The Implementation of a New All-Digital Phase-Locked Loop on an FPGA and Its Testing in a Complete Wireless Transceiver Architecture
Munir A. Tarar, Jing Sun, Adam T. Sampson, Rand R. Wilcox, Zhizhang Chen
Abstract
Munir A. Tarar, Jing Sun, Adam T. Sampson, Rand R. Wilcox, Zhizhang Chen
Abstract
In this paper a novel user-friendly implementation of an all-digital phase-locked loop (ADPLL) is presented.Its novelty lies in the fact that the very basic functions of the ADPLL are kept in the top module Verilog file.Against the normal design practice, all of the main math functions were implemented using the sub-modules placed outside but called from within the top module.This way ADPLL can be easily implemented in a low-cost FPGA. Further, the implementation details of an ADPLL, which are not reported previously in a singles hot, are described altogether for the first time. The reconfigurable ADPLL is then implemented in a transceiver architecture and tested with real signals received wirelessly. The recovered IQ constellation EVM of 9.0336% was obtained, which is quite practical.This proves the feasibility of the ADPLL not only in simulations but in a real communication system. The ADPLL designed this way can be used in any communication system, although preferably for high data rate transceiver applications.
OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In this paper a novel user-friendly implementation of an all-digital phase-locked loop (ADPLL) is presented.Its novelty lies in the fact that the very basic functions of the ADPLL are kept in the top module Verilog file.Against the normal design practice, all of the main math functions were implemented using the sub-modules placed outside but called from within the top module.This way ADPLL can be easily implemented in a low-cost FPGA. Further, the implementation details of an ADPLL, which are not reported previously in a singles hot, are described altogether for the first time. The reconfigurable ADPLL is then implemented in a transceiver architecture and tested with real signals received wirelessly. The recovered IQ constellation EVM of 9.0336% was obtained, which is quite practical.This proves the feasibility of the ADPLL not only in simulations but in a real communication system. The ADPLL designed this way can be used in any communication system, although preferably for high data rate transceiver applications.
Key concepts: Transceiver, Field-programmable gate array, Phase-locked loop, Verilog, Computer science, Embedded system, Wireless, Computer hardware