Abstract
Abstract
Virtual technology and new media blend with each other and continue to collide, adding different fun to our lives. The interactive design in virtual technology allows people to see the world in the eyes of new media more realistically, making art closer to life and making the picture more vivid and vivid. The new media environment also makes virtual technology useful. It is no longer a tall thing in the eyes of ordinary people, so that ordinary people can also feel the changes that this technology brings to life. With the impact of the digital information age, people can quickly meet their needs for information and accelerate their pace of life; and in the process of impact, art and data blend with each other to form a new art form of new media art. This article focuses on the application of virtual technology in the field of new media. By establishing a new media database model and combining the interactive functions of virtual technology, the necessity of integration of virtual technology and new media is proposed. The data shows that 300 packets are sent per second, each packet size is 600bites (these can be set in the configuration file), the bandwidth of the transmitted data is 0.81Mb / s, and the upper crosshead model is obtained. The results show that many functions of virtual technology are applied in the field of new media.
Subject
General Physics and Astronomy
Reference13 articles.
1. Research and application of paper mill simulation systems based on virtual DPU technology [J];Yunyue;Agro Food Industry Hi Tech,2017
2. Virtual technology of cache and data real time allocation in cloud computing data center [J];Bai;Acta Technica Csav,2017
3. Research on Modern Sports Training Method Based on Computer Virtual Technology [J];Li;International Journal of Multimedia & Ubiquitous Engineering,2016
4. Study of virtual instrument technology applied in sound field test [J];Yao;Journal of the Acoustical Society of America,2016
5. Assessment of InAs/AlGaSb Tunnel-FET Virtual Technology Platform for Low-Power Digital Circuits [J];Strangio;IEEE Transactions on Electron Devices,2016
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