基于动态矩阵控制的热电联产能源系统协调控制

Zihang Wu, Lihua Yang, Xiao Wu
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引用次数: 1

摘要

热电联产一体化能源系统(CHP-IES)能够高效、独立地向终端用户提供可再生能源占比高的能源,被认为是未来能源系统的重要发展方向。然而,由于热电过程具有强多变量耦合和动态差异的特点,热电联产系统的运行具有挑战性。此外,可再生能源和负荷需求都存在很强的不确定性波动。因此,开发先进的控制器以实现CHP-IES的可靠和灵活运行是非常重要的。为此,本文提出了一种基于系统动力学的多变量动态矩阵控制器(DMC)。在离网热电联产系统上的仿真结果表明,与传统PID控制器相比,DMC能够以更小的超调量和更快的速度跟踪系统的热量和功率需求,从而降低了系统对电池的依赖。
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Coordinative Control of Combined Heat and Power Integrated Energy System Using Dynamic Matrix Control
The combined heat and power integrated energy system(CHP-IES) is considered to be an important development direction of the future energy system because it can supply energy with high proportion of renewables to the end-users in an efficient and independent manner. However, the operation of the CHP-IES is challenging due to the characteristics of strong multi-variable coupling and dynamic differences between thermal and electrical processes. Moreover, there are strong uncertain fluctuations in both the renewable sources and load demands. It is therefore important to develop advanced controllers to achieve the reliable and flexible operation of the CHP-IES. For this reason, this paper presents a multi-variable dynamic matrix controller (DMC) of the CHP-IES based on the dynamics of the system. Simulation results on an off-grid CHP-IES show that the DMC can track the heat and power demands with smaller overshoot and faster speed, thus can reduce the dependence of the system on batteries, compared with the conventional PID controller.
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