This paper presents a new method to obtain the sum of random harmonic vectors (voltage or current) whose phases have different probability distribution functions in a power system.
提出了一种处理电力系统中具有不同相角分布时随机谐波矢量(电压和电流)的求和问题的新方法。
The article also introduces several experiments using samples with different probability distribution and 2d images to compare the performance between the classic and improved algorithm.
文中介绍了若干实验,对多种分布的样本以及2维图像进行了经典算法和改进型算法的比较。
Once these different functions (such as the probability distribution) are learned, the correct action to take is simply a matter of deciding which action maximizes the "expected utility" of the agent.
一旦这些不同的函数(例如概率分布)都被掌握,智能体就会很容易判断哪一种行为会让预期效用最大化,并据此选择正确的行为。
So, there are 2 different things that we can compare when we're comparing graphs of radial probability distribution, and the first thing we can do is think about well, how does the radius change, or the most probable radius change when we're increasing n, when we're increasing the principle quantum number here?
当比较这些径向概率分布图,的时候,我们可以比较两个东西,第一个就是考虑当我们增加n,当我们增加主量子数的时候,半径怎么变,最可能半径怎么变化?
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