Thamilazhagan, T. and Muthumanickam, T. and Sheela, T. and Kumar, G. Suresh and Ramachandran, G. (2024) Adaptive Digital Beam Forming for Massive Array Employed in the XOR MUX full Adder FPGA Implementation. 2024 SECOND INTERNATIONAL CONFERENCE ON INVENTIVE COMPUTING AND INFORMATICS, ICICI 2024. pp. 516-520.
Full text not available from this repository.Abstract
Improving the quality of communication is very necessary with recent technology. Include the building of 5G wireless networks and growth of various communication tools. A method known as adaptive digital beam forming is one that adjusts an antenna's radiation pattern array inside response to a particular signal reception that is desired. An adaptation this is based on (LMS) and its variant continues to be one of creative strategies that are employed the most. The improvement of antennas has led to the creation of high-performance hardware, even though those LMS techniques provide impressive computing performance. Systems like (FPGAs)-Field Programmable Gate Arrays, which were developed used for large array system, provide designs that are both high-performance and efficient with regard to energy consumption. The proposed work in this study presents a parallel implementation of a vast array beam forming system utilizing LMS on FPGAs with conventional and XOR-MUX full adder designs. The beam- forming system consists of a spatial filter and an adaptation unit. This proposed work was developed at Verilog HDL, synthesized on a Xilinx A vertex-5 FPGA, and evaluated every parameter concerning area, latency, and power consumption.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | 5Generation, VLSI, Least Mean Square, Xilinx Vertex, Hardware Description Language |
| Subjects: | Computer Science > Computer Science |
| Divisions: | Engineering and Technology > Vinayaka Mission's Kirupananda Variyar Engineering College, Salem, India > Electronics & Communication Engineering |
| Depositing User: | Unnamed user with email techsupport@mosys.org |
| Last Modified: | 06 Feb 2026 06:50 |
| URI: | https://ir.vmrfdu.edu.in/id/eprint/5888 |
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