首页> 外文会议>International topical meeting on nuclear plant instrumentation, control, and human-machine interface technologies >A PHYSICAL SIMULATOR IN SUPPORTING OF RESEARCH DEVELOPMENT FOR INSTRUMENTATION AND CONTROL SYSTEMS IN NUCLEAR POWER PLANTS
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A PHYSICAL SIMULATOR IN SUPPORTING OF RESEARCH DEVELOPMENT FOR INSTRUMENTATION AND CONTROL SYSTEMS IN NUCLEAR POWER PLANTS

机译:支持核电厂仪表与控制系统研究与开发的物理仿真器

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In this paper, the development of a nuclear power simulator to support I&C research and development is presented. The simulator relies on physical sensors and actuators, and hardware simulated dynamic processes. From an I&C perspectives (low voltage, current and power), the simulator behaves as if the I&C system is connected to a real process. The simulator consists of 6 physical processes, and can be configured to form 15 different control loops to support various I&C testing situations. The simulator has been deliberately overly instrumented with 25 different industry-grade sensors and 30 industry-grade actuators so that it can be easily interconnected with external hardware control and instrumentation devices. This simulator allows researchers in the nuclear I&C field to test variety of instrumentation and control algorithms in a dynamic environment, similar to that encountered in a real nuclear power plant, in real-time. The biggest advantage of using physical simulator, as opposed to software based simulator, is that one does not have to deal with timing issues between the simulator and the external control devices in the testing and validation process of control schemes. This simulator also facilitates development of new control and diagnostic schemes, e.g. smart sensors, applications of wireless sensor networks, in a dynamic environment. Our experience so far has indicated that such a simulator is a must-have item in research and development of I&C systems for nuclear power plants.
机译:本文介绍了支持I&C研究与开发的核电模拟器的开发。该模拟器依赖于物理传感器和执行器以及硬件模拟的动态过程。从I&C角度(低电压,电流和功率)来看,模拟器的行为就像I&C系统已连接到实际过程一样。该模拟器由6个物理过程组成,可以配置为形成15个不同的控制回路,以支持各种I&C测试情况。该模拟器故意过分地配备了25种不同的工业级传感器和30个工业级执行器,因此可以轻松地与外部硬件控制和仪器设备互连。该模拟器使核I&C领域的研究人员能够在动态环境中实时测试各种仪器和控制算法,类似于在真实核电厂中遇到的情况。与基于软件的模拟器相比,使用物理模拟器的最大优势在于,在控制方案的测试和验证过程中,不必处理模拟器与外部控制设备之间的时序问题。该模拟器还有助于开发新的控制和诊断方案,例如智能传感器,动态环境中无线传感器网络的应用。到目前为止,我们的经验表明,这样的模拟器是核电厂I&C系统研究和开发中必不可少的项目。

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