- Continue to work on the arm
Friday, November 28, 2008
Friday 11/28/08
Monday, November 24, 2008
Monday 11/24/08
- Build a manipulator
- Tweak drive train
National Science Teacher's Convention 11/22/08
- Work on the robots
- Demonstrate the FTC robotics system
- Work on software
Meeting Friday 11/21/08
- Finish mounting sensors
- Debug color sensor
- Work on program
Tuesday, November 18, 2008
Meeting Tuesday 11/18/08
Agenda:
- Calibrate Ramp
- Discuss Strategy
- Continue Autonomous Code
- Manipulator Arm
Ethan taught Jared how to start the blog entry. Nolan and Nick are calibrating the ramp. Kevin is working on the autonomous code. Tucker and Penelope are working on the manipulator arm.
After calibrating the ramp we tested it out on the robot and we first thought that the robots front was jamming in the ground while still on the ramp then we found out that that was the back of the robot so there are no problems besides giving it another arm to press the ramp back down and return to its starting position.
- I saw that the robot couldn’t get up the ramp because the push sensors on the back were running-a-ground and stopped the robot from getting up the ramp. I suggested that he goes up the ramp backwards and it worked.
- I came up with a theory that the thing at the end of the dump mechanism could also serve as a pickup-type thing. It scoops up pucks off the ground and puts them in the dump truck.
- I worked on the autonomous code. It now goes forward until it sees white and then continues forward for a set number of rotations then makes a left turn. The big improvements are that we can now read the color sensor and that the turn functions work.
Wednesday, November 12, 2008
Meeting Wednesday 11/12/08
Agenda:
- Talk
- Work on ramp
- work on navigation program
- weigh pucks
- measure hinged board panel and figure out screw placement
What Happened:
- I worked with John on the measuring of the starting panel. we measured one inch in from each side to find the correct placement of the 'X' wooden board stand. After discovering that the panel could not fit because of the placement of the other screws, we moved it around until it woul fit well. when there was a perfect spot for it, we measured about 4" in from the ends to find the placement of the screws. We didn't have the screws with us, but the drilling spots are marked.
- Ian discovered the weight of the pucks in grams, which was 1.962 oz
- Ian and Kevin worked on programming.
- Jeff showed me two examples of motor design. one put more stress on the gears, and the other was much more efficient by splitting the weight.
- Kevin worked on a design that would bring in and hold the touch sensors to they were at least 6" apart. The wheels are 10" apart.
- We all made a big mistake in that you acnnot plug in touch-cables through metal ]=. The design for the touch sensors was built wrong so the cables could not plug in correctly.
-Ethan Dedrickson
- I massed one puck and found it had a mass of 55.6 grams.
- I worked with kevin on programming some basic autonomous functions
- we worked on writing code to go forward until we see a line and code to use the motor encoder
-Ian McBride
- I worked with Ian on the navigation code and on a better mount for the touch senors, as mentioned above it did not work.
- I was able to determine that the pucks wiegh 1.96oz.
-Kevin Burns
Monday, November 10, 2008
Tuesday, November 4, 2008
Meeting Tuesday 11/04/08
Attendance: Kevin Burns, Jared Kent, Ethan Dedrickson, Nick Mueller, Ian Mcbride, Penelope Biggs
Agenda:
- Start manipulator
- Mount sensors (draw)
- Mark start point
- Program Navigation Code
- Blog!
Nick and Ethan talked about the design of the scoop. After coming to the conclusion that there will be a gate added and the shape will be changed, we began to draw some tentative designs on the chalkboard. Our final idea was that it would be flat instead of curved, and will have a gate on the end to keep the pucks from moving until desired.
- A possible method of doing this would be having a servo control the flipping of the gate so it flips either out in a similar way to a pickup truck, or flipping up so it only moves out of the way of the pucks.
- Later on, we will make a scale drawing to provide a much easier design to work with.
- We will cut out a prototype design of the scoop out of paper a few times until we get a good idea of it before we continue on to the design made of sheet metal.
- We broke apart the rough beginning draft made by ian and then experimented with shapes for the scoop as well as its dimensions.
- For the gate on the end we have 3 tentative designs as mentioned by ethan we have the dump truck outward folding ramp, the upward opening dogflap or the double flapped doorway that opens into a ramp.
- I worked on making a navigation program that will go from the starting location to the near pucks, dump them and then score them. I was able to finish the program but it will need some revision; it will also need to be tested.
- I watched Kevin start a program on robot c that goes forward, turns and goes backwards. It all looks so confusing at first but it is really just a lot of writing and even though it is over three hundred lines long it is mostly empty space.
- Helped Fixed the wobble in the base with a few more screws.
- Thought about where to mount color sensor.
- Then mounted it.
- I worked with Penelope to attach some sensors and strengthen the frame of our robot.
- We managed to mount: A compass, color sensor, and a touch sensor.
- We plan to mount 3 more touch sensors to the other corners of the robot.