Google Photos adds smarter sharing, suggestions and shared libraries

Google today will begin rolling out new sharing functionality in Google Photos, first unveiled at the company’s I/O developer conference in May. Specifically, it’s launching the AI-powered Suggested Sharing feature along with Shared Libraries, both of which are designed to make the Google Photos app a more social experience, rather than just a personal collection of photo memories.

 

Companies for years have tried to figure out ways to leverage technology in order to get users to share the photos snapped on their smartphone with others VPN Service.

 

Early apps like Flock (which Google bought) tried using location to tie different sets of photos together, even when they lived on different people’s phones; others like Bundle and Cluster aimed to better organize photos into albums, thinking that would solve the sharing problem; and others still tried to mimic texting as means of improving photo sharing. None really found traction, and even closed Derma 21 hard sell.

 

The most progress in this area has instead emerged from companies like Facebook and Google, thanks to their use of technologies like facial recognition and AI, combined with sizable user bases that mean you don’t have to rebuild your social network in some startup’s new app.

 

Facebook, for example, has Moments, which figures out who’s in the photos on your phone, groups them into albums, then prompts you to share those photos with a click.

 

Google, on the other hand, has Google Photos – a tool for backing up and storing your photos in its cloud, that’s also augmented by a powerful virtual assistant. The assistant does things like turn your photos into collages, animations, and movies; create stylized photos; offer a look back on memories past; organize photos into albums; and more Venetian Macao.

【博士论文复现】【阻抗建模、验证扫频法】光伏并网逆变器扫频与稳定性分析(包含锁相环电流环)(Simulink仿真实现)内容概要:本文档是一份关于“光伏并网逆变器扫频与稳定性分析”的Simulink仿真实现资源,重点复现博士论文中的阻抗建模与扫频法验证过程,涵盖锁相环和电流环等关键控制环节。通过构建详细的逆变器模型,采用小信号扰动方法进行频域扫描,获取系统输出阻抗特性,并结合奈奎斯特稳定判据分析并网系统的稳定性,帮助深入理解光伏发电系统在弱电网条件下的动态行为与失稳机理。; 适合人群:具备电力电子、自动控制理论基础,熟悉Simulink仿真环境,从事新能源发电、微电网或电力系统稳定性研究的研究生、科研人员及工程技术人员。; 使用场景及目标:①掌握光伏并网逆变器的阻抗建模方法;②学习基于扫频法的系统稳定性分析流程;③复现高水平学术论文中的关键技术环节,支撑科研项目或学位论文工作;④为实际工程中并网逆变器的稳定性问题提供仿真分析手段。; 阅读建议:建议读者结合相关理论教材与原始论文,逐步运行并调试提供的Simulink模型,重点关注锁相环与电流控制器参数对系统阻抗特性的影响,通过改变电网强度等条件观察系统稳定性变化,深化对阻抗分析法的理解与应用能力。
This error typically occurs when a program or package depends on the libncurses.so.5 library, but it is not installed or is not in the expected location. To resolve this issue, you can try the following steps: 1. Check if the library is installed on your system by running the following command: ```bash sudo ldconfig -p | grep libncurses.so.5 ``` If the library is not found, you may need to install it. On Ubuntu or Debian-based systems, you can do this with the following command: ```bash sudo apt-get install libncurses5 ``` 2. If the library is installed but not in the default location, you can create a symbolic link to it. For example, if the library is located in /usr/local/lib, you can create a symbolic link to it with the following command: ```bash sudo ln -s /usr/local/lib/libncurses.so.5 /usr/lib/libncurses.so.5 ``` This command creates a symbolic link from /usr/lib/libncurses.so.5 to /usr/local/lib/libncurses.so.5. 3. If none of the above steps work, you may need to update your LD_LIBRARY_PATH environment variable to include the directory where the libncurses.so.5 library is located. For example, if the library is located in /usr/local/lib, you can add the following line to your .bashrc file: ```bash export LD_LIBRARY_PATH=/usr/local/lib:$LD_LIBRARY_PATH ``` This command adds /usr/local/lib to the beginning of the LD_LIBRARY_PATH variable, so that the system looks for libraries in that directory before looking in the default locations. After performing any of these steps, try running the program again to see if the error has been resolved.
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