Energy Efficiency Analysis in Network-on Chips Transceivers with Adaptive Methods
摘要
A transmitter, a transmission channel, and a receiver are the backbone of any optical communication system. The system consists of these three parts. By using modulation and demodulation, the transmitter and receiver can send and receive information over greater distances while still preserving critical signal characteristics like minimum error and maximum Q factor, as well as keeping enough power and other parameters constant at the receiver to faithfully reproduce the original signal with minimal noise and distortion. This is accomplished by transmitting and receiving the signal using a technique known as modulation and demodulation, respectively. We make use of a hybrid modulation approach, which aims to maximize the benefits that digital and analog modulation provide when combined. The approach that has been suggested will build a transceiver model that is compatible with mm wave technology and will estimate the RF budget for NOC communication. It provides data encoding algorithms that meet the criteria for fast data rate while using a minimum amount of power in network operations center communications. In order to obtain a fast data throughput while maintaining a low bit error rate (BER), an appropriate modulation method is devised for NOC communication. The suggested method improves the power, coverage area, and speed performances of transceiver subsystems for Network-on Chip (NOC) communications.