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Design of an FPGA-based electronic flow regulator (EFR) for spacecraft propulsion system

机译:基于FPGA的航天器推进系统电子流量调节器(EFR)的设计

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This paper describes a scheme for electronically regulating the flow of propellant to the thruster from a high-pressure storage tank used in spacecraft application. Precise flow delivery of propellant to thrusters ensures propulsion system operation at best efficiency by maximizing the propellant and power utilization for the mission. The proposed field programmable gate array (FPGA) based electronic flow regulator (EFR) is used to ensure precise flow of propellant to the thrusters from a high-pressure storage tank used in spacecraft application. This paper presents hardware and software design of electronic flow regulator and implementation of the regulation logic onto an FPGA. Motivation for proposed FPGA-based electronic flow regulation is on the disadvantages of conventional approach of using analog circuits. Digital flow regulation overcomes the analog equivalent as digital circuits are highly flexible, are not much affected due to noise, accurate performance is repeatable, interface is easier to computers, storing facilities are possible and finally failure rate of digital circuits is less. FPGA has certain advantages over ASIC and microprocessor/micro-controller that motivated us to opt for FPGA-based electronic flow regulator. Also the control algorithm being software, it is well modifiable without changing the hardware. This scheme is simple enough to adopt for a wide range of applications, where the flow is to be regulated for efficient operation. The proposed scheme is based on a space-qualified re-configurable field programmable gate arrays (FPGA) and hybrid micro circuit (HMC). A graphical user interface (GUI) based application software is also developed for debugging, monitoring and controlling the electronic flow regulator from PC COM port.
机译:本文介绍了一种用于电子调节从航天器应用中的高压储罐流向推进器的推进剂流量的方案。推进剂向推进器的精确流送,可最大限度地提高推进剂和任务的动力利用率,从而确保推进系统以最佳效率运行。拟议中的基于现场可编程门阵列(FPGA)的电子流量调节器(EFR)用于确保推进剂从航天器应用中使用的高压储罐到推进器的精确流动。本文介绍了电子流量调节器的硬件和软件设计以及在FPGA上的调节逻辑的实现。提出基于FPGA的电子流量调节的动机在于使用模拟电路的常规方法的缺点。数字流量调节技术克服了模拟等效技术,因为数字电路具有高度的灵活性,不受噪声的影响很大,精确的性能具有可重复性,界面更易于计算机使用,可以使用存储设备,最终数字电路的故障率也更低。与ASIC和微处理器/微控制器相比,FPGA具有某些优势,这促使我们选择基于FPGA的电子流量调节器。而且控制算法是软件,可以很好地修改而无需更改硬件。该方案非常简单,可以广泛应用于需要调节流量以实现高效运行的应用。所提出的方案基于空间限定的可重构现场可编程门阵列(FPGA)和混合微电路(HMC)。还开发了基于图形用户界面(GUI)的应用软件,用于从PC COM端口调试,监视和控制电子流量调节器。

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