STATUS OF THE ITER PLASMA CONTROL SYSTEM CONCEPTUAL DESIGN

STATUS OF THE ITER PLASMA CONTROL SYSTEM CONCEPTUAL DESIGN
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发表时间:
2009
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通讯作者:
A. Winter;D. Campbell;T. Casper;Y. Gribov;L. Scibile;A. Wallander;I. Yonekawa
A. Winter;D. Campbell;T. Casper;Y. Gribov;L. Scibile;A. Wallander;I. Yonekawa
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作者:
A. Winter;D. Campbell;T. Casper;Y. Gribov;L. Scibile;A. Wallander;I. Yonekawa

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ITER物理基础[1]及其更新[2,3]中详细描述了ITER等离子体控制的物理要求。几年前也发表了对ITER等离子体控制的一般性描述b[4],最近发表在b[5]。现在ITER的建设正在进行中,等离子体控制系统(PCS)的正式系统要求已经在一份高级文件中规定,该文件描述了PCS的关键特征以及PCS与诊断测量、致动器和其他工厂系统之间的接口。PCS是ITER控制、数据存取和通信(CODAC)系统的基本组成部分。它将控制所有等离子体参数的演变,这些参数是在整个放电阶段运行ITER所必需的。本文简要概述了pc机的物理和操作要求,并描述了pc机、CODAC和中央联锁系统(CIS)之间的集成和接口。
The physics requirements for plasma control in ITER have been described in some detail in the ITER Physics Basis [1] and its update [2, 3]. A general description of plasma control in ITER was also published a few years ago [4] and more recently in [5]. Now that ITER construction is underway, the formal system requirements for the Plasma Control System (PCS) have been specified in a high level document that describes the key features of the PCS and the interfaces between the PCS and the diagnostic measurements, actuators, and other plant systems. The PCS is a fundamental part of the Control, Data Access and Communication (CODAC) system on ITER. It will be controlling the evolution of all plasma parameters that are necessary to operate ITER throughout all phases of the discharge. This paper will summarize briefly the physics and operational requirements for the PCS and describe the integration and interfaces between the PCS, CODAC and the Central Interlock System (CIS).