Cooperation.java
package org.opentrafficsim.road.gtu.tactical.util.lmrs;
import org.djunits.unit.AccelerationUnit;
import org.djunits.value.vdouble.scalar.Acceleration;
import org.djunits.value.vdouble.scalar.Speed;
import org.opentrafficsim.base.NamedConstants;
import org.opentrafficsim.base.parameters.ParameterException;
import org.opentrafficsim.base.parameters.ParameterTypes;
import org.opentrafficsim.core.gtu.plan.operational.OperationalPlanException;
import org.opentrafficsim.core.network.LateralDirectionality;
import org.opentrafficsim.road.gtu.LaneBasedGtu;
import org.opentrafficsim.road.gtu.perception.PerceptionCollectable;
import org.opentrafficsim.road.gtu.perception.RelativeLane;
import org.opentrafficsim.road.gtu.perception.categories.neighbors.NeighborsPerception;
import org.opentrafficsim.road.gtu.perception.object.PerceivedGtu;
import org.opentrafficsim.road.gtu.tactical.Synchronizable;
import org.opentrafficsim.road.gtu.tactical.TacticalContextEgo;
/**
* Different forms of cooperation.
* <p>
* Copyright (c) 2013-2026 Delft University of Technology, PO Box 5, 2600 AA, Delft, the Netherlands. All rights reserved. <br>
* BSD-style license. See <a href="https://opentrafficsim.org/docs/license.html">OpenTrafficSim License</a>.
* </p>
* @author Alexander Verbraeck
* @author Peter Knoppers
* @author Wouter Schakel
*/
public interface Cooperation extends LmrsParameters, NamedConstants
{
/** Simple passive cooperation. */
Cooperation PASSIVE = new Cooperation()
{
@Override
public Acceleration cooperate(final TacticalContextEgo context, final LateralDirectionality lat,
final LmrsData lmrsData, final Desire ownDesire) throws ParameterException, OperationalPlanException
{
if (!context.getPerception().getLaneStructure().exists(lat.isRight() ? RelativeLane.RIGHT : RelativeLane.LEFT))
{
return new Acceleration(Double.MAX_VALUE, AccelerationUnit.SI);
}
Acceleration b = context.getParameters().getParameter(ParameterTypes.B);
Acceleration a = new Acceleration(Double.MAX_VALUE, AccelerationUnit.SI);
double dCoop = context.getParameters().getParameter(DCOOP);
RelativeLane relativeLane = new RelativeLane(lat, 1);
for (PerceivedGtu leader : context.getPerception().getPerceptionCategory(NeighborsPerception.class)
.getLeaders(relativeLane))
{
double desire = lat.equals(LateralDirectionality.LEFT) ? leader.getBehavior().rightLaneChangeDesire()
: lat.equals(LateralDirectionality.RIGHT) ? leader.getBehavior().leftLaneChangeDesire() : 0.0;
if (desire >= dCoop && (leader.getSpeed().gt0() || leader.getDistance().gt0()))
{
if (lmrsData != null)
{
lmrsData.setSynchronizationState(Synchronizable.State.COOPERATING);
}
Acceleration aSingle =
LmrsUtil.singleAcceleration(context, leader.getDistance(), leader.getSpeed(), desire);
a = Acceleration.min(a, aSingle);
}
}
return Acceleration.max(a, b.neg());
}
@Override
public String name()
{
return "PASSIVE";
}
};
/** Same as passive cooperation, except that cooperation is sometimes ignored at low speed of other vehicles. */
Cooperation PASSIVE_MOVING = new Cooperation()
{
@Override
public Acceleration cooperate(final TacticalContextEgo context, final LateralDirectionality lat,
final LmrsData lmrsData, final Desire ownDesire) throws ParameterException, OperationalPlanException
{
if (!context.getPerception().getLaneStructure().exists(lat.isRight() ? RelativeLane.RIGHT : RelativeLane.LEFT))
{
return new Acceleration(Double.MAX_VALUE, AccelerationUnit.SI);
}
Acceleration bCrit = context.getParameters().getParameter(ParameterTypes.BCRIT);
Acceleration a = new Acceleration(Double.MAX_VALUE, AccelerationUnit.SI);
double dCoop = context.getParameters().getParameter(DCOOP);
RelativeLane relativeLane = new RelativeLane(lat, 1);
NeighborsPerception neighbours = context.getPerception().getPerceptionCategory(NeighborsPerception.class);
PerceptionCollectable<PerceivedGtu, LaneBasedGtu> leaders = neighbours.getLeaders(RelativeLane.CURRENT);
Speed thresholdSpeed = Speed.ofSI(6.86); // 295m / 43s
boolean leaderInCongestion = leaders.isEmpty() ? false : leaders.first().getSpeed().lt(thresholdSpeed);
for (PerceivedGtu leader : neighbours.getLeaders(relativeLane))
{
double desire = lat.equals(LateralDirectionality.LEFT) ? leader.getBehavior().rightLaneChangeDesire()
: lat.equals(LateralDirectionality.RIGHT) ? leader.getBehavior().leftLaneChangeDesire() : 0.0;
// TODO: only cooperate if merger still quite fast or there's congestion downstream anyway (which we can better
// estimate than only considering the direct leader
if (desire >= dCoop && (leader.getSpeed().gt0() || leader.getDistance().gt0())
&& (leader.getSpeed().ge(thresholdSpeed) || leaderInCongestion))
{
if (lmrsData != null)
{
lmrsData.setSynchronizationState(Synchronizable.State.COOPERATING);
}
Acceleration aSingle =
LmrsUtil.singleAcceleration(context, leader.getDistance(), leader.getSpeed(), desire);
a = Acceleration.min(a, aSingle);
}
}
return Acceleration.max(a, bCrit.neg());
}
@Override
public String name()
{
return "PASSIVE_MOVING";
}
};
/** Cooperation similar to the default, except at large adjacent leader deceleration. */
Cooperation ACTIVE = new Cooperation()
{
@Override
public Acceleration cooperate(final TacticalContextEgo context, final LateralDirectionality lat,
final LmrsData lmrsData, final Desire ownDesire) throws ParameterException, OperationalPlanException
{
if (!context.getPerception().getLaneStructure().exists(lat.isRight() ? RelativeLane.RIGHT : RelativeLane.LEFT))
{
return new Acceleration(Double.MAX_VALUE, AccelerationUnit.SI);
}
Acceleration a = new Acceleration(Double.MAX_VALUE, AccelerationUnit.SI);
double dCoop = context.getParameters().getParameter(DCOOP);
RelativeLane relativeLane = new RelativeLane(lat, 1);
for (PerceivedGtu leader : context.getPerception().getPerceptionCategory(NeighborsPerception.class)
.getLeaders(relativeLane))
{
double desire = lat.equals(LateralDirectionality.LEFT) ? leader.getBehavior().rightLaneChangeDesire()
: lat.equals(LateralDirectionality.RIGHT) ? leader.getBehavior().leftLaneChangeDesire() : 0.0;
if (desire >= dCoop && leader.getDistance().gt0()
&& leader.getAcceleration().gt(context.getParameters().getParameter(ParameterTypes.BCRIT).neg()))
{
if (lmrsData != null)
{
lmrsData.setSynchronizationState(Synchronizable.State.COOPERATING);
}
Acceleration aSingle =
LmrsUtil.singleAcceleration(context, leader.getDistance(), leader.getSpeed(), desire);
a = Acceleration.min(a, Synchronization.gentleUrgency(aSingle, desire, context.getParameters()));
}
}
return a;
}
@Override
public String name()
{
return "ACTIVE";
}
};
/**
* Determine acceleration for cooperation.
* @param context tactical information such as parameters and car-following model
* @param lat lateral direction for cooperation
* @param lmrsData lmrs data to store COOPERATION synchronization state in, may be {@code null}
* @param ownDesire own lane change desire
* @return acceleration for synchronization
* @throws ParameterException if a parameter is not defined
* @throws OperationalPlanException perception exception
*/
Acceleration cooperate(TacticalContextEgo context, LateralDirectionality lat, LmrsData lmrsData, Desire ownDesire)
throws ParameterException, OperationalPlanException;
}