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Control of the pressurized water nuclear reactors power using optimized proportional–integral–derivative controller with particle swarm optimization?algorithm

机译:使用带有粒子群优化算法的优化比例-积分-微分控制器来控制压水核反应堆功率

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Various controllers such as proportional–integral–derivative (PID) controllers have been designed and optimized for load-following issues in nuclear reactors. To achieve high performance, gain tuning is of great importance in PID controllers. In this work, gains of a PID controller are optimized for power-level control of a typical pressurized water reactor?using particle swarm optimization (PSO) algorithm. The point kinetic is used as a reactor power model. In PSO, the objective (cost) function defined by decision variables including overshoot, settling time, and stabilization time (stability condition) must be minimized (optimized). Stability condition is guaranteed by Lyapunov synthesis. The simulation results demonstrated good stability and high performance of the closed-loop PSO–PID controller to response power demand.
机译:针对核反应堆中的负荷跟踪问题,已经设计并优化了各种控制器,例如比例积分微分(PID)控制器。为了实现高性能,增益调整在PID控制器中非常重要。在这项工作中,使用粒子群优化(PSO)算法对PID控制的增益进行了优化,以用于典型压水堆的功率水平控制。点动力学用作反应堆功率模型。在PSO中,必须最小化(优化)由决策变量定义的目标(成本)函数,包括超调,建立时间和稳定时间(稳定条件)。 Lyapunov合成可确保稳定性条件。仿真结果表明,闭环PSO-PID控制器具有良好的稳定性和高性能,能够响应功率需求。

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