Evaluation.java 5.4 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152
  1. package algorithm.objectiveFunction;
  2. import classes.HolonElement.Priority;
  3. import classes.HolonObject;
  4. import ui.model.DecoratedNetwork;
  5. import ui.model.DecoratedState;
  6. import ui.controller.FlexManager.FlexState;
  7. import ui.controller.FlexManager.FlexWrapper;
  8. import ui.model.DecoratedHolonObject.HolonObjectState;
  9. public class Evaluation {
  10. /**
  11. * Calculate the Fitness(Penelty) Value for a state (alias the calculated Position).
  12. * TODO: Make me better Rolf.
  13. * @param state
  14. * @return
  15. */
  16. public static double getFitnessValueForState(DecoratedState state) {
  17. double fitness = 0.0;
  18. double nw_fitness =0.0;
  19. double object_fitness = 0.0;
  20. double flexFitness = 0.0;
  21. double sigma = 9;
  22. // calculate network_fitness
  23. for(DecoratedNetwork net : state.getNetworkList()) {
  24. synchronized (net.getLockObject()) {
  25. float production = net.getSupplierList().stream().map(supplier -> supplier.getEnergyToSupplyNetwork()).reduce(0.0f, (a, b) -> a + b);
  26. float consumption = net.getConsumerList().stream().map(con -> con.getEnergyNeededFromNetwork()).reduce(0.0f, (a, b) -> a + b);
  27. nw_fitness += Math.abs((production - consumption) / 100); //Energy is now everywhere positive
  28. }
  29. }
  30. // calculate object_fitness
  31. for(DecoratedNetwork net : state.getNetworkList()) {
  32. synchronized (net.getLockObject()) {
  33. object_fitness += net.getConsumerList().stream().map(con -> holonObjectSupplyPenaltyFunction(con.getSupplyBarPercentage()) /*+ inactiveHolonElementPenalty(con.getModel())*/).reduce(0.0, (a, b) -> (a + b));
  34. object_fitness += net.getConsumerList().stream().map(con -> StateToDouble(con.getState())).reduce(0.0, (a, b) -> (a + b));
  35. //object_fitness += net.getPassivNoEnergyList().stream().map(sup -> inactiveHolonElementPenalty(sup.getModel())).reduce(0.0, (a, b) -> (a + b));
  36. //object_fitness += net.getSupplierList().stream().map(sup -> inactiveHolonElementPenalty(sup.getModel())).reduce(0.0, (a, b) -> (a + b));
  37. //object_fitness += net.getConsumerSelfSuppliedList().stream().map(con -> inactiveHolonElementPenalty(con.getModel())).reduce(0.0, (a, b) -> (a + b));
  38. }
  39. }
  40. // calculate flexibility fitness old cost flex
  41. /*for(FlexWrapper flexWrapper :state.getFlexManager().getAllFlexWrapperWithState(FlexState.IN_USE)) {
  42. flexFitness += flexWrapper.getFlex().cost / (double)flexWrapper.getFlex().getDuration();
  43. }*/
  44. for(FlexWrapper flexWrapper :state.getFlexManager().getAllFlexWrapperWithState(FlexState.IN_USE)) {
  45. flexFitness += Math.pow(sigma, (double)priorityToInt(flexWrapper.getFlex().getElement().getPriority())) - 1;
  46. }
  47. fitness = nw_fitness + object_fitness + flexFitness;
  48. return fitness;
  49. }
  50. private static int priorityToInt(Priority priority) {
  51. switch(priority) {
  52. case Essential:
  53. return 3;
  54. case High:
  55. return 2;
  56. case Medium:
  57. return 1;
  58. case Low:
  59. default:
  60. return 0;
  61. }
  62. }
  63. /**
  64. * Untouched:
  65. * Function that returns the fitness depending on the number of elements deactivated in a single holon object
  66. * @param obj Holon Object that contains Holon Elements
  67. * @return fitness value for that object depending on the number of deactivated holon elements
  68. */
  69. private static double inactiveHolonElementPenalty(HolonObject obj) {
  70. float result = 0;
  71. int activeElements = obj.getNumberOfActiveElements();
  72. int maxElements = obj.getElements().size();
  73. //result = (float) Math.pow((maxElements -activeElements),2)*10;
  74. result = (float) Math.pow(5, 4* ( (float) maxElements - (float) activeElements)/ (float) maxElements) - 1;
  75. //System.out.console.println("max: " + maxElements + " active: " + activeElements + " results in penalty: " + result);
  76. return result;
  77. }
  78. /**
  79. * Untouched:
  80. * Calculates a penalty value based on the HOs current supply percentage
  81. * @param supplyPercentage
  82. * @return
  83. */
  84. private static double holonObjectSupplyPenaltyFunction(float supplyPercentage) {
  85. double result = 0;
  86. /*if(supplyPercentage == 1)
  87. return result;
  88. else if(supplyPercentage < 1 && supplyPercentage >= 0.25) // undersupplied inbetween 25% and 100%
  89. result = (float) Math.pow(1/supplyPercentage, 2);
  90. else if (supplyPercentage < 0.25) //undersupplied with less than 25%
  91. result = (float) Math.pow(1/supplyPercentage,2);
  92. else if (supplyPercentage < 1.25) //Oversupplied less than 25%
  93. result = (float) Math.pow(supplyPercentage,3) ;
  94. else result = (float) Math.pow(supplyPercentage,4); //Oversupplied more than 25%
  95. if(Float.isInfinite(result) || Float.isNaN(result))
  96. result = 1000;
  97. */
  98. if(supplyPercentage <= 1.0) {
  99. result = Math.pow(5,(Math.abs((100 - (supplyPercentage*100)))/50 + 2)) - Math.pow(5, 2);
  100. }
  101. else {
  102. result = Math.pow(6,(Math.abs((100 - (supplyPercentage*100)))/50 + 2)) - Math.pow(6, 2);
  103. }
  104. if(result > 1000)System.out.println("supplyPenalty(" + supplyPercentage + ")=" + result);
  105. return result;
  106. }
  107. /**
  108. * If you want to get in touch with a reliable state? Working function not in use currently.
  109. * @param state
  110. * @return
  111. */
  112. private static double StateToDouble(HolonObjectState state) {
  113. switch (state) {
  114. case NOT_SUPPLIED:
  115. return 150.0;
  116. case NO_ENERGY:
  117. return 150.0;
  118. case OVER_SUPPLIED:
  119. return 100.0;
  120. case PARTIALLY_SUPPLIED:
  121. return 100.0;
  122. case PRODUCER:
  123. return 0;
  124. case SUPPLIED:
  125. return 0;
  126. default:
  127. return 0;
  128. }
  129. }
  130. }