Changes for page k. Design Patterns Evaluation SFT1
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To version 2.11
edited by Tjalling Haije
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... ... @@ -29,7 +29,7 @@ 29 29 1. Update how the users should use the technology and/or the technology itself to achieve the objectives. 30 30 1. Note missing data that should be included in the evaluation next time. 31 31 32 -=== 1.Design Patterns per Incident ===32 +=== Design Patterns per Incident === 33 33 34 34 |(% style="width:98px" %)**Incident**|(% style="width:396px" %)**Incident Description**|(% style="width:150px" %)**Tech used**|(% style="width:254px" %)**Design Patterns** 35 35 |(% style="width:98px" %)Incident 1|(% style="width:396px" %)((( ... ... @@ -62,16 +62,10 @@ 62 62 63 63 Based on the above list the next steps zoom in on incident 2. 64 64 65 -=== 2.Incident 2 tech evaluation ===65 +=== Incident 2 tech evaluation === 66 66 67 67 |(% style="width:247px" %)**Tech**|(% style="width:319px" %)**How was it used**|(% style="width:329px" %)**Issues**|(% style="width:329px" %)**Did it work sufficiently?** 68 -|(% style="width:247px" %)[[ASTRAL RTK Drone>>Main.c\. Technology.ASTRAL RTK Drone.WebHome]] (outdoor)|(% style="width:319px" %)Baseline & Run 1-3: The drone team conducts an aerial assessment of the collapsed buildings, identifying structural risks, access points, and possible victim locations. |(% style="width:329px" %)((( 69 -Run 1 USAR 1: Drone had connection issues which delayed its deployment. 70 - 71 -{{warning}} 72 -TODO: expand these issues with questionnaire answers 73 -{{/warning}} 74 -)))|(% style="width:329px" %)Yes 68 +|(% style="width:247px" %)[[ASTRAL RTK Drone>>Main.c\. Technology.ASTRAL RTK Drone.WebHome]] (outdoor)|(% style="width:319px" %)Baseline & Run 1-3: The drone team conducts an aerial assessment of the collapsed buildings, identifying structural risks, access points, and possible victim locations. |(% style="width:329px" %)Run 1 USAR 1: Drone had connection issues which delayed its deployment.|(% style="width:329px" %)Yes 75 75 |(% style="width:247px" %)[[OWL Indoor Drone>>Main.c\. Technology.OWL Indoor Drone.WebHome]] |(% style="width:319px" %)((( 76 76 Run 2 USAR 2: used to explore building and search for objects and victims 77 77 ... ... @@ -79,9 +79,7 @@ 79 79 )))|(% style="width:329px" %)((( 80 80 Run 2 USAR 1: OWL missed victim and entire floor. Object detection initially disabled. 81 81 82 -{{warning}} 83 -TODO: expand these issues with questionnaire answers 84 -{{/warning}} 76 + 85 85 )))|(% style="width:329px" %)Unreliable 86 86 |(% style="width:247px" %)[[ANYmal Robot>>Main.c\. Technology.Humanoid Robot.WebHome]] with [[Robot Arm (for ANYmal)>>Main.c\. Technology.Robot Arm (for ANYmal).WebHome]] |(% style="width:319px" %)((( 87 87 Run 1 USAR 1: remove beam blocking door ... ... @@ -89,89 +89,25 @@ 89 89 Run 3 USAR 1: Used to close a valve 90 90 91 91 92 -)))|(% style="width:329px" %){{warning}}TODO: expand these issues with questionnaire answers{{/warning}}((( 93 - 94 -)))|(% style="width:329px" %)Yes 95 -|(% style="width:247px" %)[[ANYmal Robot>>Main.c\. Technology.Humanoid Robot.WebHome]] with [[SNAKE>>Main.c\. Technology.SNAKE.WebHome]] |(% style="width:319px" %)Run 3 USAR 1: Used to search for victims in a narrow space|(% style="width:329px" %){{warning}}TODO: expand these issues with questionnaire answers{{/warning}}|(% style="width:329px" %)? 84 +)))|(% style="width:329px" %) |(% style="width:329px" %)Yes 85 +|(% style="width:247px" %)[[ANYmal Robot>>Main.c\. Technology.Humanoid Robot.WebHome]] with [[SNAKE>>Main.c\. Technology.SNAKE.WebHome]] |(% style="width:319px" %)Run 3 USAR 1: Used to search for victims in a narrow space|(% style="width:329px" %) |(% style="width:329px" %)? 96 96 97 -=== 3.Incident 2 way of working ===87 +=== Incident 2 way of working === 98 98 99 -|(% style="width:1 66px" %)**Run & team**|(% style="width:442px" %)**Howdid thefirstresponders use the tech**|(% style="width:238px" %)**Similar to what usecase**100 -|(% style="width:1 66px" %)Run 1, USAR team 1|(% style="width:442px" %)(((89 +|(% style="width:138px" %)**Run & team**|(% style="width:470px" %)**Way of working**|(% style="width:238px" %)**Similar to what usecase** 90 +|(% style="width:138px" %)Run 1, USAR team 1|(% style="width:470px" %)((( 101 101 The outdoor drone provides the Team Leader with an initial assessment of the incident scene. The Team Leader uses this information to deploy USAR teams and robotic assets; ANYmal supports by investigating and clearing hazards, after which the USAR teams gain access, stabilize the structure, locate victims, and perform rescues while continuously reporting progress to the Team Leader. 102 102 )))|(% style="width:238px" %)[[UC04.3: Detailed indoor exploration with ANYMAL (USAR)>>2\. Specification.b\. Use Cases.UC04\.0\: Detailed indoor exploration.UC04\.3\: Detailed indoor exploration with ANYMAL (USAR).WebHome]] 103 -Although the robot didn 't exploreinside.104 -|(% style="width:1 66px" %)Run 2, USAR team 2|(% style="width:442px" %)(((93 +Although the robot seems to have had a very limited role here and not have explored much. 94 +|(% style="width:138px" %)Run 2, USAR team 2|(% style="width:470px" %)((( 105 105 The OWL indoor drone first explores the collapsed structure and streams its findings to the Team Leader. Based on this reconnaissance, the USAR team enters, searches for victims, responds to emergencies, and conducts rescues while the Team Leader maintains situational awareness through the digital support system. 106 106 )))|(% style="width:238px" %)[[UC04.3: Detailed indoor exploration with ANYMAL (USAR)>>2\. Specification.b\. Use Cases.UC04\.0\: Detailed indoor exploration.UC04\.3\: Detailed indoor exploration with ANYMAL (USAR).WebHome]] 107 -|(% style="width:1 66px" %)Run 3, USAR team 1|(% style="width:442px" %)(((97 +|(% style="width:138px" %)Run 3, USAR team 1|(% style="width:470px" %)((( 108 108 The outdoor drone assesses the scene, SNAKE inspects the interior, and ANYmal handles hazardous intervention tasks. Using the information gathered by these robotic systems, the USAR team enters, locates victims, and performs the rescue while the Team Leader maintains overall situational awareness and coordination. 109 -)))|(% style="width:238px" %)[[UC04.3: Detailed indoor exploration with ANYMAL (USAR)>>2\. Specification.b\. Use Cases.UC04\.0\: Detailed indoor exploration.UC04\.3\: Detailed indoor exploration with ANYMAL (USAR).WebHome]] 110 -Although the robot didn't explore inside. 99 +)))|(% style="width:238px" %)[[UC04.3: Detailed indoor exploration with ANYMAL (USAR)>>2\. Specification.b\. Use Cases.UC04\.0\: Detailed indoor exploration.UC04\.3\: Detailed indoor exploration with ANYMAL (USAR).WebHome]] 111 111 112 -== 4. Raw results == 113 113 114 -=== Results for Incident 2, Run 3, USAR team 1 VS baseline USAR team 1 === 115 115 116 -Analysis of questionnaire results for members with ID: UT13, UT11, UT12, UTL1 117 117 118 118 119 -|=Scenario|=Role|=Participants 120 -|Baseline|USAR Team Member|3 121 -|Baseline|USAR Team Leader|1 122 -|Run 3|USAR Team Member|3 123 -|Run 3|USAR Team Leader|1 124 -|Run 1|USAR Team Member|3 125 -|Run 1|USAR Team Leader|1 126 - 127 - 128 - 129 -[[image:1785167968429-388.png||height="390" width="821"]] 130 - 131 -[[image:1785167981571-844.png||height="419" width="815"]] 132 - 133 -[[image:1785167994552-876.png||height="329" width="767"]] 134 - 135 - 136 -These results show that in run 1 workload, trust and situation awareness were significantly lower compared to the baseline, with decision making and safety confidence differing only slightly from the baseline. 137 -Run 3 showed an improvement in decision making (specified as right info was available and decisions were timely) compared to the baseline and run 1. 138 - 139 -On average both runs had a lower workload (-25%), trust (-33%), situation awareness (-11%), slightly lower safety confidence (-4%) and improved decision making (+8%). 140 - 141 -Note: Run 3 also functioned as a demonstration, which increased speed of decisions and the scenario as a whole. Also, participants performed incident 2 in 3 runs in the same teamcomposition and building layout, such that participants giving them an unfair advantage. These factors might have influenced the results. 142 - 143 - 144 -=== 5. Results connected to Design Pattern measures === 145 - 146 -Note: The measures are defined in [[UC04.3: Detailed indoor exploration with ANYMAL (USAR)>>2\. Specification.b\. Use Cases.UC04\.0\: Detailed indoor exploration.UC04\.3\: Detailed indoor exploration with ANYMAL (USAR).WebHome]] and [[x. Measures>>3\. Evaluation.Measures.WebHome]] 147 - 148 -|(% style="width:376px" %)**Measure**|(% style="width:225px" %)**Results**|**Connected Claim**|**Claim proven?** 149 -|(% style="width:376px" %)Safe path chosen|(% style="width:225px" %)No FR path data available.|CL01 Improve safety for responders |Unknown 150 -|(% style="width:376px" %)Decision quality|(% style="width:225px" %)Can we use decision making questions from questionnaire for this? |CL01 Improve safety for responders |Unknown 151 -|(% style="width:376px" %)Near-incident and incident reports|(% style="width:225px" %)No incidents in baseline or run. 152 -No near-incidents data available.|CL01 Improve safety for responders |Unknown 153 -|(% style="width:376px" %)Reported hazards, victims, layout correctness, based on robot intel before FR entry|(% style="width:225px" %)No ground truth data available.|CL02 Increased SA|Unknown 154 -|(% style="width:376px" %)How optimal was the FR path|(% style="width:225px" %)No FR path or ground truth data available.|CL02 Increased SA|Unknown 155 -|(% style="width:376px" %)Reported hazards, victims, layout correctness, after FR entry|(% style="width:225px" %)No FR path or ground truth data available.|CL02 Increased SA|Unknown 156 -|(% style="width:376px" %)Workload: e.g. NASA-TLX|(% style="width:225px" %)Questionnaire indicates increased workload of 25%. But not literature reviewed questionnaire and runs not clean. |CL03 improved mission effectiveness|Indication says strong no, but data unreliable. 157 -|(% style="width:376px" %)Appropriate trust in technology: e.g. trust survey|(% style="width:225px" %)Can we use trust questions from questionnaire for this? They did not target robots specifically.|CL04 acceptable workload|Unknown 158 -|(% style="width:376px" %)Decision confidence: e.g. Retrospective decision quality rating|(% style="width:225px" %)Can we use decision making questions from questionnaire for this? |CL04 acceptable workload|Unknown 159 -|(% style="width:376px" %)Trust in SA|(% style="width:225px" %)Questionnaire indicates decreased trust of -33%. But not literature reviewed questionnaire and runs not clean|CL05 Trustworthy SA|Indication says strong no, but data unreliable. 160 -|(% style="width:376px" %)Health indicators such as HR, temperature, etc.|(% style="width:225px" %)No health data available.|CL06 Improved FR health|Unknown 161 -|(% style="width:376px" %)Health issues tackled in acceptable time|(% style="width:225px" %)?|CL06 Improved FR health|Unknown 162 -|(% style="width:376px" %)Total mission completion time|(% style="width:225px" %)?|CL07 Degraded mission efficiency|Unknown 163 -|(% style="width:376px" %)First responder time inside|(% style="width:225px" %)?|CL07 Degraded mission efficiency|Unknown 164 - 165 -(% class="wikigeneratedid" %) 166 -(Reliable) data missing to properly evaluate usecase and as such team design pattern. 167 - 168 - 169 -=== 5. Pros and cons for TDP === 170 - 171 -[[TDP2 — Robots First, Then Humans Protocol>>2\. Specification.Requirements.TDP2 — Robots First, Then Humans Protocol.WebHome]] 172 - 173 -|**Pro / Con**|**Results**|**Pro / Con proven?** 174 -| | | 175 -| | | 176 - 177 177
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