operations with pointing and acquisition taking seconds. One dome antenna can replace the capability of three AFSCN parabolic dishes. The next generation low cost TR module will be developed by the AFRL/Information Grid Division (IFG) and Princeton Microwave Technology Inc. for the next generation of the AF Satellite Control Network (AFSCN). The TR module differs from previous modules in Ref [1...5] in that it consists of a single Tx channel capable of 33 dBm of output power and two Rx channels with a gain of 30 dB per channel. In addition, beam switching and on board digital control has been implemented where the Tx and Rx channels provide four-bit phase shift. In addition to the control functions, built-in test (BIT) circuits will monitor the health and status of the RF devices. This function utilizes a low-power micro-controller to output digital data for each of the power and low noise amplifiers, via A/D converters. The bandwidth of the TR module has been designed to cover both the Unified S-Band (USB) and Satellite Ground Link Subsystem (SGLS). The TR functions are combined at the output via a ceramic resonator diplexer comprised of a band pass-band stop filter. The control of the TR module is conducted via a single programmable logic device (PLD) controller through a DAQ computer interface. The TR module has been designed to meet the cost objective for a dome antenna with approximately 47,000 TR modules. A 2nd generation 78 element triangular panel of TR modules is now planned to be developed, leveraging off lessons learned from generation one. This paper will describe the layout and design of the 2nd generation TR module.
机译:卫星需要及时跟踪,遥测和命令(TT&C)进行有效载荷操作。地天线是实现卫星控制和有效载荷操作的关键元件之一。为了支持各种轨道的大量卫星的操作,运营商需要围绕地球仪分布的天线网络,例如空气卫星控制网络(AFSCN),以在预定时间和位置接触卫星。目前,他们使用大型机械转向抛物线菜肴来提供半球形覆盖和同时传输(TX),并获得(RX)能力,支持国防部(DOD)卫星操作(Satops)网络设计师使用反射天线,因为采集成本相对较低用于支撑卫星操作的电流反射器天线的直径约为10米,易于单点故障和维修和维护的长时间。由手机行业提供的S频段组件技术现在将允许一个经济实惠的电子扫描天线(ESA)。目前的Satops需要更有效和灵活的天线系统。 ESA可为卫星操作提供卓越的性能,可操作性,适应性和可维护性。本文将介绍一个TR模块的设计,可以提供一个传输(TX)和两个接收(RX)链路到卫星。 TR模块将是圆顶形天线的一部分,可以为卫星链路提供多个同时接地。该地理组合天线将提供多个同时操作,指向和获取需要秒。一个圆顶天线可以取代三个AFSCN抛物线菜肴的能力。下一代低成本TR模块将由AFRL /信息网格司(IFG)和普林斯顿微波技术有限公司为下一代的AF卫星控制网络(AFSCN)的开发。 TR模块与REF [1 ... 5]中的先前模块不同,因为它由能够提供33 dBm的输出功率和两个RX通道的单个TX通道,每个通道增益为30 dB。另外,已经实现了TX和RX通道提供了四位相移的光束切换和载板数字控制。除了控制功能外,内置测试(位)电路将监控RF设备的运行状况和状态。该功能利用低功率微控制器通过A / D转换器输出每个电源和低噪声放大器的数字数据。 TR模块的带宽旨在介绍统一的S波段(USB)和卫星接地链路子系统(SGLS)。 TR功能通过包括带通带停止滤波器的陶瓷谐振器双工器在输出中组合。通过DAQ计算机接口通过单个可编程逻辑器件(PLD)控制器进行TR模块的控制。 TR模块旨在满足具有大约47,000 TR模块的圆顶天线的成本目标。现在计划开发第二代TR模块的TR模块,从一代人中汲取的经验教训。本文将描述第2代TR模块的布局和设计。

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