System Design of a High-Temperature Downhole Transceiver: Part II – Transmitter
Brannon Kerrigan, Fariborz Lohrabi Pour, Dong Sam Ha
Abstract
Brannon Kerrigan, Fariborz Lohrabi Pour, Dong Sam Ha
Abstract
This paper presents a system level design of a transmitter for high-temperature downhole communications. The transmitter aims to operate up to 250 °C. The transmitter is simulated in the AWR design environment. The simulation results indicate that the transmitter can adaptively support a data rate up to 170 Mbps by dynamically switch between 16-, 32-, 64-QAM at 250 °C across ten channels. Simulation results also show that the proposed transmitter operates reliably over the temperature range of 25 °C to 250 °C.
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This paper presents a system level design of a transmitter for high-temperature downhole communications. The transmitter aims to operate up to 250 °C. The transmitter is simulated in the AWR design environment. The simulation results indicate that the transmitter can adaptively support a data rate up to 170 Mbps by dynamically switch between 16-, 32-, 64-QAM at 250 °C across ten channels. Simulation results also show that the proposed transmitter operates reliably over the temperature range of 25 °C to 250 °C.
Key concepts: Transmitter, Transceiver, Computer science, Electronic engineering, Electrical engineering, Telecommunications, Engineering, Wireless