new energy method: collecting total energy consumption from each interface
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@ -26,7 +26,7 @@
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* $Id: Battery.java,v 1.5 2008/10/28 12:30:48 fros4943 Exp $
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* $Id: Battery.java,v 1.6 2008/10/28 13:28:35 fros4943 Exp $
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*/
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package se.sics.cooja.interfaces;
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@ -44,33 +44,33 @@ import se.sics.cooja.*;
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* <p>
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* This Battery updates energy after each mote tick:
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* the energy consumption of each interface is summed up.
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* In addtion, the energy used by the CPU (depends on mote state) is
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* detracted each tick.
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* In addition, the Battery adds the CPU energy.
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* <p>
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*
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* This observable notifies every tick (!).
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* This observable notifies every tick (relatively time-consuming).
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*
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* When energy left is below 0 the mote is dead.
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* When the energy left is below 0 the mote is dead.
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*
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* @see MoteInterface
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* @see MoteInterface#energyConsumptionPerTick()
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* @see MoteInterface#energyConsumption()
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*
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* @author Fredrik Österlind
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*/
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@ClassDescription("Battery")
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public class Battery extends MoteInterface implements PolledAfterAllTicks {
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private static Logger logger = Logger.getLogger(Battery.class);
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/**
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* Approximate energy consumption of a mote's CPU in active mode (mA). ESB
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* measured energy consumption is 1.49 mA.
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*/
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public final double ENERGY_CONSUMPTION_AWAKE_mA;
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public final double CPU_ENERGY_CONSUMPTION_AWAKE_mA;
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/**
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* Approximate energy consumption of a mote's CPU in low power mode (mA). ESB
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* measured energy consumption is 1.34 mA.
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*/
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public final double ENERGY_CONSUMPTION_LPM_mA;
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public final double CPU_ENERGY_CONSUMPTION_LPM_mA;
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/**
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* Initial energy of battery in milli coulomb (mQ). ESB mote: 3 regular AA
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@ -79,46 +79,39 @@ public class Battery extends MoteInterface implements PolledAfterAllTicks {
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*/
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public final double INITIAL_ENERGY;
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private double energyConsumptionLPMPerTick = -1.0;
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private double energyConsumptionAwakePerTick = -1.0;
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private Mote mote = null;
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private static Logger logger = Logger.getLogger(Battery.class);
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private double myEnergy;
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private double cpuEnergyConsumptionLPMPerMs;
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private double cpuEnergyConsumptionAwakePerMs;
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private boolean hasInfiniteEnergy;
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private double lastEnergyConsumption = 0;
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private double cpuEnergyConsumption = 0;
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private double totalEnergyConsumption = 0;
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/**
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* Creates a new battery connected to given mote.
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*
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* @param mote Mote
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*
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* @see #energyConsumption
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* @see #INITIAL_ENERGY
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* @param mote
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* Mote holding battery
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*/
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public Battery(Mote mote) {
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// Read class configurations of this mote type
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ENERGY_CONSUMPTION_AWAKE_mA = mote.getType().getConfig()
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.getDoubleValue(Battery.class, "CPU_AWAKE_mA");
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ENERGY_CONSUMPTION_LPM_mA = mote.getType().getConfig().getDoubleValue(
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Battery.class, "CPU_LPM_mA");
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INITIAL_ENERGY = mote.getType().getConfig().getDoubleValue(
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Battery.class, "INITIAL_ENERGY_mQ");
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hasInfiniteEnergy = mote.getType().getConfig().getBooleanValue(
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Battery.class, "INFINITE_ENERGY_bool");
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/* Read configuration */
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CPU_ENERGY_CONSUMPTION_AWAKE_mA = mote.getType().getConfig().getDoubleValue(Battery.class, "CPU_AWAKE_mA");
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CPU_ENERGY_CONSUMPTION_LPM_mA = mote.getType().getConfig().getDoubleValue(Battery.class, "CPU_LPM_mA");
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INITIAL_ENERGY = mote.getType().getConfig().getDoubleValue(Battery.class, "INITIAL_ENERGY_mQ");
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hasInfiniteEnergy = mote.getType().getConfig().getBooleanValue(Battery.class, "INFINITE_ENERGY_bool");
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if (energyConsumptionAwakePerTick < 0) {
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energyConsumptionAwakePerTick = ENERGY_CONSUMPTION_AWAKE_mA * 0.001;
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energyConsumptionLPMPerTick = ENERGY_CONSUMPTION_LPM_mA * 0.001;
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}
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cpuEnergyConsumptionAwakePerMs = CPU_ENERGY_CONSUMPTION_AWAKE_mA * 0.001; /* TODO Voltage */
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cpuEnergyConsumptionLPMPerMs = CPU_ENERGY_CONSUMPTION_LPM_mA * 0.001; /* TODO Voltage */
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this.mote = mote;
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myEnergy = INITIAL_ENERGY;
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}
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public void doActionsAfterTick() {
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lastEnergyConsumption = 0;
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// If infinite energy, do nothing
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if (hasInfiniteEnergy) {
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return;
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@ -129,22 +122,24 @@ public class Battery extends MoteInterface implements PolledAfterAllTicks {
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return;
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}
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double totalEnergyConsumption = 0.0;
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totalEnergyConsumption += energyConsumptionLPMPerTick;
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for (MoteInterface intf : mote.getInterfaces().getInterfaces()) {
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totalEnergyConsumption += intf.energyConsumptionPerTick();
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if (mote.getState() == Mote.State.ACTIVE) {
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cpuEnergyConsumption += cpuEnergyConsumptionLPMPerMs;
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} else {
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cpuEnergyConsumption += cpuEnergyConsumptionAwakePerMs;
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}
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decreaseEnergy(totalEnergyConsumption);
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lastEnergyConsumption += totalEnergyConsumption;
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totalEnergyConsumption = cpuEnergyConsumption;
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for (MoteInterface intf : mote.getInterfaces().getInterfaces()) {
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totalEnergyConsumption += intf.energyConsumption();
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}
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// Check if we are out of energy
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if (getCurrentEnergy() <= 0.0) {
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setChanged();
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notifyObservers();
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/* Check if we are out of energy */
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if (getEnergyConsumption() > INITIAL_ENERGY) {
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mote.setState(Mote.State.DEAD);
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}
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setChanged();
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notifyObservers();
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}
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/**
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@ -172,49 +167,52 @@ public class Battery extends MoteInterface implements PolledAfterAllTicks {
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}
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/**
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* @return Current energy left
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* @return Current energy consumption
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*/
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public double getCurrentEnergy() {
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return myEnergy;
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public double getEnergyConsumption() {
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return totalEnergyConsumption;
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}
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private void decreaseEnergy(double consumption) {
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if (!hasInfiniteEnergy) {
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myEnergy -= consumption;
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setChanged();
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notifyObservers();
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}
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/**
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* @return Energy left ratio
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*/
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public double getEnergyLeftRatio() {
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return ((getInitialEnergy() - getEnergyConsumption()) / getInitialEnergy());
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}
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public JPanel getInterfaceVisualizer() {
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// Battery energy left
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JPanel panel = new JPanel();
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panel.setLayout(new BoxLayout(panel, BoxLayout.Y_AXIS));
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final JLabel initialLabel = new JLabel("");
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final JLabel energyLabel = new JLabel("");
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final JLabel energyPercentLabel = new JLabel("");
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final JLabel leftLabel = new JLabel("");
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if (hasInfiniteEnergy()) {
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energyLabel.setText("INFINITE");
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energyPercentLabel.setText("");
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initialLabel.setText("[infinite energy]");
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energyLabel.setText("");
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leftLabel.setText("");
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} else {
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energyLabel.setText("Energy left (mQ) = " + getCurrentEnergy());
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energyPercentLabel.setText("Energy left (%) = "
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+ (getCurrentEnergy() / getInitialEnergy() * 100) + "%");
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initialLabel.setText("Total energy (mQ): " + getInitialEnergy());
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energyLabel.setText("Consumed energy (mQ): " + getEnergyConsumption());
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leftLabel.setText("Energy left (%): " + (getEnergyLeftRatio() * 100));
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}
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panel.add(initialLabel);
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panel.add(energyLabel);
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panel.add(energyPercentLabel);
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panel.add(leftLabel);
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Observer observer;
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this.addObserver(observer = new Observer() {
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public void update(Observable obs, Object obj) {
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if (hasInfiniteEnergy()) {
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energyLabel.setText("INFINITE");
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energyPercentLabel.setText("");
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initialLabel.setText("[infinite energy]");
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energyLabel.setText("");
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leftLabel.setText("");
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} else {
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energyLabel.setText("Energy left (mQ) = " + getCurrentEnergy());
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energyPercentLabel.setText("Energy left (%) = "
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+ (getCurrentEnergy() / getInitialEnergy() * 100) + "%");
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initialLabel.setText("Total energy (mQ): " + getInitialEnergy());
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energyLabel.setText("Consumed energy (mQ): " + getEnergyConsumption());
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leftLabel.setText("Energy left (%): " + (getEnergyLeftRatio() * 100));
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}
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}
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});
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this.deleteObserver(observer);
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}
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public double energyConsumptionPerTick() {
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// The battery itself does not require any power.
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public double energyConsumption() {
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return 0.0;
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}
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public double getLastTotalEnergyConsumption() {
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return lastEnergyConsumption;
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}
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public Collection<Element> getConfigXML() {
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Vector<Element> config = new Vector<Element>();
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Element element;
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