Appendix D: Specifications

Appendix D

Specifications

DXe

Physical Characteristics

Length (cm)

44.5

Width (cm)

40

Height (cm)

24.5

Clearance (cm)

6.5

Weight (kg)

9

Payload (kg)

23

Power

DX

AT

Perf PB

PB V1

CE

44

50

47

47

44

33

49

38

38

33

22

24

124

104

22

5.1

5.5

3.5

3.5

5.1

9

14

21

19

9

20

40

11

13

20

Batteries 12VDC lead-acid

Charge (watt- hrs)

Run time (hrs) with PC (hrs)

Recharge time hr/battery std charger

High-Speed (3 batteries)

Mobility

Wheels

diam (mm) width (mm)

Caster (mm) Steering Gear ratio Swing (cm) Turn (cm)

Translate speed max (mm/sec)

Rotate speed max (deg/sec)

Traversable step max (mm)

Traversable gap max (mm)

Traversable slope max (grade)

Traversable terrains

3

252

8–10

3-4

6

2.4

2

pneumatic

191

50

75

Differential

19.7:1

32

0

1,800

360

20

89

25%

Wheel-

chair

accessible

3

3

3

3

1

252

252

252

252

84

8–10

4-6

na

na

8-10

3-4

2-3

3-4

3-4

na

6

6

6

6

6

2.4

2.4

2.4

2.4

na

2 solid

4

2

2 solid

2 solid

rubber

pneumatic

pneumatic

rubber

rubber

165

220

191

165

165

37

75

50

37

37

75

na

75

75

75

Differential

Skid

Differential

Differential

Differential

19.7:1

85.2:1

38.3:1

38.3:1

19.7:1

32

40

 

 

32

0cm

0cm

 

 

0

1,600

700

900

800

1,600

300

140

150

130

300

20

89

15

15

20

89

127

50

50

89

25%

40%

11%

11%

25%

Wheel-

Unconsolidated

Wheel-

Wheel-

Wheel-

chair

chair

chair

chair

No carpets!

accessible

accessible

accessible

accessible

 

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Pioneer 2 / PeopleBot manual Appendix D, Specifications

2 / PeopleBot specifications

Pioneer 2, also known as PeopleBot, is an advanced mobile robot platform heralded for its versatile design and robust capabilities. Developed by the renowned robotics company Adept Technology, Pioneer 2 has become a staple in the field of mobile robotics, widely utilized for research, education, and practical applications in various industries.

One of the standout features of Pioneer 2 is its exceptional mobility. The robot is equipped with differential steering, allowing it to navigate complex environments with precision. Its compact and sturdy chassis enables it to traverse a variety of terrains, making it suitable for indoor and outdoor exploration. This mobility is further enhanced by an adaptable wheel configuration, allowing for smooth movement even over obstacles.

In terms of technologies, Pioneer 2 is outfitted with an array of sensors that facilitate autonomous navigation and obstacle avoidance. These sensors include laser range finders, infrared sensors, and bumpers, which work in tandem to map the surrounding environment and detect potential hazards. This capability is critical for applications in areas such as warehouse automation or reconnaissance tasks, where safe navigation is paramount.

Pioneer 2 also supports extensive software frameworks, notably the Robot Operating System (ROS). This compatibility allows researchers and developers to leverage a vast library of tools and algorithms, expediting the process of programming and deploying robotic applications. Additionally, the platform can be integrated with various payloads, such as cameras or grippers, expanding its functionality further.

Another significant characteristic of Pioneer 2 is its user-friendly design. The robot comes with an easy-to-use programming interface that empowers users with varying levels of expertise to engage with the technology. Educational institutions often employ Pioneer 2 in robotics courses to provide students with hands-on experience in programming and operating robotic systems.

Powering Pioneer 2 is a rechargeable battery system that ensures extended operation times. This feature is particularly advantageous for fieldwork applications where connectivity to a power source may not be readily available. Importantly, the robot’s modular design facilitates maintenance and upgrades, allowing users to keep their systems current with advances in technology.

Overall, Pioneer 2 (PeopleBot) exemplifies innovation in mobile robotics with its outstanding mobility, advanced sensing technologies, compatibility with leading software frameworks, and a design focused on ease of use and adaptability. It continues to be a preferred choice for researchers, educators, and professionals in the rapidly evolving landscape of robotics.