Small improvements
parent
69fa553495
commit
75385d009b
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@ -24,7 +24,7 @@
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namespace gtsam {
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static double intNoiseVar = 0.0001;
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static double intNoiseVar = 0.0000001;
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static const Matrix3 kIntegrationErrorCovariance = intNoiseVar * I_3x3;
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/// Simple class to test navigation scenarios
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@ -33,16 +33,16 @@ class ScenarioRunner {
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ScenarioRunner(const Scenario& scenario) : scenario_(scenario) {}
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/// Integrate measurements for T seconds into a PIM
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ImuFactor::PreintegratedMeasurements integrate(
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double T, boost::optional<Sampler&> gyroSampler = boost::none,
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boost::optional<Sampler&> accSampler = boost::none) {
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ImuFactor::PreintegratedMeasurements integrate(double T,
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Sampler* gyroSampler = 0,
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Sampler* accSampler = 0) {
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// TODO(frank): allow non-zero
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const imuBias::ConstantBias zeroBias;
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const bool use2ndOrderCoriolis = true;
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const bool use2ndOrderIntegration = true;
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ImuFactor::PreintegratedMeasurements pim(
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zeroBias, scenario_.accCovariance(), scenario_.gyroCovariance(),
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kIntegrationErrorCovariance, use2ndOrderCoriolis);
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kIntegrationErrorCovariance, use2ndOrderIntegration);
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const double dt = scenario_.imuSampleTime();
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const double sqrt_dt = std::sqrt(dt);
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@ -86,14 +86,14 @@ class ScenarioRunner {
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Pose3 prediction = predict(integrate(T)).pose;
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// Create two samplers for acceleration and omega noise
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Sampler gyroSampler(scenario_.gyroNoiseModel(), 29285);
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Sampler gyroSampler(scenario_.gyroNoiseModel(), 10);
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Sampler accSampler(scenario_.accNoiseModel(), 29284);
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// Sample !
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Matrix samples(9, N);
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Vector6 sum = Vector6::Zero();
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for (size_t i = 0; i < N; i++) {
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Pose3 sampled = predict(integrate(T, gyroSampler, accSampler)).pose;
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Pose3 sampled = predict(integrate(T, &gyroSampler, &accSampler)).pose;
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Vector6 xi = sampled.localCoordinates(prediction);
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samples.col(i) = xi;
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sum += xi;
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@ -106,10 +106,10 @@ class ScenarioRunner {
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for (size_t i = 0; i < N; i++) {
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Vector6 xi = samples.col(i);
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xi -= sampleMean;
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Q += xi * (xi.transpose() / (N - 1));
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Q += xi * xi.transpose();
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}
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return Q;
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return Q / (N - 1);
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}
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private:
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@ -27,10 +27,11 @@ static const double degree = M_PI / 180.0;
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/* ************************************************************************* */
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TEST(ScenarioRunner, Forward) {
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const double v = 2; // m/s
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Scenario forward(Vector3::Zero(), Vector3(v, 0, 0), 1e-2, 0.1, 0.00001);
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Scenario forward(Vector3::Zero(), Vector3(v, 0, 0), 1e-2, 0.000001, 1);
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ScenarioRunner runner(forward);
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const double T = 1; // seconds
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ImuFactor::PreintegratedMeasurements pim = runner.integrate(T);
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EXPECT(assert_equal(forward.pose(T), runner.predict(pim).pose, 1e-9));
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@ -41,8 +42,8 @@ TEST(ScenarioRunner, Forward) {
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/* ************************************************************************* */
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TEST(ScenarioRunner, Circle) {
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// Forward velocity 2m/s, angular velocity 6 degree/sec
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const double v = 2, omega = 6 * degree;
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Scenario circle(Vector3(0, 0, omega), Vector3(v, 0, 0));
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const double v = 2, w = 6 * degree;
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Scenario circle(Vector3(0, 0, w), Vector3(v, 0, 0));
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ScenarioRunner runner(circle);
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const double T = 15; // seconds
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@ -60,6 +61,7 @@ TEST(ScenarioRunner, Loop) {
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ScenarioRunner runner(loop);
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const double T = 30; // seconds
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ImuFactor::PreintegratedMeasurements pim = runner.integrate(T);
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EXPECT(assert_equal(loop.pose(T), runner.predict(pim).pose, 0.1));
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}
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