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A wireless addressing interface circuitry for microthruster array applications

机译:用于微推力器阵列应用的无线寻址接口电路

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Purpose - The paper aims to develop a wireless addressing interface circuitry for solid propellant microthruster array applications. Design/methodology/approach - The solid propellant microthruster is a relatively new class of micropropulsion system for microspacecraft. To produce a controlled vectored thrust, a microthruster array is needed. Realization of the addressing ability and wireless communication is the key to the development of the microthruster array. Therefore, a prototype wireless addressing circuitry was developed to realize the addressing of the microthruster array by a multiplexing system. The addressing circuitry also enables measurement of the igniter temperature variation with time by measuring the igniter resistance change and automatic control by RS232 and RF wireless communications. Operating principles, design, fabrication, and testing of the circuitry are addressed. Findings - A prototype integrated wireless addressing circuitry was designed and fabricated to realize the addressing of individual microthrusters in the microthruster array, to measure the igniter temperature variation with time, and to achieve automatic control using RS232 and RF wireless communications. Using the programmable voltage source in the circuitry, the igniter temperature could be accurately controlled in 256 steps using an 8 bit word. The 10 bit analog-to-digital converter feedback loop circuitry enabled real-time monitoring of each igniter in the microthruster array and allowing each igniter to be functionally controlled. Originality/value - In this paper, a wireless addressing interface circuitry is developed for the first time for solid propellant microthruster array applications.
机译:目的-本文旨在为固体推进剂微推力器阵列应用开发无线寻址接口电路。设计/方法/方法-固体推进剂微型推进器是用于微型航天器的一类相对较新的微型推进系统。为了产生受控的矢量推力,需要微型推力器阵列。寻址能力和无线通信的实现是微推力器阵列发展的关键。因此,开发了原型无线寻址电路,以通过多路复用系统实现微推力器阵列的寻址。该寻址电路还可以通过测量点火器电阻变化以及通过RS232和RF无线通信自动控制来测量点火器温度随时间的变化。讨论了电路的工作原理,设计,制造和测试。发现-设计并制造了一个原型集成无线寻址电路,以实现对微型推进器阵列中各个微型推进器的寻址,以测量点火器温度随时间的变化,并使用RS232和RF无线通信实现自动控制。使用电路中的可编程电压源,可以使用8位字以256个步长精确控制点火器温度。 10位模数转换器反馈回路电路可对微型推进器阵列中的每个点火器进行实时监控,并可以对每个点火器进行功能控制。原创性/价值-在本文中,首次为固体推进剂微推力器阵列应用开发了无线寻址接口电路。

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