Creates a Angular Polar Spline Line Chart using SciChart.js, using either a Cubic spline, or polar interpolation
drawExample.ts
angular.ts
theme.ts
1import {
2 PolarMouseWheelZoomModifier,
3 PolarZoomExtentsModifier,
4 PolarPanModifier,
5 PolarNumericAxis,
6 SciChartPolarSurface,
7 EPolarAxisMode,
8 NumberRange,
9 EAxisAlignment,
10 EPolarLabelMode,
11 PolarLegendModifier,
12 PolarLineRenderableSeries,
13 BezierRenderDataTransform,
14 XyDataSeries,
15 SplineRenderDataTransform,
16 WaveAnimation,
17} from "scichart";
18import { appTheme } from "../../../theme";
19
20export const drawExample = async (rootElement: string | HTMLDivElement) => {
21 const { sciChartSurface, wasmContext } = await SciChartPolarSurface.create(rootElement, {
22 theme: appTheme.SciChartJsTheme,
23 });
24
25 const radialYAxis = new PolarNumericAxis(wasmContext, {
26 polarAxisMode: EPolarAxisMode.Radial,
27 axisAlignment: EAxisAlignment.Right,
28 visibleRange: new NumberRange(0, 6),
29 drawMinorTickLines: false,
30 drawMajorTickLines: false,
31 useNativeText: true,
32 drawMinorGridLines: false,
33 zoomExtentsToInitialRange: true,
34 labelPrecision: 0,
35 innerRadius: 0.1, // donut hole
36 });
37 sciChartSurface.yAxes.add(radialYAxis);
38
39 const polarXAxis = new PolarNumericAxis(wasmContext, {
40 polarAxisMode: EPolarAxisMode.Angular,
41 axisAlignment: EAxisAlignment.Top,
42
43 polarLabelMode: EPolarLabelMode.Parallel,
44
45 autoTicks: false,
46 majorDelta: 1,
47
48 useNativeText: true,
49 flippedCoordinates: true, // go clockwise
50 totalAngle: Math.PI,
51 labelPrecision: 0,
52 });
53 sciChartSurface.xAxes.add(polarXAxis);
54
55 const ANIMATION_DURATION = 500;
56 const xValues = [0, 1, 2, 3, 4, 5, 6, 7, 8];
57 const yValues = [3, 4, 2, 4, 5, 5, 3, 2, 4];
58
59 // 1. regular polar line
60 const regularPolarLine = new PolarLineRenderableSeries(wasmContext, {
61 dataSeries: new XyDataSeries(wasmContext, {
62 xValues,
63 yValues,
64 dataSeriesName: "Original Data",
65 }),
66 stroke: "white",
67 strokeThickness: 3,
68 });
69
70 // 2. cubic polar line
71 const cubicPolarLine = new PolarLineRenderableSeries(wasmContext, {
72 dataSeries: new XyDataSeries(wasmContext, {
73 xValues,
74 yValues,
75 dataSeriesName: "Cubic",
76 }),
77 stroke: appTheme.VividOrange,
78 strokeThickness: 5,
79 animation: new WaveAnimation({ duration: ANIMATION_DURATION, delay: ANIMATION_DURATION }),
80 });
81 // Add cubic bezier transform
82 const cubicTransform = new SplineRenderDataTransform(cubicPolarLine, wasmContext, [
83 cubicPolarLine.drawingProviders[0],
84 ]);
85 cubicTransform.interpolationPoints = 30;
86 cubicPolarLine.renderDataTransform = cubicTransform;
87
88 // 3. interpolated polar line
89 const interpolatedPolarLine = new PolarLineRenderableSeries(wasmContext, {
90 dataSeries: new XyDataSeries(wasmContext, {
91 xValues,
92 yValues,
93 dataSeriesName: "Interpolated",
94 }),
95 interpolateLine: true, //
96 stroke: appTheme.VividPurple,
97 strokeThickness: 5,
98 animation: new WaveAnimation({ duration: ANIMATION_DURATION, delay: 2 * ANIMATION_DURATION }),
99 });
100
101 sciChartSurface.renderableSeries.add(regularPolarLine, cubicPolarLine, interpolatedPolarLine);
102
103 sciChartSurface.chartModifiers.add(
104 new PolarPanModifier(),
105 new PolarZoomExtentsModifier(),
106 new PolarMouseWheelZoomModifier(),
107 new PolarLegendModifier({
108 showCheckboxes: true,
109 })
110 );
111
112 return { sciChartSurface, wasmContext };
113};
114This Angular standalone component integrates SciChart.js to render a polar spline line chart, demonstrating original, cubic-spline, and interpolated PolarLineRenderableSeries.
Using ScichartAngularComponent, the drawExample function initializes SciChartPolarSurface with theming. Two PolarNumericAxis instances set up radial and angular axes. Three PolarLineRenderableSeries employ XyDataSeries for data binding. Smoothing transforms:
SplineRenderDataTransform for cubic interpolation (API Docs)Animations use WaveAnimation with delays for sequential drawing.
Interactive modifiers (PolarPanModifier, PolarMouseWheelZoomModifier, PolarZoomExtentsModifier) support panning and zooming within Angular. A PolarLegendModifier provides series visibility toggling.
Implement async chart creation in ngOnInit, and provide a destructor to call sciChartSurface.delete() on component destroy.

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