docs: explain full-direction EM observation
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# EM trajectory observation MovementTest
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`TrajectoryObservationMovementTest` is an observe-only host for the real MDCS localization and chassis-speed read
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interfaces. It bootstraps the coarse path and Local G2 reference once, repeatedly plans EM trajectories, samples the
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latest published trajectory, and draws the world, L-S, and T-S/T-V layers. It does not drive, steer, brake, change gear,
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or invoke a geometric vehicle controller.
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interfaces. It bootstraps the coarse path and Local G2 reference once, requests one frozen full-direction-segment EM
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plan per active direction segment by default, samples the latest published trajectory, and draws the world, LS, and ST
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layers. It does not drive, steer, brake, change gear, or invoke a geometric vehicle controller.
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Every runtime status contains `OBSERVE_ONLY: no chassis command is sent.` Treat the displayed control command as a
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diagnostic prediction only. Goal and rolling-safety-stop commands are logged, never applied to hardware. At the end of a
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gear-switch trajectory, the observer remains on direction segment `0` and waits for real direction confirmation; it does
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not create or dispatch a direction-change action.
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gear-switch trajectory, the observer remains on the current direction segment and waits for real direction confirmation;
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it does not create or dispatch a direction-change action.
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## FullDirectionSegment observation (default)
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`UseFullDirectionSegmentPlanning=true` maps to `EmPlanningScope.FullDirectionSegment`. MovementTest performs one frozen
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optimization for the complete remaining active direction segment, then republishes that trajectory with fresh observation
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state until the real direction boundary is confirmed and the next segment becomes active. `s_end` is the actual Local G2
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`PathS` at the active segment boundary; `T_end` is derived from the feasible acceleration, cruise, jerk-limited stopping,
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and zero-speed hold behavior instead of being forced by a legacy time horizon.
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`DistanceHorizonMeters` and `TimeHorizonSeconds` are rolling-compatible fields and do not truncate full mode. Forward
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desired/hard maximum speed is `1.0 m/s`; reverse desired/hard maximum speed is `0.5 m/s`. A successful real boundary
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requires a terminal stop plus world-position error no greater than `0.03 m` and normalized yaw error no greater than
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`5 deg` (`5 * PI / 180 rad`).
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## Rolling trajectory observation
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@@ -18,39 +31,44 @@ single S-T output duration. Only a real Goal or gear-switch boundary may publish
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## Configuration
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| Field | Unit | Default | Meaning |
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| Field | Unit | MovementTest UI default | Meaning |
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| --- | --- | ---: | --- |
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| `GoalXmm` | world mm | `NaN` | Goal X. If X or Y is not finite, the host prompts for X, Y, and yaw. |
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| `GoalYmm` | world mm | `NaN` | Goal Y. |
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| `GoalYawDeg` | world deg | `0` | Goal heading. |
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| `MapPaddingMeters` | m | `2.0` | Padding added on all sides of the start/goal bounds. |
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| `MapResolutionMm` | mm | `50` | Local occupancy-grid resolution. |
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| `ReplanPeriodSeconds` | s | `0.20` | Minimum interval between EM planning cycles. |
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| `UseFullDirectionSegmentPlanning` | bool | `true` | Selects `FullDirectionSegment`; set `false` for legacy `RollingHorizon`. |
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| `ReplanPeriodSeconds` | s | `0.20` | Minimum interval between EM planning cycles in rolling scope. |
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| `ObserverPeriodSeconds` | s | `0.05` | Live-state sampling and redraw interval. |
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| `SolverTimeoutSeconds` | s | `5.0` | EM solver timeout frozen for the session. |
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| `MaximumOsqpIterations` | iterations | `100000` | OSQP iteration limit frozen for the session. |
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| `TimeHorizonSeconds` | s | `2.0` | Single ST trajectory horizon, not the observer period. |
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| `TimeHorizonSeconds` | s | `20.0` | Rolling-only ST trajectory horizon, not the observer period; full mode derives `T_end` instead. |
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| `OutputTimeStepSeconds` | s | `0.10` | Published trajectory timestamp spacing. |
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| `VehicleLengthMeters` | m | `0.80` | Vehicle envelope length supplied to coarse, smoothing, and EM planning. |
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| `VehicleWidthMeters` | m | `0.60` | Vehicle envelope width supplied to planning. |
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| `SafetyMarginMeters` | m | `0.05` | Additional planning clearance outside the vehicle envelope. |
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| `MaximumCurvaturePerMeter` | 1/m | `1 / 1.20` | Maximum allowed vehicle curvature (about `0.8333 1/m`). |
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| `EnableWebVisualization` | bool | `false` | Enables the local web dashboard session. |
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| `EnableWebVisualization` | bool | `true` | Enables the primary local web dashboard session. |
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| `AutoOpenWebVisualization` | bool | `true` | Opens the tokenized local dashboard URI when web output is enabled. |
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| `WebVisualizationPort` | port | `0` | `0` selects an ephemeral port; otherwise use `1024` through `65535`. |
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| `WebRefreshRateHz` | Hz | `10` | Maximum dynamic web snapshot publication rate. |
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| `VisualizationHistoryCycleLimit` | cycles | `60` | Bounded web history length. |
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| `EnableNativePainterVisualization` | bool | `false` | Enables the optional native Painter fallback. |
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| `EnableNativePainterVisualization` | bool | `true` | Enables optional native Painter audit windows; disable unless explicitly reviewed. |
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| `DirectionConfirmationSpeedMetersPerSecond` | m/s | `0.02` | Minimum signed-speed magnitude used to confirm the next direction. |
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| `DirectionConfirmationSamples` | samples | `3` | Strictly increasing matching-direction samples required after the stop hold. |
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| `GearSwitchProjectionToleranceMeters` | m | `0.50` | Maximum switch-point projection distance for both adjacent segments. |
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| `GearSwitchStopHoldSeconds` | s | `0.20` | Continuous real-stop duration required before direction samples count. |
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The four vehicle fields are public editable MovementTest inputs. They, the map/timing fields, goal, and manual obstacles
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are validated and copied into a frozen input snapshot before the background session starts. Later edits cannot change an
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active session. The live pose and actual longitudinal speed are then read once per observer tick.
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EM planning runs asynchronously with at most one planning cycle in flight. Every observer tick still captures fresh
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state, samples the currently published trajectory, redraws all three layers, and emits a session-guarded status; a slow
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`TrajectoryObservationSettings` contract defaults are `PlanningScope=FullDirectionSegment`,
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`TimeHorizonSeconds=2.0`, `EnableWebVisualization=true`, and `EnableNativePainterVisualization=false`; the MovementTest
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UI currently exposes the values above. All public fields are validated and copied into a frozen input snapshot before
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the background session starts. Later edits cannot change an active session. The live pose and actual longitudinal speed
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are then read once per observer tick.
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In full scope, EM planning runs once per active segment with one attempt in flight. In rolling scope, EM planning
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respects `ReplanPeriodSeconds` with at most one planning cycle in flight. Every observer tick still captures fresh
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state, samples the currently published trajectory, redraws all layers, and emits a session-guarded status; a slow
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planner therefore does not reduce the configured observation cadence.
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## Manual obstacles
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@@ -84,14 +102,20 @@ for driving and has no driving capability; any future execution mode requires a
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网页默认以 `10 Hz` 发布不可变动态快照,网页关闭、断开或慢客户端只会丢弃网页帧,绝不会阻塞、序列化等待或改变
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规划周期。
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`EnableNativePainterVisualization=true` 才会为本会话创建 `TrajectoryObserver.World`、`LS`、`ST` Painter;默认关闭。
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网页与 Painter 可以同时开启,也可全部关闭:全部关闭时仍保留 `OBSERVE_ONLY` 规划、控制台和 UI 状态。网页的启动、
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快照或服务出现异常时会只记录一次中文诊断并熔断本次网页输出,不自动循环重启,也不会停止规划观察。
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`EnableNativePainterVisualization=true` 才会为本会话创建 `TrajectoryObserver.World`、`LS`、`ST` Painter。网页是主
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观察界面,Painter 仅作为可选的正确性/审计输出;受监督车辆清单执行前应显式关闭 Painter,除非另行审查。网页与
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Painter 可以同时开启,也可全部关闭:全部关闭时仍保留 `OBSERVE_ONLY` 规划、控制台和 UI 状态。网页的启动、快照或
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服务出现异常时会只记录一次中文诊断并熔断本次网页输出,不自动循环重启,也不会停止规划观察。
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网页采用中文说明配合科研绘图约定:白底、细灰网格和细曲线;当前轨迹为蓝色实线,上一轮为灰色虚线,换向与交接点
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为橙色,红色仅表示实际越界或失败。路径总览把已完成方向段画为灰色细实线、活动段画为蓝色细实线、未来段画为浅灰
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虚线,并以深蓝覆盖当前规划视界。页面的 `ReferenceS (m)` 是将轨迹投影到**完整活动方向段**后的共享参考站;
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`PathS (m)` 是每轮 ST 求解使用、从该轮局部起点累计的实际路径弧长,二者不可互相替代或跨轮直接相减。
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`PathS (m)` 是 ST 求解使用、从该段局部起点累计的实际路径弧长,二者不可互相替代或跨段直接相减。
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所有图表轴标签与单位由实际快照提供:世界 `X/Y (m)`、`ReferenceS (m)`、`PathS (m)`、`t (s)`、`l (m)`、
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`v (m/s)`、`a (m/s²)`、`j (m/s³)`、`κ (m⁻¹)`、`ω (rad/s)`。`ls` 的横轴是 `ReferenceS (m)`、纵轴是 `l (m)`;
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`st` 的横轴是 `t (s)`、纵轴是 `PathS (m)`。每张图支持鼠标滚轮以指针为中心缩放、拖拽框选局部放大、`重置视图`
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与 `全屏`;这些操作只改变本地视口,不修改原始快照,也不向规划器发送参数。
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运动学页中 `j[i]` 仅表示真实区间 `[tᵢ, tᵢ₊₁)`,所以 jerk 只有 `N-1` 个样本;末点之后没有虚构的 `j=0`。
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状态页将滚动续航、接近停车边界和精确停车边界分别标为 `RollingContinuation`、
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@@ -113,6 +137,8 @@ Before starting:
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cannot be read.
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3. Set a finite goal X/Y/yaw (or be ready to enter them when prompted), then enter zero to twenty manual obstacles.
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Each obstacle must remain inside the configured start/goal rectangle plus map padding.
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4. Keep `EnableWebVisualization=true` and set `EnableNativePainterVisualization=false` unless the Painter audit output is
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explicitly required and reviewed for this vehicle session.
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To start, select the entry in the vehicle UI and start the MovementTest. Confirm the status begins with
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`OBSERVE_ONLY: no chassis command is sent.`, then review the bootstrap status and the
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