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Integration of Automatic Generation Control and Demand Response via a Dynamic Regulation Market Mechanism

机译:通过动态调节市场机制集成自动发电控制和需求响应

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Modern power systems utilize automatic generation control (AGC) for real-time frequency regulation to ensure power balance of generation and consumption. Increasing penetration of intermittent renewables will introduce greater variability in generation, which in turn requires an even higher participation of AGC. In light of this, frequency regulation becomes a very critical service in modern power systems' operations that has to be carried out with high economic efficiency. The use of demand response (DR) is being offered as a green, affordable alternative to conventional generation-based AGC. Although advances in wide-area monitoring and control technologies have made real-time control of DR a possibility, significant challenges remain for large-scale integration. In this paper, we propose a dynamic regulation market mechanism (DRMM) that allows both DR units and generators to bid for regulation service in real time, ensuring optimal allocation and reducing regulation service costs. Unlike similar proposals in the literature, the DRMM is practical to implement on a large power system with multiple areas. In particular, the DRMM requires modest communication rates on par with the existing AGC system and can explicitly accommodate constraints on DR energy deferment. We demonstrate the added benefit of the DRMM over the conventional AGC through simulations on a 3-area 900-bus power system and derive conditions for its stability.
机译:现代电力系统利用自动发电控制(AGC)进行实时频率调节,以确保发电和消耗的功率平衡。间歇性可再生能源渗透率的提高将带来更大的发电变异性,这反过来又需要AGC的更高参与度。鉴于此,在现代电力系统的运行中,频率调节已成为一项非常关键的服务,必须以很高的经济效率来执行。需求响应(DR)的使用是一种绿色的,可负担的替代传统基于发电的AGC的方法。尽管广域监视和控制技术的进步已使对DR的实时控制成为可能,但大规模集成仍面临重大挑战。在本文中,我们提出了一种动态监管市场机制(DRMM),该机制允许DR单位和发电商实时竞标监管服务,从而确保最优分配并降低监管服务成本。与文献中的类似提议不同,DRMM非常适合在具有多个区域的大型电力系统上实施。特别是,DRMM需要与现有AGC系统相当的适中通信速率,并且可以明确适应DR能量延迟的限制。通过在3区域900总线电力系统上进行仿真,我们证明了DRMM优于传统AGC的额外好处,并推导了其稳定性的条件。

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