Initial transfer file and some other improvements

This commit is contained in:
2026-06-08 23:28:21 -07:00
parent ef8ae9e9cc
commit a936077187
4 changed files with 78 additions and 2 deletions
+3
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@@ -0,0 +1,3 @@
wait until ship:unpacked.
core:part:getmodule("kOSProcessor"):doevent("Open Terminal").
runPath("0:/scripts/transfer.ks").
+3 -1
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@@ -92,6 +92,7 @@ function basicAscent {
wait 0.1.
// this isn't always true, figure out a way around
panels on.
radiators on.
for a in antennas {
@@ -129,7 +130,8 @@ function basicAscent {
// if we're using a booster to get to orbit drop it before finishing the cirularization
when ship:periapsis > 30000 then {
if ship:stagenum <> 0 and ship:stagedeltav(ship:stagenum - 1):current > 0 {
// use RCS as a condition to not stage the booster
if ship:stagenum <> 0 and ship:stagedeltav(ship:stagenum - 1):current > 0 and not brakes {
print "Dropping booster".
// shutdown engines before dropping them
+3 -1
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@@ -79,9 +79,11 @@ until h < 1 {
wait 0.
}
lock throttle to 0.
unlock throttle.
clearscreen.
print "Holding position".
lock steering to groundSlope().
lock steering to lookDirUp(groundSlope(), ship:facing:upvector).
wait until ship:angularvel:mag < 0.1.
wait 5.
print "Stable".
+69
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@@ -0,0 +1,69 @@
function hohmannDeltaV {
parameter r1 is 1, r2 is 1, mu is 1.
local vCirc to sqrt(mu / r1).
local vHohmann to sqrt(mu * (2 / r1 - 2 / (r1 + r2))).
return vHohmann - vCirc.
}
function angleBetween {
parameter posA to V(1, 1, 0), posB to V(1, 1, 0).
local angle to arcTan2(posB:y, posB:x) - arcTan2(posA:y, posA:x).
if angle < 0 set angle to angle + 2 * constant:pi.
return angle.
}
function hohmannTransfer {
// parameter targetPeriapsis is 60000.
parameter tgtBody is Mun.
// get the approximate required deltav for a transfer
local r1 to ship:orbit:semimajoraxis.
local r2 to tgtBody:orbit:semimajoraxis.
local vTransfer to hohmannDeltaV(r1, r2, kerbin:mu).
// compute the transfer time
local transferSMA to (r1 + r2) / 2.
local transferPeriod to 2 * constant:pi * sqrt(transferSMA^3 / kerbin:mu).
local transitTime to transferPeriod / 2.
// get lead angle (how far ahead the tgtBody must be)
local tgtAV to 2 * constant:pi / tgtBody:orbit:period.
local leadAngle to tgtAV * transitTime.
local transferAngle to constant:pi - leadAngle.
// find the next time the phase angle condition is satisfied
local shipAV to 2 * constant:pi / ship:orbit:period.
local relativeAV to tgtAV - shipAV.
// get the phase angle to the target
local bodyToShip to (ship:position - body:position):normalized.
local obtNorm to vCrs(bodyToShip, ship:velocity:orbit:normalized):normalized.
local bodyToTgt to vXcl(obtNorm, (tgtBody:position - body:position):normalized):normalized.
local signVec to vCrs(obtNorm, bodyToShip):normalized.
local phaseSign to vDot(bodyToTgt, signVec).
local currentPhaseAngle to vAng(ship:position - body:position, tgtBody:position - body:position) * (constant:pi / 180).
if phaseSign < 0 set currentPhaseAngle to -1 * currentPhaseAngle + 2 * constant:pi.
// get the time to start the maneuver
local phaseError is transferAngle - currentPhaseAngle.
if phaseError < 0 set phaseError to phaseError + 2 * constant:pi.
local waitTime to phaseError / relativeAV.
if waitTime < 0 set waitTime to waitTime + ship:orbit:period.
set nd to node(time:seconds + waitTime, 0, 0, vTransfer).
add nd.
// print "Transfer DeltaV (m/s) : " + round(vTransfer, 2).
// print "Transit Time (s) : " + round(transitTime*57.3, 0).
// print "Lead Angle (deg) : " + round(transferAngle*57.3, 2).
// print "Relative AV (deg/s) : " + relativeAV*57.3.
// print "Phase Angle (deg) : " + round(currentPhaseAngle*57.3, 2).
// print "Phase Error (deg) : " + round(phaseError*57.3, 2).
// print "Wait Time (s) : " + round(waitTime, 0).
}
hohmannTransfer(Mun).