Network security algorithm assisted green landscape VR design based on environmental energy conservation and virtual technology
摘要
Against the backdrop of global climate change and resource depletion, with the acceleration of the digitalization process, cybersecurity issues have become increasingly prominent, especially the risk of cyber attacks targeting complex design fields is constantly rising. Green landscape design, as an important means to improve the ecological environment, its digital design process (such as virtual reality [VR] design) needs to take into account both energy conservation and network security. The research combines environmental thermal modeling technology to deeply analyze the mechanisms of solar energy utilization, thermal energy storage and release. Through the VR design platform, it visualizes the site and simulates environmental performance, and proposes energy-saving strategies. In terms of network security, multiple algorithms (such as encryption algorithms, identity authentication algorithms, access control algorithms, etc.) are adopted to ensure the security of data transmission, storage and user information, and network communication and resource allocation are optimized to reduce energy consumption. Research shows that the VR design of green landscapes not only enhances the aesthetic appeal and practicality of the system but also significantly reduces energy consumption. In terms of network security, through algorithms such as encryption, authentication and access control, the leakage and tampering of design data have been effectively prevented, ensuring the user information security of the VR platform. The algorithm for optimizing network communication and resource allocation has further achieved the energy-saving goal. The VR design method for green landscapes that combines environmental thermal modeling with network security algorithms provides a new idea for achieving sustainable development. This method not only enhances design efficiency and scientificity, but also provides strong support for the digital transformation of green landscape design by ensuring information security and reducing energy consumption, which is conducive to promoting the harmonious coexistence of humans and nature. Network security algorithm.