# d <- dgp.otlcircuit(NULL, 10000)
# summary(d[[2]])
otlcircuit <- function(xx)
{
##########################################################################
#
# OTL CIRCUIT FUNCTION
#
# Authors: Sonja Surjanovic, Simon Fraser University
# Derek Bingham, Simon Fraser University
# Questions/Comments: Please email Derek Bingham at dbingham@stat.sfu.ca.
#
# Copyright 2013. Derek Bingham, Simon Fraser University.
#
# THERE IS NO WARRANTY, EXPRESS OR IMPLIED. WE DO NOT ASSUME ANY LIABILITY
# FOR THE USE OF THIS SOFTWARE. If software is modified to produce
# derivative works, such modified software should be clearly marked.
# Additionally, this program is free software; you can redistribute it
# and/or modify it under the terms of the GNU General Public License as
# published by the Free Software Foundation; version 2.0 of the License.
# Accordingly, this program is distributed in the hope that it will be
# useful, but WITHOUT ANY WARRANTY; without even the implied warranty
# of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
# General Public License for more details.
#
# For function details and reference information, see:
# http://www.sfu.ca/~ssurjano/
#
##########################################################################
#
# OUTPUT AND INPUT:
#
# Vm = midpoint voltage
# xx = c(Rb1, Rb2, Rf, Rc1, Rc2, beta)
#
##########################################################################
Rb1 <- xx[1]
Rb2 <- xx[2]
Rf <- xx[3]
Rc1 <- xx[4]
Rc2 <- xx[5]
beta <- xx[6]
Vb1 <- 12*Rb2 / (Rb1+Rb2)
term1a <- (Vb1+0.74) * beta * (Rc2+9)
term1b <- beta*(Rc2+9) + Rf
term1 <- term1a / term1b
term2a <- 11.35 * Rf
term2b <- beta*(Rc2+9) + Rf
term2 <- term2a / term2b
term3a <- 0.74 * Rf * beta * (Rc2+9)
term3b <- (beta*(Rc2+9)+Rf) * Rc1
term3 <- term3a / term3b
Vm <- term1 + term2 + term3
return(Vm)
}
dgp.otlcircuit <- function(box, n.points, distr = "laths", nval = 5, pts = 0, use.pts = FALSE, thr = 4.5){
dim <- 6
if(is.null(box)){
box <- matrix(c(rep(0, dim), rep(1, dim)), nrow = 2, byrow = TRUE)
}
if(use.pts){
if(ncol(pts) != dim) stop(paste0("pts should have ", dim, " dimensions"))
d <- pts
} else {
if(ncol(box) != dim) stop(paste0("box should have ", dim, " dimensions"))
d <- get.data(box, n.points, distr, nval)
}
low <- c(50, 25, 0.5, 1.2, 0.25, 50)
up <- c(150, 70, 3, 2.5, 1.2, 300)
y <- apply(d.scale(d, low, up), 1, otlcircuit)
y <- ifelse(y < thr, 1, 0)
return(list(d, y))
}
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