fix: generate deterministic S-curve static-start ST seeds

This commit is contained in:
梁薄云
2026-08-07 16:33:12 +08:00
parent d378ad6257
commit 2d406359d0
2 changed files with 117 additions and 1 deletions
@@ -537,7 +537,86 @@ public sealed class SequentialLongitudinalOptimizer
return true;
}
}
failureReason = "exactJerkSeed=failed; sampledSeeds=failed";
if (TryCreateStaticStartScurveSeed(input, times, stabilizationStart, speedLimit, out candidate))
{
failureReason = string.Empty;
return true;
}
failureReason = "exactJerkSeed=failed; sampledSeeds=failed; scurveSeeds=failed";
return false;
}
private bool TryCreateStaticStartScurveSeed(LongitudinalPlanningInput input,
IReadOnlyList<double> times, int stabilizationStart, PathSpeedLimit speedLimit,
out LongitudinalCandidate candidate)
{
candidate = null;
int intervalCount = stabilizationStart;
int maximumRamp = Math.Max(1, intervalCount / 6);
var motionTimes = new double[intervalCount + 1];
for (int index = 0; index <= intervalCount; index++)
motionTimes[index] = times[index];
for (int ramp = 1; ramp <= maximumRamp; ramp++)
{
for (int plateau = 0; 4 * ramp + 2 * plateau <= intervalCount; plateau++)
{
int cruise = intervalCount - 4 * ramp - 2 * plateau;
var basisAccel = new double[intervalCount];
var basisBrake = new double[intervalCount];
var basisOffset = new double[intervalCount];
int cursor = 0;
for (int index = 0; index < ramp; index++)
basisAccel[cursor++] = 1d;
for (int index = 0; index < plateau; index++)
cursor++;
for (int index = 0; index < ramp; index++)
basisAccel[cursor++] = -1d;
for (int index = 0; index < cruise; index++)
cursor++;
for (int index = 0; index < ramp; index++)
basisBrake[cursor++] = -1d;
for (int index = 0; index < plateau; index++)
cursor++;
for (int index = 0; index < ramp; index++)
basisBrake[cursor++] = 1d;
if (cursor != intervalCount)
continue;
for (int index = 0; index < intervalCount; index++)
basisOffset[index] = 1d;
LongitudinalCandidate accelResponse = LongitudinalCandidate.Integrate(
motionTimes, 0d, 0d, 0d, basisAccel);
LongitudinalCandidate brakeResponse = LongitudinalCandidate.Integrate(
motionTimes, 0d, 0d, 0d, basisBrake);
LongitudinalCandidate offsetResponse = LongitudinalCandidate.Integrate(
motionTimes, 0d, 0d, 0d, basisOffset);
var influence = new double[3, 3];
influence[0, 0] = accelResponse.A[intervalCount];
influence[1, 0] = accelResponse.U[intervalCount];
influence[2, 0] = accelResponse.S[intervalCount];
influence[0, 1] = brakeResponse.A[intervalCount];
influence[1, 1] = brakeResponse.U[intervalCount];
influence[2, 1] = brakeResponse.S[intervalCount];
influence[0, 2] = offsetResponse.A[intervalCount];
influence[1, 2] = offsetResponse.U[intervalCount];
influence[2, 2] = offsetResponse.S[intervalCount];
double[] target = { 0d, 0d, input.StopBoundaryPathS };
if (!TrySolveThreeByThree(influence, target, out double[] multipliers))
continue;
var jerk = new double[intervalCount];
for (int index = 0; index < intervalCount; index++)
{
jerk[index] = multipliers[0] * basisAccel[index] +
multipliers[1] * basisBrake[index] +
multipliers[2] * basisOffset[index];
}
if (TryValidateExactSeed(input, times, stabilizationStart, speedLimit, jerk, out candidate))
return true;
}
}
return false;
}
@@ -16,6 +16,7 @@ internal static class LongitudinalIntegrationChecks
VerifiesFullDirectionScheduleIsIndependentFromPublicationCadence();
VerifiesFullDirectionStaticStartMakesProgress();
VerifiesFullDirectionNearZeroSpeedUsesStaticStartSeed();
VerifiesFullDirectionCurvedNearZeroStartUsesStaticStartSeed();
VerifiesFullDirectionPublicationDoesNotDuplicateItsTerminalHold();
VerifiesExactStopIncludesAStabilizationTail();
VerifiesLastStrictCandidateSurvivesLaterTimeout();
@@ -187,6 +188,42 @@ internal static class LongitudinalIntegrationChecks
"near-zero start stops at the terminal boundary");
}
private static void VerifiesFullDirectionCurvedNearZeroStartUsesStaticStartSeed()
{
EmPlannerConfiguration configuration = EmPlannerConfiguration.CreateDefault();
configuration.Scheduling.SolverTimeoutSeconds = 5d;
configuration.Solver.MaximumOsqpIterations = 100000;
LateralPath path = new LateralPath(new[]
{
Point(0d, 0d, 0d),
Point(1d, 2.25d, 0.1d),
Point(2d, 4.5d, 0d),
}, true);
EmPlanningStatus status = new PathSpeedLimitBuilder().Build(path, TravelDirection.Forward, 0.0001d,
EmTerminalType.Goal, configuration, out PathSpeedLimit speedLimit, out string failureReason);
Verification.Equal(EmPlanningStatus.Success, status, "curved near-zero envelope: " + failureReason);
status = new FullDirectionSegmentScheduleBuilder().TryBuild(path, speedLimit, 0.0001d, 0d,
configuration.Longitudinal.DesiredForwardSpeedMetersPerSecond, configuration,
out LongitudinalKnotSchedule schedule, out failureReason);
Verification.Equal(EmPlanningStatus.Success, status, "curved near-zero schedule: " + failureReason);
var input = new LongitudinalPlanningInput(path, TravelDirection.Forward, 0.0001d, 0d,
EmTerminalType.Goal, EmLongitudinalMode.ExactStopAtBoundary, configuration,
EmPlanningScope.FullDirectionSegment, schedule, Array.Empty<double>(), Array.Empty<double>());
LongitudinalPlanningResult result = new LongitudinalPlanner(new OsqpNativeSolver()).Plan(input,
CancellationToken.None);
Verification.True(result.Status == EmPlanningStatus.Success || result.Status == EmPlanningStatus.SuccessWithFallback,
"curved near-zero full-direction start succeeds: " + result.FailureReason);
LongitudinalCandidate candidate = result.Candidate ??
throw new InvalidOperationException("Curved near-zero full-direction candidate was missing.");
Verification.NearlyEqual(path.Points[path.Points.Count - 1].PathS, candidate.S[candidate.S.Count - 1],
"curved near-zero start reaches the terminal boundary");
Verification.NearlyEqual(0d, candidate.U[candidate.U.Count - 1],
"curved near-zero start stops at the terminal boundary");
}
private static void VerifiesFullDirectionPublicationDoesNotDuplicateItsTerminalHold()
{
EmPlannerConfiguration configuration = EmPlannerConfiguration.CreateDefault();