blob: 43462b8f7f04a55e5e3797fc37ffdf8ffbfe84eb [file] [log] [blame]
James Kuszmaul3431d622019-02-17 17:07:44 -08001#ifndef FRC971_CONTROL_LOOPS_DRIVETRAIN_FIELD_ESTIMATOR_H_
2#define FRC971_CONTROL_LOOPS_DRIVETRAIN_FIELD_ESTIMATOR_H_
3
Alex Perrycb7da4b2019-08-28 19:35:56 -07004#include "aos/events/event_loop.h"
James Kuszmaul3431d622019-02-17 17:07:44 -08005#include "frc971/control_loops/drivetrain/drivetrain_config.h"
James Kuszmaul3c5b4d32020-02-11 17:22:14 -08006#include "frc971/control_loops/drivetrain/drivetrain_status_generated.h"
James Kuszmaul3431d622019-02-17 17:07:44 -08007#include "frc971/control_loops/drivetrain/hybrid_ekf.h"
James Kuszmaul5bc6fc92019-03-01 21:50:06 -08008#include "frc971/control_loops/pose.h"
James Kuszmaul3431d622019-02-17 17:07:44 -08009
10namespace frc971 {
11namespace control_loops {
12namespace drivetrain {
13
James Kuszmaul5bc6fc92019-03-01 21:50:06 -080014// An interface for target selection. This provides an object that will take in
15// state updates and then determine what poes we should be driving to.
16class TargetSelectorInterface {
17 public:
18 // Take the state as [x, y, theta, left_vel, right_vel]
19 // If unable to determine what target to go for, returns false. If a viable
20 // target is selected, then returns true and sets target_pose.
James Kuszmaulc4bd1612019-03-10 11:35:06 -070021 // command_speed is the goal speed of the current drivetrain, generally
22 // generated from the throttle and meant to signify driver intent.
James Kuszmaul5bc6fc92019-03-01 21:50:06 -080023 // TODO(james): Some implementations may also want a drivetrain goal so that
24 // driver intent can be divined more directly.
James Kuszmaulc4bd1612019-03-10 11:35:06 -070025 virtual bool UpdateSelection(const ::Eigen::Matrix<double, 5, 1> &state,
26 double command_speed) = 0;
James Kuszmaul5bc6fc92019-03-01 21:50:06 -080027 // Gets the current target pose. Should only be called if UpdateSelection has
28 // returned true.
29 virtual TypedPose<double> TargetPose() const = 0;
James Kuszmaule093f512019-03-20 06:14:05 -070030 // The "radius" of the target--for y2019, we wanted to drive in so that a disc
31 // with radius r would hit the plane of the target at an offset of exactly r
32 // from the TargetPose--this is distinct from wanting the center of the
33 // robot to project straight onto the center of the target.
34 virtual double TargetRadius() const = 0;
James Kuszmaul5bc6fc92019-03-01 21:50:06 -080035};
36
James Kuszmaul3431d622019-02-17 17:07:44 -080037// Defines an interface for classes that provide field-global localization.
38class LocalizerInterface {
James Kuszmaul5398fae2020-02-17 16:44:03 -080039 public:
James Kuszmaul2db5d882020-02-16 16:49:26 -080040 typedef HybridEkf<double> Ekf;
41 typedef typename Ekf::StateIdx StateIdx;
James Kuszmaul5398fae2020-02-17 16:44:03 -080042
James Kuszmaul3431d622019-02-17 17:07:44 -080043 // Perform a single step of the filter, using the information that is
44 // available on every drivetrain iteration.
45 // The user should pass in the U that the real system experienced from the
46 // previous timestep until now; internally, any filters will first perform a
47 // prediction step to get the estimate at time now, and then will apply
48 // corrections based on the encoder/gyro/accelerometer values from time now.
49 // TODO(james): Consider letting implementations subscribe to the sensor
50 // values themselves, and then only passing in U. This requires more
51 // coordination on timing, however.
52 virtual void Update(const ::Eigen::Matrix<double, 2, 1> &U,
53 ::aos::monotonic_clock::time_point now,
54 double left_encoder, double right_encoder,
James Kuszmaul3c5b4d32020-02-11 17:22:14 -080055 double gyro_rate, const Eigen::Vector3d &accel) = 0;
James Kuszmaulef428a02019-03-02 22:19:41 -080056 // Reset the absolute position of the estimator.
James Kuszmaul074429e2019-03-23 16:01:49 -070057 virtual void ResetPosition(::aos::monotonic_clock::time_point t, double x,
James Kuszmaul518640d2019-04-13 15:50:50 -070058 double y, double theta, double theta_uncertainty,
59 bool reset_theta) = 0;
James Kuszmaul3c5b4d32020-02-11 17:22:14 -080060 flatbuffers::Offset<LocalizerState> PopulateStatus(
61 flatbuffers::FlatBufferBuilder *fbb) {
62 LocalizerState::Builder builder(*fbb);
63 builder.add_x(x());
64 builder.add_y(y());
65 builder.add_theta(theta());
66 builder.add_left_velocity(left_velocity());
67 builder.add_right_velocity(right_velocity());
68 builder.add_left_encoder(left_encoder());
69 builder.add_right_encoder(right_encoder());
70 builder.add_left_voltage_error(left_voltage_error());
71 builder.add_right_voltage_error(right_voltage_error());
72 builder.add_angular_error(angular_error());
73 builder.add_longitudinal_velocity_offset(longitudinal_velocity_offset());
74 builder.add_lateral_velocity(lateral_velocity());
75 return builder.Finish();
76 }
James Kuszmaul2db5d882020-02-16 16:49:26 -080077 virtual Ekf::State Xhat() const = 0;
James Kuszmaul3431d622019-02-17 17:07:44 -080078 // There are several subtly different norms floating around for state
James Kuszmaul3c5b4d32020-02-11 17:22:14 -080079 // matrices. In order to avoid that mess, we just provide direct accessors for
James Kuszmaul3431d622019-02-17 17:07:44 -080080 // the values that most people care about.
James Kuszmaul2db5d882020-02-16 16:49:26 -080081 double x() const { return Xhat()(StateIdx::kX); }
82 double y() const { return Xhat()(StateIdx::kY); }
83 double theta() const { return Xhat()(StateIdx::kTheta); }
84 double left_velocity() const { return Xhat()(StateIdx::kLeftVelocity); }
85 double right_velocity() const { return Xhat()(StateIdx::kRightVelocity); }
86 double left_encoder() const { return Xhat()(StateIdx::kLeftEncoder); }
87 double right_encoder() const { return Xhat()(StateIdx::kRightEncoder); }
88 double left_voltage_error() const {
89 return Xhat()(StateIdx::kLeftVoltageError);
90 }
91 double right_voltage_error() const {
92 return Xhat()(StateIdx::kRightVoltageError);
93 }
94 double angular_error() const { return Xhat()(StateIdx::kAngularError); }
95 double longitudinal_velocity_offset() const {
96 return Xhat()(StateIdx::kLongitudinalVelocityOffset);
97 }
98 double lateral_velocity() const { return Xhat()(StateIdx::kLateralVelocity); }
99
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800100 virtual TargetSelectorInterface *target_selector() = 0;
101};
102
103// A target selector, primarily for testing purposes, that just lets a user
104// manually set the target selector state.
105class TrivialTargetSelector : public TargetSelectorInterface {
106 public:
James Kuszmaulc4bd1612019-03-10 11:35:06 -0700107 bool UpdateSelection(const ::Eigen::Matrix<double, 5, 1> &, double) override {
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800108 return has_target_;
109 }
110 TypedPose<double> TargetPose() const override { return pose_; }
James Kuszmaule093f512019-03-20 06:14:05 -0700111 double TargetRadius() const override { return target_radius_; }
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800112
113 void set_pose(const TypedPose<double> &pose) { pose_ = pose; }
James Kuszmaule093f512019-03-20 06:14:05 -0700114 void set_target_radius(double radius) { target_radius_ = radius; }
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800115 void set_has_target(bool has_target) { has_target_ = has_target; }
116 bool has_target() const { return has_target_; }
117
118 private:
119 bool has_target_ = true;
120 TypedPose<double> pose_;
James Kuszmaule093f512019-03-20 06:14:05 -0700121 double target_radius_ = 0.0;
James Kuszmaul3431d622019-02-17 17:07:44 -0800122};
123
124// Uses the generic HybridEkf implementation to provide a basic field estimator.
125// This provides no method for using cameras or the such to get global
126// measurements and just assumes that you can dead-reckon perfectly.
127class DeadReckonEkf : public LocalizerInterface {
James Kuszmaul3431d622019-02-17 17:07:44 -0800128 public:
Austin Schuh9fe68f72019-08-10 19:32:03 -0700129 DeadReckonEkf(::aos::EventLoop *event_loop,
130 const DrivetrainConfig<double> &dt_config)
131 : ekf_(dt_config) {
132 event_loop->OnRun([this, event_loop]() {
133 ekf_.ResetInitialState(event_loop->monotonic_now(), Ekf::State::Zero(),
134 ekf_.P());
135 });
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800136 target_selector_.set_has_target(false);
James Kuszmaul3431d622019-02-17 17:07:44 -0800137 }
138
139 void Update(const ::Eigen::Matrix<double, 2, 1> &U,
Austin Schuh9fe68f72019-08-10 19:32:03 -0700140 ::aos::monotonic_clock::time_point now, double left_encoder,
141 double right_encoder, double gyro_rate,
James Kuszmaul3c5b4d32020-02-11 17:22:14 -0800142 const Eigen::Vector3d &accel) override {
143 ekf_.UpdateEncodersAndGyro(left_encoder, right_encoder, gyro_rate, U, accel,
144 now);
James Kuszmaul3431d622019-02-17 17:07:44 -0800145 }
146
James Kuszmaul074429e2019-03-23 16:01:49 -0700147 void ResetPosition(::aos::monotonic_clock::time_point t, double x, double y,
James Kuszmaul518640d2019-04-13 15:50:50 -0700148 double theta, double /*theta_override*/,
149 bool /*reset_theta*/) override {
James Kuszmaulfedc4612019-03-10 11:24:51 -0700150 const double left_encoder = ekf_.X_hat(StateIdx::kLeftEncoder);
151 const double right_encoder = ekf_.X_hat(StateIdx::kRightEncoder);
James Kuszmaul3c5b4d32020-02-11 17:22:14 -0800152 ekf_.ResetInitialState(t,
153 (Ekf::State() << x, y, theta, left_encoder, 0,
154 right_encoder, 0, 0, 0, 0, 0, 0)
155 .finished(),
James Kuszmaul074429e2019-03-23 16:01:49 -0700156 ekf_.P());
James Kuszmaul2db5d882020-02-16 16:49:26 -0800157 }
James Kuszmaulef428a02019-03-02 22:19:41 -0800158
James Kuszmaul2db5d882020-02-16 16:49:26 -0800159 Ekf::State Xhat() const override { return ekf_.X_hat(); }
James Kuszmaul3431d622019-02-17 17:07:44 -0800160
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800161 TrivialTargetSelector *target_selector() override {
162 return &target_selector_;
163 }
164
James Kuszmaul3431d622019-02-17 17:07:44 -0800165 private:
166 Ekf ekf_;
James Kuszmaul5bc6fc92019-03-01 21:50:06 -0800167 TrivialTargetSelector target_selector_;
James Kuszmaul3431d622019-02-17 17:07:44 -0800168};
169
170} // namespace drivetrain
171} // namespace control_loops
172} // namespace frc971
173
174#endif // FRC971_CONTROL_LOOPS_DRIVETRAIN_FIELD_ESTIMATOR_H_