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Optimization of a low-cost truly preemptive multitasking PC diagnostic workstation

机译:优化低成本真正抢占的多任务PC诊断工作站

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摘要

The Windows 95/NT operating systems (Microsoft Corp, Redmond, WA) currently provide the only low-cost truly preemptive multitasking environment and as such become an attractive diagnostic workstation platform. The purpose of this project is to test and optimize display station graphical user interface (GUI) actions previously designed on the pseudomultitasking Macintosh (Apple Computer, Cupertino, CA) platform, and image data transmission using time slicing/dynamic prioritization assignment capabilities of the new Windows platform. A diagnostic workstation in the clinical environment must process two categories of events: user interaction with the GUI through keyboard/mouse input, and transmission of incoming data files. These processes contend for central processing units (CPU) time resulting in GUI “lockout” during image transmission or delay in transmission until GUI “quiet time.” WinSockets and the Transmission Control Protocol/Internet Protocal (TCP/IP) communication protocol software (Microsoft) are implemented using dynamic priority timeslicing to ensure that GUI delays at the time of Digital Imaging and Communications in Medicine (DICOM) file transfer do not exceed 1/10 second. Assignment of thread priority does not translate into an absolute fixed percentage of CPU time. Therefore, the relationship between dynamic priority assignment by the processor, and the GUI and communication application threads will be more fully investigated to optimize CPU resource allocation. These issues will be tested using 10 MB/sec Ethernet and 100 MB/sec fast and wide Ethernet transmission. Preliminary results of typical clinical files (10 to 30 MB) over Ethernet show no visually perceptible interruption of the GUI, suggesting that the new Windows PC platform may be a viable diagnostic workstation option.
机译:Windows 95 / NT操作系统(微软公司,华盛顿州雷德蒙德)目前提供唯一的低成本真正抢占式多任务环境,因此成为有吸引力的诊断工作站平台。该项目的目的是测试和优化以前在伪多任务Macintosh(Apple Computer,Cupertino,CA)平台上设计的显示站图形用户界面(GUI)动作,并使用新的时间切片/动态优先级分配功能来进行图像数据传输。 Windows平台。临床环境中的诊断工作站必须处理两类事件:用户通过键盘/鼠标输入与GUI的交互以及传入数据文件的传输。这些过程争夺中央处理器(CPU)的时间,从而导致GUI在图像传输过程中“锁定”,或者延迟传输直到GUI“安静时间”。 WinSockets和传输控制协议/ Internet协议(TCP / IP)通信协议软件(Microsoft)使用动态优先级分片实现,以确保在进行医学数字成像和通信(DICOM)文件传输时GUI延迟不超过1 / 10秒。线程优先级的分配不会转换为CPU时间的绝对固定百分比。因此,将更全面地研究处理器动态优先级分配与GUI和通信应用程序线程之间的关系,以优化CPU资源分配。这些问题将使用10 MB /秒的以太网和100 MB /秒的快速和宽以太网传输进行测试。通过以太网进行的典型临床文件(10至30 MB)的初步结果表明,GUI没有视觉上可察觉的中断,这表明新的Windows PC平台可能是可行的诊断工作站选项。

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