TopologieObjectiveFunction.java 11 KB

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  1. package algorithm.objectiveFunction;
  2. import ui.model.DecoratedHolonObject;
  3. import ui.model.DecoratedNetwork;
  4. import ui.model.DecoratedState;
  5. import ui.model.DecoratedSwitch;
  6. import java.util.HashSet;
  7. import java.util.Locale;
  8. import algorithm.objectiveFunction.GraphMetrics.Graph;
  9. import api.TopologieAlgorithmFramework.IndexCable;
  10. import classes.FloatLog;
  11. public class TopologieObjectiveFunction {
  12. //Parameters
  13. //weight for f_g(H)
  14. static double w_eb = 0.2, w_max = 0.5, w_holon= 0.1, w_selection = .1, w_grid = 0.1;
  15. //--> f_eb parameter
  16. /**
  17. * Maximum Energie Difference(kappa)
  18. */
  19. static double k_eb = 5000.f;
  20. /**
  21. * Maximum when all on Energie Difference(kappa)
  22. */
  23. static double k_max = 10.f;
  24. static double lambda_max = 10.;
  25. //--> f_holon parameter
  26. /**
  27. * maximum penalty from holon element distribution
  28. */
  29. static double k_holon= 4000;
  30. //--> f_selection paramaeter;
  31. /**
  32. * average Maximum Cost for selction(kappa) of switch and elements.
  33. */
  34. static double k_selection = 200000;
  35. static double cost_switch = 3000;
  36. private static double cost_of_cable_per_meter = 6;
  37. //--> f_grid parameter
  38. /**
  39. * The avergae shortest path maximum length -> kappa for the squash function
  40. */
  41. static double k_avg_shortest_path = 1600;
  42. //Disjpijoint path cant have zero as output it starts with the value 1
  43. static double centerValue_disjoint_path = 1.0;
  44. static double k_disjoint_path = 2.4;
  45. static double lambda_avg_shortest_path = 10;
  46. static double lambda_disjoint_path = 10;
  47. static double k_grid = lambda_avg_shortest_path;// + lambda_disjoint_path;
  48. //pre-calculated parameters for partial function terms:
  49. /**
  50. * Pre calculated for the squash function
  51. * <br>
  52. * {@link TopologieObjectiveFunction#squash}
  53. */
  54. static double squash_subtract = 1.0f / (1.f + (float) Math.exp(5.0));
  55. static double range_for_k_avg_shortest_path = range(k_avg_shortest_path);
  56. static double range_for_k_disjoint_path = range(k_disjoint_path - centerValue_disjoint_path);
  57. public static FloatLog log = new FloatLog();
  58. static boolean useLog = true;
  59. static {
  60. //init
  61. checkParameter();
  62. }
  63. /**
  64. * Check parameter Setting and print error when wrong values are put in.
  65. * Here should all invariants be placed to be checked on initialization.
  66. */
  67. private static void checkParameter() {
  68. if(!(Math.abs(w_eb + w_holon + w_selection + w_grid + w_max - 1) < 0.001)) {
  69. System.err.println("ParameterError in ObjectiveFunction: Sum of all weights should be 1");
  70. }
  71. }
  72. /**
  73. * ObjectifeFunction by Carlos.
  74. * Function computes f_g:
  75. * f_g = w1 * squash(f_eb, k1) + w2 * squash(f_state, k2) + w3 * squash(f_pro, k3) + w4 * squash(f_perf, k4) + w5 * squash(f_holon, k5)
  76. *
  77. *
  78. * squash is the squashing function {@link TopologieObjectiveFunction#squash}
  79. *
  80. *
  81. * @param state
  82. * @param moreInformation TODO
  83. * @return f_g value between 0 and 100
  84. */
  85. static public float getFitnessValueForState(DecoratedState state, int amountOfAddedSwitch, double addedCableMeters, boolean moreInformation) {
  86. //Calculate f_eb the penalty for unbalenced energy in the network
  87. double f_eb = 0;
  88. for(DecoratedNetwork net : state.getNetworkList()) {
  89. //abs
  90. f_eb += Math.abs(net.getTotalConsumption() - net.getTotalProduction());
  91. }
  92. //Average?
  93. f_eb /= state.getNetworkList().size();
  94. double f_maximum = 0;
  95. for(DecoratedNetwork net : state.getNetworkList()) {
  96. double prod = net.getTotalProduction();
  97. double con = net.getTotalConsumption();
  98. if(prod == 0 || con == 0) {
  99. f_maximum += lambda_max;
  100. }else {
  101. f_maximum += lambda_max * (Math.abs(prod - con)/Math.max(prod, con));
  102. }
  103. }
  104. //Average?
  105. f_maximum /= state.getNetworkList().size();
  106. //calculate f_holon
  107. double f_holon = 0;
  108. for(DecoratedNetwork net : state.getNetworkList()) {
  109. double f_elements_deviation_production = net.getDeviationInProductionInNetworkForHolonObjects();
  110. double f_elements_deviation_consumption = net.getDeviationInConsumptionInNetworkForHolonObjects();
  111. double f_element = f_elements_deviation_production+f_elements_deviation_consumption;
  112. f_holon += f_element;
  113. }
  114. f_holon /= state.getNetworkList().size();
  115. //calculating f_selection
  116. double f_selection = 0;
  117. double cost = 0;
  118. for(DecoratedNetwork net : state.getNetworkList()) {
  119. for(DecoratedHolonObject dHobject : net.getConsumerList()) {
  120. if(dHobject.getModel().getName().contains("Wildcard")){
  121. if(dHobject.getModel().getName().length() > 9) {
  122. String costString = dHobject.getModel().getName().substring(9);
  123. cost += Double.parseDouble(costString);
  124. }
  125. }
  126. }
  127. for(DecoratedHolonObject dHobject : net.getConsumerSelfSuppliedList()) {
  128. if(dHobject.getModel().getName().contains("Wildcard")){
  129. if(dHobject.getModel().getName().length() > 9) {
  130. String costString = dHobject.getModel().getName().substring(9);
  131. cost += Double.parseDouble(costString);
  132. }
  133. }
  134. }
  135. for(DecoratedHolonObject dHobject : net.getSupplierList()) {
  136. if(dHobject.getModel().getName().contains("Wildcard")){
  137. if(dHobject.getModel().getName().length() > 9) {
  138. String costString = dHobject.getModel().getName().substring(9);
  139. cost += Double.parseDouble(costString);
  140. }
  141. }
  142. }
  143. }
  144. f_selection += cost;
  145. f_selection += cost_switch * amountOfAddedSwitch;
  146. f_selection += cost_of_cable_per_meter * addedCableMeters;
  147. //if(moreInformation)System.out.println("CostForWildcards:" + cost + ", CostSwitches(#" + amountOfAddedSwitch +"):" + cost_switch * amountOfAddedSwitch + ", CostCables(" +addedCableMeters+ "m):" + cost_of_cable_per_meter * addedCableMeters);
  148. //calculating f_grid
  149. double f_grid = 0;
  150. //each network is a holon
  151. for(DecoratedNetwork net: state.getNetworkList()) {
  152. Graph G = GraphMetrics.convertDecoratedNetworkToGraph(net);
  153. //We have to penalize single Networks;
  154. if(G.V.length <= 1 || G.S.length <= 1) {
  155. f_grid += lambda_avg_shortest_path;// + lambda_disjoint_path;
  156. continue;
  157. }
  158. double avgShortestPath = GraphMetrics.averageShortestDistance(G);
  159. //double disjpointPaths = GraphMetrics.averageEdgeDisjointPathProblem(G);
  160. f_grid += avgShortestPathPenalty(avgShortestPath);// + disjoinPathPenalty(disjpointPaths);
  161. }
  162. //take average to encourage splitting
  163. f_grid /= state.getNetworkList().size();
  164. if(moreInformation) {
  165. printWeightedValues(f_eb, f_maximum, f_holon, f_selection, f_grid);
  166. if(useLog) {
  167. System.out.println("Log");
  168. System.out.println(log);
  169. }
  170. }
  171. //printUnsquashedValues(f_eb, f_maximum, f_holon, f_selection, f_grid);
  172. if(useLog) {
  173. log.addSample("Unsquashed f_eb", (float)f_eb);
  174. log.addSample("Unsquashed f_maximum", (float)f_maximum);
  175. log.addSample("Unsquashed f_holon", (float)f_holon);
  176. log.addSample("Unsquashed f_selection", (float)f_selection);
  177. log.addSample("Unsquashed f_grid", (float)f_grid);
  178. }
  179. return (float) (w_eb * squash(f_eb, k_eb)
  180. + w_max * squash(f_maximum, k_max)
  181. + w_holon * squash(f_holon, k_holon)
  182. + w_selection * squash(f_selection, k_selection)
  183. + w_grid * squash(f_grid, k_grid));
  184. }
  185. private static String doubleToString(double value) {
  186. return String.format (Locale.US, "%.2f", value);
  187. }
  188. private static double disjoinPathPenalty(double value) {
  189. return -(2.0 * lambda_disjoint_path) / (1 + Math.exp(- (value - centerValue_disjoint_path)/ range_for_k_disjoint_path)) + (2.0 * lambda_disjoint_path);
  190. }
  191. private static double avgShortestPathPenalty(double value) {
  192. return (2.0 * lambda_avg_shortest_path) / (1 + Math.exp(- value/ range_for_k_avg_shortest_path)) - lambda_avg_shortest_path;
  193. }
  194. /**
  195. * Attention Math.log calcultae ln not log
  196. * @param kappa
  197. * @return
  198. */
  199. private static double range(double kappa) {
  200. return - kappa / Math.log(Math.pow(2.0, 0.05) - 1.0 );
  201. }
  202. /**
  203. * The squashing function in paper
  204. * @param x the input
  205. * @param kappa the corresponding kappa
  206. * @return
  207. */
  208. static public double squash(double x, double kappa) {
  209. return 100.f/(1.0f + Math.exp(-(10.f * (x - kappa/2.f))/ kappa)) - squash_subtract;
  210. }
  211. /**
  212. * f_sup in paper
  213. * @param supply from 0 to 1
  214. * @return
  215. */
  216. static public double supplyPenalty(double supply) {
  217. double supplyPercentage = 100 * supply;
  218. return (supplyPercentage < 100) ? -0.5 * supplyPercentage + 50: supplyPercentage - 100;
  219. }
  220. static void printWeightedValues(double f_eb, double f_maximum, double f_holon, double f_selection, double f_grid){
  221. System.out.println("===================================================================");
  222. System.out.println(" f_eb: " + f_eb + ", k_eb: " + k_eb + ", w_eb: " + w_eb);
  223. System.out.println(" squash(f_eb, k_eb): " + doubleToString(squash(f_eb, k_eb)));
  224. System.out.println(" w_eb * squash(f_eb, k_eb): " + doubleToString(w_eb * squash(f_eb, k_eb)));
  225. System.out.println("===================================================================");
  226. System.out.println(" f_maximum: " + f_maximum + ", k_max: " + k_max + ", w_max: " + w_max);
  227. System.out.println(" squash(f_maximum, k_max): " + doubleToString(squash(f_maximum, k_max)));
  228. System.out.println(" w_max * squash(f_maximum, k_max): " + doubleToString(w_max * squash(f_maximum, k_max)));
  229. System.out.println("===================================================================");
  230. System.out.println(" f_selection: " + f_selection + ", k_selection: " + k_selection + ", w_selection: " + w_selection);
  231. System.out.println(" squash(f_selection, k_selection): " + doubleToString(squash(f_selection, k_selection)));
  232. System.out.println(" w_selection * squash(f_selection, k_selection): " + doubleToString(w_selection * squash(f_selection, k_selection)));
  233. System.out.println("===================================================================");
  234. System.out.println(" f_holon: " + f_holon + ", k_holon: " + k_holon + ", w_holon: " + w_holon);
  235. System.out.println(" squash(f_holon, k_holon): " + doubleToString(squash(f_holon, k_holon)));
  236. System.out.println(" w_holon * squash(f_holon, k_holon): " + doubleToString(w_holon * squash(f_holon, k_holon)));
  237. System.out.println("===================================================================");
  238. System.out.println(" f_grid: " + f_grid + ", k_grid: " + k_grid + ", w_grid: " + w_grid);
  239. System.out.println(" squash(f_grid, k_grid): " + doubleToString(squash(f_grid, k_grid)));
  240. System.out.println(" w_grid * squash(f_grid, k_grid): " + doubleToString(w_grid * squash(f_grid, k_grid)));
  241. System.out.println("===================================================================");
  242. System.out.println();
  243. System.out.println();
  244. }
  245. static void printUnsquashedValues(double f_eb, double f_maximum, double f_holon, double f_selection, double f_grid){
  246. System.out.print(" f_eb(" + f_eb + ") ");
  247. System.out.print(" f_maximum(" + f_maximum + ") ");
  248. System.out.print(" f_holon(" + f_holon + ") ");
  249. System.out.print(" f_selection(" + f_selection + ") ");
  250. System.out.println(" f_grid(" + f_grid + ") ");
  251. }
  252. }