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Performance of Web-based image distribution: server-oriented measurements.

机译:基于Web的图像分发的性能:面向服务器的测量。

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摘要

The aim of this study was to assess the performance of Web-based image distribution when multiple personal computers (PCs) are downloading images simultaneously for different server hardware configurations. Using specially developed software, the time-to-display (TTD) of different image types was measured with up to 16 concurrent PCs for various combinations of processor, random access memory (RAM), network connection and image compression. The TTD increased linearly with the number of concurrent PCs but remained under 5 s in most of the cases, even with 16 concurrent PCs. Only with a 10-Mbit/s network connection or with lossy compression were TTDs above 5 s obtained. Two processors instead of one led to a slight and constant improvement of the TTD. Reducing the amount of RAM increased the TTD mainly for computed radiography (CR) images. There was no difference between a 200- and 100-Mbit/s network, but 10 Mbit/s proved significantly worse. When increasing the number of clients lossless compression performed substantially better than lossy. A standard off-the-shelf server provides an appropriate download performance even with 16 concurrent clients. Processor speed and RAM amount are of minor importance, but it is highly recommended to use a 100-Mbit/s network connection and to avoid the application of on-demand lossy compression in a local area network.
机译:这项研究的目的是评估当多个个人计算机(PC)同时为不同的服务器硬件配置下载图像时,基于Web的图像分发的性能。使用专门开发的软件,最多可同时使用16台PC对处理器,随机存取存储器(RAM),网络连接和图像压缩的各种组合测量不同图像类型的显示时间(TTD)。 TTD随并发PC数量线性增加,但在大多数情况下,即使有16台并发PC也保持在5 s以下。只有在10 Mbit / s的网络连接或有损压缩的情况下,才能获得5 s以上的TTD。使用两个处理器而不是一个导致了TTD的不断改进。减少RAM的数量增加了TTD,主要用于计算机射线照相(CR)图像。 200 Mbit / s和100 Mbit / s的网络之间没有区别,但事实证明10 Mbit / s的情况更糟。当增加客户端数量时,无损压缩要比有损压缩好得多。即使有16个并发客户端,标准的现成服务器也可以提供适当的下载性能。处理器速度和RAM量不是次要的,但强烈建议使用100 Mbit / s的网络连接,并避免在局域网中应用按需有损压缩。

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