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The Research and Application of 1089 t/h Circulating Fluidized Bed Unit Coordinate Control System

机译:1089 t / h循环流化床机组协调控制系统的研究与应用

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The control objects of circulating fluidized bed (CFB) power unit have the features of pure delay, large inertia, and serious coupling between variables features, so the control systems are difficult to put into automatic, especially,coordination control system (CCS) needs great effort to achieve good control effect. A power plant uses 1089t/h CFB. According to the characteristics of the CFB unit, the logic of coordinated control system is modified as follows: in order to increase and reduce the the system first and second air flow by adding the air flow feed forward in the air volume control system while changing the amount of coal, boiler master using the combination of control methods of direct energy balance(DEB) and instruction indirect balance, adding the dynamic deviation adjustment circuit of the main steam pressure. While doing the disturbance test, power and main steam pressure can track the instruction fastly, and the deviation in dynamic and static tests has been less. The results of the automatic generation control(AGC) experiment and first frequency modulation experiment could meet the standards. The main parameters have been stable in the tests and the effect of tests reached better.
机译:循环流化床(CFB)动力装置的控制对象具有纯延迟,大惯量,变量间耦合性强等特点,因此控制系统难以自动化,尤其是协调控制系统(CCS)的需求很大。努力取得良好的防治效果。一家发电厂使用1089t / h CFB。根据CFB单元的特性,对协调控制系统的逻辑进行了如下修改:为了增加和减少系统的第一和第二气流,方法是增加风量控制系统中的前馈气流,同时改变风量。在煤量方面,锅炉主控制器采用直接能量平衡(DEB)和指令间接平衡的控制方法相结合,增加了主蒸汽压力的动态偏差调节电路。在进行干扰测试时,功率和主蒸汽压力可以快速跟踪指令,动态和静态测试中的偏差较小。自动发电控制(AGC)实验和首次调频实验的结果均符合标准。主要参数在测试中稳定,测试效果更好。

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