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The issue with Equation 2 in the paper #3

@Wuzheng02

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@Wuzheng02

This is a very solid work, and I’m quite interested in it.

However, I have a minor question about Equation (2) in the paper: Should there be a coefficient of $\frac{1}{2\pi\sigma_x\sigma_y}$ missing before the $\exp$ term in Equation (2)?

You wrote $R_{\text{point}}$ as a Gaussian distribution, but the integral of your current formula does not equal 1.

If you want to ensure that the value of $R_{\text{point}}$ remains between 0 and 1, you should not write it as equal to $N(\mu_p; \mu_{\text{gt}}, \Sigma_{\text{gt}})$.

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