These frequency responses are produced for n = 1 to N, where
sjn
=+=⋅ωαωω
,
0
2.6.3.3Subroutine FLT
The frequency responses I(s) and V(s) are sent to subroutine FLT given in
Figure 2.62. Then, the FLT carries out the inverse Laplace transform and the
time solutions are obtained. Figure 2.63 shows an example of a calculated
result v(t) in comparison with the accurate solution. Note that the accuracy
of the FLT is quite high.
2.6.4Remarks of the FD Method
The advantage of the FD method is that any frequency dependent effect is
easy to handle as it is based on ...
Become an O’Reilly member and get unlimited access to this title plus top books and audiobooks from O’Reilly and nearly 200 top publishers, thousands of courses curated by job role, 150+ live events each month, and much more.
O’Reilly covers everything we've got, with content to help us build a world-class technology community, upgrade the capabilities and competencies of our teams, and improve overall team performance as well as their engagement.
Julian F.
Head of Cybersecurity
I wanted to learn C and C++, but it didn't click for me until I picked up an O'Reilly book. When I went on the O’Reilly platform, I was astonished to find all the books there, plus live events and sandboxes so you could play around with the technology.
Addison B.
Field Engineer
I’ve been on the O’Reilly platform for more than eight years. I use a couple of learning platforms, but I'm on O'Reilly more than anybody else. When you're there, you start learning. I'm never disappointed.
Amir M.
Data Platform Tech Lead
I'm always learning. So when I got on to O'Reilly, I was like a kid in a candy store. There are playlists. There are answers. There's on-demand training. It's worth its weight in gold, in terms of what it allows me to do.