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Development and measurement analysis of transceiver and TNC for IiNUSAT nanosatellite payload communication

机译:用于IiNUSAT纳米卫星有效载荷通信的收发器和TNC的开发和测量分析

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In this paper, some development and testing for payload communication board using Tranceiver ADF7021, temperature sensor and and integration with TNC are proposed. Transceiver ADF7021 is developed for 145.95MHz uplink frequency and 436.915MHz downlink frequency and to be applied for IiNUSAT Nanosatellite payload communication. The payload communication board is developed to be able for 2FSK demodulation and 1200bps data rate for receiver, and 2FSK modulation with 9600bps data rate for transmitter. In addition, the payload communication board is also support for data encapsulation using ADI protocol, and data delivery and must match for uplink frequency. TNC is designed to be able to fulfill the utility as data processing storage FX.25 data protocol, and temperature sensor at TNC board. Temperature monitoring is developed using LM35DZ and is designed for temperature range from 0–100°C. The testing resuts showed that payload communication board is work at the center frequency of 436.915MHz with −29.2dbm gain and −28.8dbm gain at a frequency of 436.91MHz. TNC is work and can be communicate the data to nanosatellite OBDH system. In addition, programming LM35 temperature sensor has been successfully implemented with the normal conditions of 33°C.
机译:本文提出了使用收发器ADF7021,温度传感器以及与TNC集成对有效载荷通信板进行一些开发和测试的建议。收发器ADF7021专为145.95MHz上行频率和436.915MHz下行频率而开发,将用于IiNUSAT纳米卫星有效载荷通信。有效载荷通信板开发为能够用于接收器的2FSK解调和1200bps的数据速率,以及能够用于发射器的9600bps的2FSK调制。此外,有效载荷通信板还支持使用ADI协议进行数据封装和数据传输,并且必须与上行链路频率匹配。 TNC旨在满足该实用程序的要求,可作为数据处理存储FX.25数据协议和TNC板上的温度传感器。温度监控器是使用LM35DZ开发的,设计用于0-100°C的温度范围。测试结果表明,有效载荷通信板在436.915MHz的中心频率下工作,增益为-29.2dbm,在436.91MHz的频率下为-28.8dbm增益。 TNC正在工作并且可以将数据传送到纳米卫星OBDH系统。此外,已在33°C的正常条件下成功实现了LM35温度传感器编程。

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