controlAlgorithm.java 18 KB

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  1. package blackstart;
  2. import java.awt.*;
  3. import java.util.ArrayList;
  4. import java.util.LinkedList;
  5. import java.util.List;
  6. import javax.swing.*;
  7. import api.AddOn;
  8. import classes.*;
  9. import ui.controller.Control;
  10. import ui.controller.StorageProductionController;
  11. public class controlAlgorithm implements AddOn {
  12. private boolean cancel = false;
  13. // Gui Part:
  14. private Control control;
  15. private JTextArea textArea;
  16. private JPanel content = new JPanel();
  17. // ProgressBar
  18. private JProgressBar progressBar = new JProgressBar();
  19. private long startTime;
  20. private Thread runThread;
  21. // Blackstart Resistance in Watt
  22. private HolonObject powerplant;
  23. private TextField blackstartEnergyrequierementTextfield;
  24. private TextField blackstartSuccessTimeTextfield;
  25. private TextField powerplantMaxOutputTextfield;
  26. private TextField blackstartStartTimeTextfield;
  27. private TextField simulationDurationTextfield;
  28. private TextField storageStartCharge;
  29. private TextField waitBetweenIterations;
  30. private int blackstartSuccessTime;
  31. private int blackstartStartTime;
  32. private int blackstartRunningCounter;
  33. private float powerplantMaxOutput;
  34. private List<HolonObject> renewableProducers;
  35. private List<HolonObject> consumers;
  36. private StorageProductionController SPC;
  37. public static void main(String[] args) {
  38. JFrame newFrame = new JFrame("exampleWindow");
  39. controlAlgorithm instance = new controlAlgorithm();
  40. newFrame.setContentPane(instance.getPanel());
  41. newFrame.pack();
  42. newFrame.setVisible(true);
  43. newFrame.setDefaultCloseOperation(JFrame.EXIT_ON_CLOSE);
  44. }
  45. public controlAlgorithm() {
  46. content.setLayout(new BorderLayout());
  47. textArea = new JTextArea();
  48. textArea.setEditable(false);
  49. JScrollPane scrollPane = new JScrollPane(textArea);
  50. JSplitPane splitPane = new JSplitPane(JSplitPane.VERTICAL_SPLIT, createOptionPanel(), scrollPane);
  51. splitPane.setResizeWeight(0.0);
  52. content.add(splitPane, BorderLayout.CENTER);
  53. content.setPreferredSize(new Dimension(800, 800));
  54. }
  55. public JPanel createOptionPanel() {
  56. JPanel optionPanel = new JPanel(new BorderLayout());
  57. JScrollPane scrollPane = new JScrollPane(createParameterPanel());
  58. scrollPane.setBorder(BorderFactory.createTitledBorder("Parameter"));
  59. optionPanel.add(scrollPane, BorderLayout.CENTER);
  60. optionPanel.add(createButtonPanel(), BorderLayout.PAGE_END);
  61. return optionPanel;
  62. }
  63. private Component createParameterPanel() {
  64. JPanel parameterPanel = new JPanel(null);
  65. parameterPanel.setPreferredSize(new Dimension(510, 300));
  66. blackstartEnergyrequierementTextfield = new TextField("5000000");
  67. blackstartEnergyrequierementTextfield.setBounds(10, 10, 170, 20);
  68. parameterPanel.add(blackstartEnergyrequierementTextfield);
  69. JLabel blackstartEnergyrequierementLabel = new JLabel("Blackstart Energyrequirement in Watt");
  70. blackstartEnergyrequierementLabel.setBounds(185, 10, 300, 20);
  71. parameterPanel.add(blackstartEnergyrequierementLabel);
  72. blackstartSuccessTimeTextfield = new TextField("30");
  73. blackstartSuccessTimeTextfield.setBounds(10, 35, 170, 20);
  74. parameterPanel.add(blackstartSuccessTimeTextfield);
  75. JLabel blackstartSuccessTimeLabel = new JLabel("Time for successfull blackstart in minutes(iterations)");
  76. blackstartSuccessTimeLabel.setBounds(185, 35, 300, 20);
  77. parameterPanel.add(blackstartSuccessTimeLabel);
  78. blackstartStartTimeTextfield = new TextField("15");
  79. blackstartStartTimeTextfield.setBounds(10, 60, 170, 20);
  80. parameterPanel.add(blackstartStartTimeTextfield);
  81. JLabel blackstartStartTimeLabel = new JLabel("Starttime for the blackstart");
  82. blackstartStartTimeLabel.setBounds(185, 60, 300, 20);
  83. parameterPanel.add(blackstartStartTimeLabel);
  84. simulationDurationTextfield = new TextField("500");
  85. simulationDurationTextfield.setBounds(10, 85, 170, 20);
  86. parameterPanel.add(simulationDurationTextfield);
  87. JLabel simulationDurationLabel = new JLabel("How long should the simulation run?");
  88. simulationDurationLabel.setBounds(185, 85, 300, 20);
  89. parameterPanel.add(simulationDurationLabel);
  90. powerplantMaxOutputTextfield = new TextField("40000000");
  91. powerplantMaxOutputTextfield.setBounds(10, 110, 170, 20);
  92. parameterPanel.add(powerplantMaxOutputTextfield);
  93. JLabel powerplantMaxOutputLabel = new JLabel("Powerplant Output afer Blackstart");
  94. powerplantMaxOutputLabel.setBounds(185, 110, 300, 20);
  95. parameterPanel.add(powerplantMaxOutputLabel);
  96. storageStartCharge = new TextField("10000");
  97. storageStartCharge.setBounds(10, 135, 170, 20);
  98. parameterPanel.add(storageStartCharge);
  99. JLabel storageStartChargeLabel = new JLabel("Storage charge at start");
  100. storageStartChargeLabel.setBounds(185, 135, 300, 20);
  101. parameterPanel.add(storageStartChargeLabel);
  102. waitBetweenIterations = new TextField("0");
  103. waitBetweenIterations.setBounds(10, 205, 170, 20);
  104. parameterPanel.add(waitBetweenIterations);
  105. JLabel waitBetweenIterationsLabel = new JLabel("Wait time between iterations");
  106. waitBetweenIterationsLabel.setBounds(185, 205, 300, 20);
  107. parameterPanel.add(waitBetweenIterationsLabel);
  108. // JButton selectGroupNodeButton = new JButton("Select GroupNode");
  109. // selectGroupNodeButton.setEnabled(false);
  110. // selectGroupNodeButton.setBounds(10, 25, 165, 20);
  111. // selectGroupNodeButton.addActionListener(actionEvent -> selectGroupNode());
  112. // borderPanel.add(selectGroupNodeButton);
  113. // JCheckBox useGroupNodeCheckBox = new JCheckBox();
  114. // useGroupNodeCheckBox.setSelected(false);
  115. // useGroupNodeCheckBox.setBounds(155, 1, 25, 20);
  116. // useGroupNodeCheckBox.addActionListener(actionEvent -> {
  117. // useGroupNode = useGroupNodeCheckBox.isSelected();
  118. // selectGroupNodeButton.setEnabled(useGroupNode);
  119. // });
  120. // borderPanel.add(useGroupNodeCheckBox);
  121. return parameterPanel;
  122. }
  123. public JPanel createButtonPanel() {
  124. JPanel buttonPanel = new JPanel(new FlowLayout(FlowLayout.RIGHT));
  125. JButton cancelButton = new JButton("Cancel Run");
  126. cancelButton.addActionListener(actionEvent -> cancel());
  127. buttonPanel.add(cancelButton);
  128. JButton clearButton = new JButton("Clear Console");
  129. clearButton.addActionListener(actionEvent -> clear());
  130. buttonPanel.add(clearButton);
  131. JButton resetButton = new JButton("Reset");
  132. resetButton.setToolTipText("Resets the State to before the Algorithm has runed.");
  133. resetButton.addActionListener(actionEvent -> reset());
  134. buttonPanel.add(resetButton);
  135. JButton runButton = new JButton("Run");
  136. runButton.addActionListener(actionEvent -> {
  137. Runnable task = this::run;
  138. runThread = new Thread(task);
  139. runThread.start();
  140. });
  141. buttonPanel.add(runButton);
  142. return buttonPanel;
  143. }
  144. private void cancel() {
  145. if (runThread.isAlive()) {
  146. println("");
  147. println("Cancel run.");
  148. cancel = true;
  149. progressBar.setValue(0);
  150. } else {
  151. println("Nothing to cancel.");
  152. }
  153. }
  154. private void run() {
  155. cancel = false;
  156. disableGuiInput(true);
  157. startTimer();
  158. initAlgo();
  159. if (cancel) {
  160. reset();
  161. disableGuiInput(false);
  162. return;
  163. }
  164. printElapsedTime();
  165. disableGuiInput(false);
  166. }
  167. private void reset() {
  168. println("RESET DOES NOTHING platzhalter");
  169. }
  170. private void disableGuiInput(boolean bool) {
  171. control.guiDisable(bool);
  172. }
  173. @Override
  174. public JPanel getPanel() {
  175. return content;
  176. }
  177. @Override
  178. public void setController(Control control) {
  179. this.control = control;
  180. }
  181. private void clear() {
  182. textArea.setText("");
  183. }
  184. private void println(String message) {
  185. textArea.append(message + "\n");
  186. }
  187. private void startTimer() {
  188. startTime = System.currentTimeMillis();
  189. }
  190. private void printElapsedTime() {
  191. long elapsedMilliSeconds = System.currentTimeMillis() - startTime;
  192. println("Execution Time of Algo in Milliseconds:" + elapsedMilliSeconds);
  193. }
  194. ///////////////////////////////////////////////////////////////////////////////////
  195. /**
  196. *
  197. */
  198. private void initAlgo() {
  199. try {
  200. // init
  201. renewableProducers = getRenewableProducers();
  202. consumers = getConsumers();
  203. powerplant = control.getSimManager().getPowerplant();// DANGER DONT GIVE NULL
  204. setPowerPlantBlackstartResistance(-Float.parseFloat(blackstartEnergyrequierementTextfield.getText()));
  205. SPC = new StorageProductionController(getStorageElements(), getEnergyRequiredForPowerplantBlackstart());// DANGER DONT GIVE NULL
  206. if(powerplant == null){
  207. println("No Power Plant in Model");
  208. return;
  209. }
  210. resistanceCalculator resistanceCalculator = new resistanceCalculator(control.getModel());
  211. resistanceCalculator.setDistanceToCalcResistance(powerplant);
  212. blackstartRunningCounter = 0;
  213. deactivateBlackstart();
  214. control.getModel().setCurIteration(0);
  215. // prepare model
  216. /////////
  217. setPowerplantProduction(0);
  218. enableAllConsumers();
  219. SPC.disableStorageDischarging(-1); //disable all storage production
  220. // TODO: prios?
  221. /////////
  222. // Get parameters from textfields
  223. setPowerPlantBlackstartResistance(-Float.parseFloat(blackstartEnergyrequierementTextfield.getText()));
  224. blackstartSuccessTime = Integer.parseInt(blackstartSuccessTimeTextfield.getText());
  225. powerplantMaxOutput = Float.parseFloat(powerplantMaxOutputTextfield.getText());
  226. blackstartStartTime = Integer.parseInt(blackstartStartTimeTextfield.getText());
  227. control.getModel().setIterations(Integer.parseInt(simulationDurationTextfield.getText()));
  228. for (StorageElement se :
  229. getStorageElements()) {
  230. se.setStateOfCharge(Integer.parseInt(storageStartCharge.getText()));
  231. }
  232. updateVisual();
  233. if (blackstartStartTime + blackstartSuccessTime > control.getModel().getIterations() - 1) {
  234. println("No Time for the blackstart, use working numbers");
  235. } else {
  236. blackstartMain(control.getModel().getCurIteration());
  237. }
  238. } catch (NumberFormatException e) {
  239. println("Worng Input, only numbers please");
  240. }
  241. }
  242. /**
  243. *
  244. * @param curIteration
  245. */
  246. private void blackstartMain(int curIteration) {
  247. try {
  248. Thread.sleep(Integer.parseInt(waitBetweenIterations.getText()));
  249. } catch (InterruptedException e) {
  250. e.printStackTrace();
  251. }
  252. control.getModel().setCurIteration(curIteration);
  253. if (control.getSimManager().blackstartRunning()) {
  254. if (!blackstartAlgo()) {
  255. // blackstart for this iteration was not successfull
  256. deactivateBlackstart();
  257. updateVisual();
  258. println("Simulation of blackstart failed in Iteration: " + curIteration);
  259. } else {
  260. // blackstart for this iteration was successfull
  261. blackstartRunningCounter++;
  262. if (blackstartRunningCounter == blackstartSuccessTime) {
  263. // blackstart was successfull for the needed iterations
  264. SPC.disableStorageDischarging(-1);
  265. deactivateBlackstart();
  266. enableAllConsumers();
  267. updateVisual();
  268. println("Simulation of blackstart Successfull in Iteration: " + curIteration);
  269. } else {
  270. // blackstart not finished yet
  271. updateVisual();
  272. blackstartMain(curIteration + 1);
  273. }
  274. }
  275. } else {
  276. // blackstart has not started yet
  277. if (curIteration == blackstartStartTime) {
  278. activateBlackstart();
  279. disableConsumers();
  280. blackstartMain(curIteration);
  281. } else {
  282. updateVisual();
  283. blackstartMain(curIteration + 1);
  284. }
  285. }
  286. }
  287. /**
  288. * TODO: HOLEG UNTERVERSORGUNG CHECKEN
  289. * TODO: prios fuer elemente anschalten
  290. * TODO: elements und amount nachschauen + getEngergyPerElement anschauen
  291. * TODO: batterie status wechesel fuehrt zu unterversorgung in GUI FIX?: in storage if bei charge auskommentieren
  292. * TODO: wie soll ich unter / ueberversorgung handeln vorm blackstart
  293. * TODO: batterie modes wo nicht passiert? obwohl laden / entladen moeglich waere?
  294. * TODO: batterie laden prios? entfernung?
  295. *
  296. * @return true or false depending on whether the blackstart was successful for
  297. * this iteration
  298. */
  299. private boolean blackstartAlgo() {
  300. if (currentRenewableProduction() < getEnergyRequiredForPowerplantBlackstart()) {
  301. // renewable energy production is not sufficient for the blackstart
  302. if (SPC.currentPossibleStorageProduction() >= getEnergyRequiredForPowerplantBlackstart()
  303. - currentRenewableProduction()) {// is there currently enough power available from storage?
  304. SPC.disableStorageDischarging(-1);// emergency fix
  305. SPC.enableStorageDischarging(getEnergyRequiredForPowerplantBlackstart() - currentRenewableProduction());
  306. rampUpPowerplant();
  307. enableConsumers(getPowerplantProduction());
  308. return true;
  309. } else {
  310. // blackstart has failed
  311. SPC.disableStorageDischarging(-1);//TODO:disable all
  312. println("Not enough storage energy available");
  313. return false;
  314. }
  315. } else {
  316. //TODO: disable storage?
  317. // renewable energy production is sufficient for the blackstart
  318. rampUpPowerplant();
  319. enableConsumers(
  320. currentRenewableProduction() - getEnergyRequiredForPowerplantBlackstart() + getPowerplantProduction());
  321. return true;
  322. }
  323. }
  324. //TODO: das ist ja eigentlich doppelt
  325. private ArrayList<StorageElement> getStorageElements() {
  326. ArrayList<StorageElement> storageElements = new ArrayList<>();
  327. for (HolonObject holonObject : control.getModel().getAllHolonObjectsOnCanvas()) {
  328. for (HolonElement ele : holonObject.getElements()) {
  329. if(ele instanceof StorageElement){
  330. storageElements.add((StorageElement) ele);
  331. }
  332. }
  333. }
  334. return storageElements;
  335. }
  336. private void disableConsumers() {
  337. // TODO: disableBatteryLoading? will ich das wirklich?
  338. // SPC.disableStorageProduction();
  339. for (HolonObject consumer : consumers) {
  340. for (HolonElement ele : consumer.getElements()) {
  341. if (ele.isActive() && ele.isConsumer()) {
  342. ele.setActive(false);
  343. }
  344. }
  345. }
  346. }
  347. private void enableConsumers(float energyAvailable) {
  348. println("currenctrenewable: " + currentRenewableProduction());
  349. println("currenctpossiblestorage: " + SPC.currentPossibleStorageProduction());
  350. println("blackstart resi: " + getEnergyRequiredForPowerplantBlackstart());
  351. println("current pp production: " + getPowerplantProduction());
  352. println("energy available for consumers" + energyAvailable);
  353. // Damit wir immer die gleiche ausgangslage haben //TODO: wirklich?
  354. disableConsumers();
  355. // TODO: das ganze lieber mit prirotaeten
  356. for (HolonObject consumer : consumers) {
  357. for (HolonElement ele : consumer.getElements()) {
  358. if (energyAvailable > 0
  359. && energyAvailable - Math.abs(ele.getEnergyPerElement() * ele.getAmount()) >= 0) {//TODO: getenergy ist hier falsch
  360. if (!ele.isActive()) {
  361. ele.setActive(true);
  362. energyAvailable = energyAvailable - Math.abs(ele.getEnergyPerElement() * ele.getAmount());// +
  363. // since
  364. // its
  365. // negative
  366. // System.out.println("Element " + ele.getId() + " was enabled Energy left: "+ energyAvailable);
  367. }
  368. } else {
  369. return;
  370. }
  371. }
  372. }
  373. // if (!SPC.batteriesFull()) {
  374. // // TODO: load unused batteries
  375. // } else {
  376. //
  377. // }
  378. }
  379. private void enableAllConsumers() {
  380. for (HolonObject consumer : consumers) {
  381. for (HolonElement ele : consumer.getElements()) {
  382. if (!ele.isActive() && ele.isConsumer()) {
  383. ele.setActive(true);
  384. }
  385. }//TODO: storage?
  386. }
  387. }
  388. private float currentRenewableProduction() {
  389. float production = 0;
  390. for (HolonObject house : renewableProducers) {
  391. for (HolonElement ele : house.getElements()) {
  392. if (ele.getEleName().equals("Solar Panels")) {// TODO: hier muss noch mehr dazu
  393. production = production + ele.getEnergyAtTimeStep(control.getModel().getCurIteration());
  394. }
  395. }
  396. }
  397. return production;
  398. }
  399. private void rampUpPowerplant() {
  400. for (HolonElement ele : powerplant.getElements()) {
  401. if (ele.getEleName().equals("Power")) {
  402. ele.setEnergyPerElement(ele.getEnergyPerElement() + powerplantMaxOutput / blackstartSuccessTime);
  403. }
  404. }
  405. }
  406. private float getPowerplantProduction() {
  407. float totalProduction = 0;
  408. for (HolonElement ele : powerplant.getElements()) {
  409. if (ele.getEleName().equals("Power")) {
  410. totalProduction = ele.getEnergyPerElement();
  411. }
  412. }
  413. return totalProduction;
  414. }
  415. private void setPowerplantProduction(float power) {
  416. for (HolonElement ele : powerplant.getElements()) {
  417. if (ele.getEleName().equals("Power")) {
  418. ele.setEnergyPerElement(power);
  419. }
  420. }
  421. }
  422. private float getEnergyRequiredForPowerplantBlackstart() {
  423. for (HolonElement ele : powerplant.getElements()) {
  424. if (ele.getEleName().equals("Blackstart")) {
  425. return -ele.getEnergyPerElement();
  426. }
  427. }
  428. return 0;
  429. }
  430. private void setPowerPlantBlackstartResistance(float resistance) {
  431. for (HolonElement ele : powerplant.getElements()) {
  432. if (ele.getEleName().equals("Blackstart")) {
  433. ele.setEnergyPerElement(resistance);
  434. }
  435. }
  436. }
  437. private void activateBlackstart() {
  438. for (HolonElement ele : powerplant.getElements()) {
  439. if (ele.getEleName().equals("Blackstart")) {
  440. ele.setActive(true);
  441. }
  442. }
  443. }
  444. private void deactivateBlackstart() {
  445. for (HolonElement ele : powerplant.getElements()) {
  446. if (ele.getEleName().equals("Blackstart")) {
  447. ele.setActive(false);
  448. }
  449. }
  450. }
  451. private LinkedList<HolonObject> getRenewableProducers() {
  452. LinkedList<HolonObject> list = new LinkedList<>();
  453. for (HolonObject holonObject : control.getModel().getAllHolonObjectsOnCanvas()) {
  454. if (holonObject.getObjName().contentEquals("House")) {// TODO: das reicht so nicht da muss noch gecheckt
  455. // werden ob es renewables gibt
  456. list.add(holonObject);
  457. }
  458. }
  459. return list;
  460. }
  461. private LinkedList<HolonObject> getConsumers() {
  462. LinkedList<HolonObject> list = new LinkedList<>();
  463. for (HolonObject holonObject : control.getModel().getAllHolonObjectsOnCanvas()) {
  464. if (holonObject.getObjName().contentEquals("House")) {// TODO: das reicht so nicht da muss noch gecheckt
  465. // werden ob es consumer gibt
  466. list.add(holonObject);
  467. }
  468. }
  469. return list;
  470. }
  471. /**
  472. * To let the User See the current state without touching the Canvas.
  473. */
  474. private void updateVisual() {
  475. System.out.println("Start updateVisual in Iteration: " + control.getModel().getCurIteration());
  476. control.calculateStateAndVisualForCurrentTimeStep();
  477. control.updateCanvas();
  478. System.out.println("Finish updateVisual in Iteration: " + control.getModel().getCurIteration());
  479. }
  480. }