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A STOCHASTIC APPROACH TO THE CONVEX OPTIMIZATION OF NON-CONVEX DISCRETE ENERGY SYSTEMS

机译:非凸离散能源系统凸优化的随机方法

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Energy systems (e.g. ventilation fans, refrigerators, and electrical vehicle chargers) often have binary or discrete states due to hardware limitations and efficiency characteristics. Typically, such systems have additional programmatic constraints, such as minimum dwell times to prevent short cycling. As a result, non-convex techniques, like dynamic programming, are generally required for optimization. Recognizing developments in the field of distributed convex optimization and the potential for energy systems to participate in ancillary power system services, it is advantageous to develop convex techniques for the approximate optimization of energy systems. In this manuscript, we develop the alternative control trajectory representation - a novel approach for representing the control of a non-convex discrete system as a convex program. The resulting convex program provides a solution that can be interpreted stochastically for implementation.
机译:能源系统(例如通风风扇,冰箱和电动车充电器)由于硬件限制和效率特性,通常具有二进制或离散状态。通常,这种系统具有额外的编程约束,例如最小停留时间以防止短循环。结果,通常需要更优化的非凸技术,如动态编程。识别分布式凸优化领域的发展以及参与辅助电力系统服务的能量系统的潜力,有利于开发用于近似优化能量系统的凸技术。在该稿件中,我们开发替代控制轨迹表示 - 一种用于表示非凸离散系统作为凸面的控制的新方法。得到的凸面程序提供了一种可以随机解释的解决方案以实现实施。

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