Borrar filtros
Borrar filtros

How to get Cumulative sum of elements based on negative sign

6 visualizaciones (últimos 30 días)
I have 2 vectors >> z=1:9; >> l=[1 2 -3 4 -5 6 7-8 9 10] starting from last element of l i.e 10 9....1 check for 1st negative element i.e. l=-8 if l=-8 add z8+z9 check for next negative element i.e l=-5 if l=-5 add z5+z6+z7 (elements between two negative numbers -5 and -8) check for next negative element i.e l=-3 add z3+z4 and add z1+z2 finally i should get new vector w=[z1+z2, z3+z4,z5+z6+z7,z8+z9]

Respuesta aceptada

Guillaume
Guillaume el 12 de Feb. de 2015
Your array l has one more element than z. why? Anyway,
z = 1:9;
l = [1 2 -3 4 -5 6 7 -8 9];
negposition = find(l < 0);
w = arrayfun(@(s, e) sum(z(s:e)), [1 negposition], [negposition-1 numel(z)])
  9 comentarios
Guillaume
Guillaume el 19 de Feb. de 2015
I don't see how you differentiate between your laterals and feeders in L.
In any case, I would suggest you start a new question. You'll get more people looking at it as when a question has an accepted answer, people don't look at them anymore.
Raghavendra Reddy P
Raghavendra Reddy P el 23 de Feb. de 2015
You rightly pointed out. Yes sir, we cannot differentiate main feeder and laterals based on the values of Vector L. We can differentiate by looking at vector Z. This how my actual Z vector looks like %% LINE NO FROM TO Real Imaginary Z= [1 1 2 0.0058 0.0029 2 2 3 0.0308 0.0157 3 3 4 0.0228 0.0116 4 4 5 0.0238 0.0121 5 5 6 0.0511 0.0441 6 6 7 0.0117 0.0386 7 7 8 0.1068 0.0771 8 8 9 0.0643 0.0462 9 9 10 0.0651 0.0462 10 3 11 0.0123 0.0041 11 11 12 0.0234 0.0077 12 12 13 0.0916 0.0721 13 6 14 0.0338 0.0445 14 14 15 0.0369 0.0328 15 15 16 0.0466 0.0340 16 16 17 0.0804 0.1074 17 17 18 0.0457 0.0358 18 8 19 0.0102 0.0098 19 19 20 0.0939 0.0846 20 20 21 0.0255 0.0298
In above Z vector, 1st column indicates line no(or branch no.), 2nd and 3rd column indicates from where to where line connected, 3rd and 4th column indicates actual real n img values to be summed based on sign of vector L.
Red marking indicates laterals starting point i.e for ex: line no 10, connected between node 3 and 11. Node 3 already connected to main feeder node 4 i.e. 3-4-5……-10 Also node 3 connected to lateral i.e 3-11-12-13(end point)
Similarly, Node 6 has lateral 6-14-15-16-17-18 and node 8 has lateral 8-19-20-21. We can differentiate main feeder n lateral by looking at From n To column of Z.
My vector L looks like %%% Real Imag L = [ 0.0000 0.0000 0.0100 0.0060 -0.0090 0.0040 0.0120 0.0080 0.0060 0.0030 0.0060 -0.0020 -0.0200 0.0100 0.0200 -0.0100 0.0060 0.0020 0.0060 0.0020 0.0045 0.0030 0.0060 0.0035 0.0060 0.0035 0.0120 0.0080 -0.0060 0.0010 0.0060 0.0020 0.0060 0.0020 0.0090 0.0040 0.0090 0.0040 0.0090 -0.0040 0.0090 0.0040]
As per your suggestion, I will create fresh question with all necessary details. Thank you sir.

Iniciar sesión para comentar.

Más respuestas (0)

Categorías

Más información sobre Mathematics en Help Center y File Exchange.

Community Treasure Hunt

Find the treasures in MATLAB Central and discover how the community can help you!

Start Hunting!

Translated by