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State Space Modeling and Control of Aggregated TCLs for Regulation Services in Power Grids

机译:电网调节服务的总体TCL的状态空间建模和控制

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摘要

Thermostatically controlled loads (TCLs), which possess thermal inertia, have attracted additional attention for providing ancillary services to power systems. In this regard, the aggregation model for TCLs is critical for evaluating the performance and optimizing the control of a population of TCLs. We learn by theoretical analyses and simulations that the accuracy of the state space model in most cases is deteriorated by applying longer TCL dispatch periods. Thus, a modified aggregated TCL model is proposed and a new state transition matrix is derived in this paper to improve the TCL modeling accuracy for the provision of grid regulation services. The proposed control model for the aggregated TCL accounts for compressor time delays that would enhance the collective TCL behavior. A probabilistic control strategy is presented to reduce the adverse impacts on the durability of TCL compressors and communication requirements for implementing the TCL control signal. Simulation results demonstrate that the proposed aggregated TCL model with control signals can closely follow actual TCL behavior and the proposed control strategy can reduce the number of TCL switching for providing ancillary services to power systems.
机译:具有热惯性的恒温控制负载(TCL)在为电力系统提供辅助服务方面引起了更多关注。在这方面,TCL的聚合模型对于评估性能和优化TCL群体的控制至关重要。通过理论分析和仿真,我们了解到,在大多数情况下,状态空间模型的准确性会因采用更长的TCL调度周期而降低。因此,提出了一种改进的聚合TCL模型,并导出了一个新的状态转移矩阵,以提高TCL建模精度,从而为电网监管服务的提供。针对总TCL的建议控制模型考虑了压缩机时间延迟,这将增强集体TCL行为。提出了一种概率控制策略,以减少对TCL压缩机的耐用性和实现TCL控制信号的通信要求的不利影响。仿真结果表明,所提出的带有控制信号的集合式TCL模型可以紧贴实际的TCL行为,并且所提出的控制策略可以减少为电力系统提供辅助服务的TCL切换次数。

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