85 lines
3.1 KiB
Python
85 lines
3.1 KiB
Python
# -*- coding: utf-8 -*-
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'''
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@File : dof_metrics.py
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@Time : 2025/12/18 20:18:24
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@Author : wty-yy
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@Version : 1.0
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@Blog : https://wty-yy.github.io/
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@Desc : DOF Limits Metric Implementation
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'''
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import numpy as np
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from robogauge.tasks.robots import RobotConfig
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from robogauge.tasks.gauge.metrics.base_metric import BaseMetric, GoalData, SimData
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from robogauge.utils.logger import logger
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class DofLimitsMetric(BaseMetric):
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""" Metric to log DOF limit violations. """
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name = 'dof_limits_metric'
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def __init__(self,
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robot_cfg: RobotConfig,
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soft_dof_limit_ratio: float = 0.9,
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dof_names: list = None,
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**kwargs
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):
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super().__init__(robot_cfg)
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self.soft_dof_limit_ratio = soft_dof_limit_ratio
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self.calc_dof_names = dof_names
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def __call__(self, sim_data: SimData, goal_data: GoalData) -> float:
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values = []
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for i in range(len(sim_data.proprio.joint.limits)):
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lower_limit = sim_data.proprio.joint.limits[i, 0]
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upper_limit = sim_data.proprio.joint.limits[i, 1]
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dof_range = upper_limit - lower_limit
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soft_lower_limit = lower_limit + (1 - self.soft_dof_limit_ratio) * dof_range
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soft_upper_limit = upper_limit - (1 - self.soft_dof_limit_ratio) * dof_range
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pos = sim_data.proprio.joint.pos[i]
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dof_name = sim_data.proprio.joint.names[i]
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value = 0
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if pos < soft_lower_limit:
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value = soft_lower_limit - pos
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elif pos > soft_upper_limit:
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value = pos - soft_upper_limit
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value /= dof_range # Normalize by DOF range
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logger.log(value, f'dof_limits/{dof_name}', step=sim_data.n_step)
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if self.calc_dof_names is not None:
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for use_name in self.calc_dof_names:
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if use_name in dof_name:
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values.append(value)
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else:
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values.append(value)
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rms_value = 1 - np.sqrt(np.mean(np.square(values)))
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logger.log(1 - rms_value, f'dof_limits/rms', step=sim_data.n_step)
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return rms_value
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class DofPowerMetric(BaseMetric):
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""" Metric to log DOF power efficiency. """
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name = 'dof_power_metric'
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def __init__(self,
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robot_cfg: RobotConfig,
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scaling_factor: float = 100.0,
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**kwargs
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):
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super().__init__(robot_cfg)
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self.scaling_factor = scaling_factor
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def __call__(self, sim_data: SimData, goal_data: GoalData) -> float:
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values = []
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for i in range(len(sim_data.proprio.joint.torque)):
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torque = sim_data.proprio.joint.torque[i]
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velocity = sim_data.proprio.joint.vel[i]
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power = abs(torque * velocity)
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values.append(power)
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dof_name = sim_data.proprio.joint.names[i]
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logger.log(power, f'dof_power/{dof_name}', step=sim_data.n_step)
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rms_power = np.sqrt(np.mean(np.square(values)))
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metric_power = 1 - rms_power / self.scaling_factor
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logger.log(rms_power, f'dof_power/rms', step=sim_data.n_step)
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return metric_power
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