In this paper, a direct modulated Power Line Communication (PLC) technique is presented, which realizes the transmitter part by a switched-capacitor (SC) implementation. It is shown that in terms of energy, latency and costs, the presented transmission scheme is an improvement compared to state-of-the-art carrier based solutions. Two variants of the transmitter will be analyzed that use an unshielded twisted-pair (UTP) cable to connect the network nodes differentially, while the supply of the nodes is embedded simultaneously. These PLC approaches have been verified by a discrete component based demonstrator and by a transmitter test chip, fabricated in a 180nm HV-CMOS SOI technology.
Ott, A., D'Aniello, F., Baschirotto, A. (2022). A Switched Capacitor Approach for Power Line Communication in Differential Networks. In PRIME 2022 - 17th Conference on Ph.D Research in Microelectronics and Electronics, Proceedings (pp.317-320) [10.1109/PRIME55000.2022.9816780].
A Switched Capacitor Approach for Power Line Communication in Differential Networks
Ott, A;D'Aniello, F;Baschirotto, A
2022
Abstract
In this paper, a direct modulated Power Line Communication (PLC) technique is presented, which realizes the transmitter part by a switched-capacitor (SC) implementation. It is shown that in terms of energy, latency and costs, the presented transmission scheme is an improvement compared to state-of-the-art carrier based solutions. Two variants of the transmitter will be analyzed that use an unshielded twisted-pair (UTP) cable to connect the network nodes differentially, while the supply of the nodes is embedded simultaneously. These PLC approaches have been verified by a discrete component based demonstrator and by a transmitter test chip, fabricated in a 180nm HV-CMOS SOI technology.File | Dimensione | Formato | |
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