In virtual desktop infrastructure (VDI) environments, the remote display protocol has a big responsibility to transmit video data from a data center-hosted desktop to the endpoint. The protocol must ensure a high level of client perceived end-to-end quality of service (QoS) under heavy work load conditions. Each remote display protocol works differently depending on the network and which applications are being delivered. In healthcare applications, doctors and nurses can use mobile devices directly to monitor patients. Moreover, the ability to implement tasks requiring high consumption of CPU and other resources is applicable to a variety of applications including research and cloud gaming. Such computer games and complex processes will run on powerful cloud servers and the screen contents will be transmitted to the client. TO enable such applications, remote display technology requires further enhancements to meet more stringent requirements on bandwidth and QoS, an to allow realtime operation. In this paper, we present an architecture including flexible QoS control to improve the user quality of experience (QoE). The QoS control is developed based on linear regression modeling using historical network data. Additionally, the architecture includes a novel compression algorithm of 2D images, designed to guarantee the best image quality and to reduce video delay; this algorithm is based on k-means clustering and can satisfy the requirements of realtime onboard processing. Through simulations with a real work dataset collected by the MIT Computer Science and Artificial Lab, we present experimental as well as explain the performance of the QoS system.
翻译:在虚拟桌面基础设施(VDI)环境中,远程显示协议在将视频数据从数据中心托管的桌面上传输到终端点方面有很大的责任。协议必须确保客户在繁重的工作负荷条件下对服务端至端质量(Qos)有高度的认识。每个远程显示协议根据网络和提供的应用的不同而运作不同。在医疗保健应用程序中,医生和护士可以直接使用移动设备来监测病人。此外,执行需要高消费CPU和其他资源的任务的能力适用于各种应用程序,包括研究和云层游戏。这类计算机游戏和复杂程序将在强大的云层服务器上运行,屏幕内容将传送给客户。为了启用这些应用程序,远程显示技术需要进一步加强,以满足对带宽和Qos的更严格要求,从而允许实时操作。在本文中,我们提出了一个结构,包括灵活的QOS控制,以提高用户的经验质量(Qonificial)。 QoS控制是在利用历史网络数据进行线性回归模型的基础上开发的。此外,该架构包括2D图像的新型压缩算法,目的是保证目前以最佳的图像质量处理方式,从而满足目前以最佳的Kimal imal asimal imal imal assal imal imal imalal 。