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Controlling the Electrical State via Uncertain Power Injections in Three-Phase Distribution Networks

机译:在三相配电网中通过不确定的功率注入控制电气状态

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We consider the problem of controlling the electrical state of a three-phase distribution network by enforcing the explicit power injection. More precisely, we assume that the power injection is constrained to reside in some uncertainty set, and the problem is to ensure that the electrical state remains in a set that satisfies feasibility constraints. To formalize this, we say that a set S of power injections is a "domain of V-control" if any continuous trajectory of the electrical state that starts in the set V must stay in V as long as the corresponding trajectory of the power injection stays in S. First, we show that the existence and uniqueness of load-flow solution is not enough to guarantee V-control, and give sufficient additional conditions for V-controllability to hold. Incidentally, the derivation of our conditions establishes that local uniqueness implies nonsingularity of the load-flow Jacobian (the converse is well known by the inverse function theorem). Then, we give a concrete algorithm to determine whether a given set of power injections is a domain of V-control for some feasible and nonsingular set V. The algorithm is evaluated on IEEE test feeders. Our method can be used to perform admissibility tests in the control of distribution networks by power injections.
机译:我们考虑通过实施显式功率注入来控制三相配电网的电气状态的问题。更准确地说,我们假定功率注入被约束为驻留在某个不确定性集中,而问题是要确保电气状态保持在满足可行性约束的集中。为了对此进行形式化,我们说,如果在集合V中开始的电状态的任何连续轨迹必须保持在V中,则只要将S的相应轨迹保持在V中,就可以将集合S的功率注入称为“ V控制域”。功率注入停留在S。首先,我们证明潮流解决方案的存在和唯一性不足以保证V控制,并为保持V可控制性提供了足够的附加条件。顺便说一下,我们条件的推导建立了局部唯一性意味着潮流雅可比方程的非奇异性(逆函数定理众所周知)。然后,我们给出一种具体算法,以确定对于某些可行且非奇异的集合V,给定的功率注入集是否为V控制域。该算法在IEEE测试馈线上进行评估。我们的方法可用于通过功率注入在配电网控制中执行可允许性测试。

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