According the the previous chapter, a = b/sqrt(1-e**2), where b is the the semi-minor axis, which is a distance. r is a distance. E' presumably is a time derivative of the eccentric anomaly, which is presumably dependent upon time (degrees/sec or whatever). e is dimensionless. This is described in Herbet on page 31 in deriving the elements. The figure it is derived from shows an ellipse, parabola, E, v (true anomaly), etc. There is little mention of units. Distance is distance, meters, feet, AU, whatever.
I'm converting an old computer program for meteor analysis according to a 60's book that has the code in it. This equation is not mentioned in the book, but a colleague working on it with me brought up the equation. Herget gives 9 equations, while the book shows 9 for the equatorial elements, and five more for the 3 elements on the ecliptic. Herget's chapter is on the Laplace method, while the book may be using some other part of Herget. So maybe I'm chasing a red herring. Neither of us have training in orbit calculations, but I am enjoying learning about them. This is a private effort.
Are you familiar with the Herget book?