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<Your Team # > Your Team Name Here
<University Name> TÜRKSAT Model Satellite Competition Preliminary Design Review (PDR) Presentation Version 1.0 <Your Team # > Your Team Name Here
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Determination of Model Satellite Design
Present model satellite designs considered (Show at least two designs) Present criterias for final selection Include discussion of why the design was selected Drawings of the design shall be added. (CAD drawings) Presenter:
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Sensor Subsystem Overview
Sensors decided to use shall be specified in a table . In the table; Include type & models of the selected sensors. Include brief discussion of what the sensors are used for Presenter:
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GPS Sensor Trade and Selection
GPS sensors that can be used in the designed Model Satellite shall be compared in a table in this slide In the table: Sensor specifications Dimensions and Weight Price Indicate which sensor is selected and reasons for selection Indicate how to trade the GPS sensor. Solutions must be specified in detail to ensure the continuity of the GPS data! Presenter:
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Auto-Gyro Sensor Trade & Selection
Auto-Gyro sensors that can be used in the designed Model Satellite shall be compared in a table in this slide.(Compare at least two sensors) In the table: Sensor specifications Working Principle Dimensions and weight Price Indicate which sensor is selected and reasons for selection Indicate how to trade the Auto-Gyro sensor. How to position the gyro sensor in the design, posture information and the evaluation of the axis to be simulated must be explained in detail! Presenter:
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Descent Control Overview
One slide providing an overview of the container and science payload descent control system(s) Include overview of the selected components and design necessary. Include diagrams outlining descent control strategy for various flight altitude ranges. Presenter:
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Container Descent Control Strategy
Describe the descent control strategy and specify what needs to be traded for this strategy. Include details such as; Indicate how to mount and seperate the passive or active descent control system Pre-flight test evaluation Presenter:
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Science Payload Descent Control Strategy
Describe the descent control strategy and specify what needs to be traded for this strategy. Include details such as; Indicate how to mount and seperate the passive or active descent control system Pre-flight test evaluation Presenter:
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Mechanical Subsystem Overview
One slide providing overview of the mechanical subsystem; Major structural elements Material selection Connection components Interface definitions Include science payload and container structural appearance. Presenter:
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Science Payload Mechanical Components Selection & Layout
The design of the system is decided; Indicate design of mechanical components Identify mission and location of components Presenter:
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Container Mechanical Components Selection & Layout
The design of the system is decided; Indicate design of mechanical components Identify mission and location of components Presenter:
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CDH Overview The elements of the CDH subsystem and the relationships between them shall be shown in a diagram. Communication protocols of the sensors, other electronic components and communication module shall be indicated on the diagram. Presenter:
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Wireless Communication Configuration
Describe which communication module(s) will be used The protocol structure of radio module and how to configure it shall be shown (mod,address,etc.) How to provide transmission control? What are the working phases of communication system and how do they operate? Presenter:
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Science Payload Antenna Trade & Selection
Antenna selection criteria Antenna range and patterns Show at least two choices Indicate selected choice and reasons for selection Presenter:
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Telecommand 5-digit password information (e.g. X123C) defined for each team will be sent as telecommand at the time of flight from the ground station interface. The science payload shall save the password to the SD Card. Describe working principle. Indicate Password information panel on ground station interface. Show block diagram of the process from password entry on the ground station to saving the password to the SD Card in the science payload. Both Tx and Rx operating principle of science payload must be explained! Presenter:
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Continuity of Data Transfer
In this slide, indicate; Providing the continuity of the communication of the task load especially after landing on the ground, Receiving GPS data and providing continuity of transfer to ground station. Presenter:
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EPS Overview Batteries, regulators and switches shall be shown in a diagram with descriptions. Presenter:
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Overview of FSW of the model satellite
FSW Overview Overview of FSW of the model satellite Basic FSW architecture What the flight software basically does Programming Languages Development environments Presenter:
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FSW recovery to correct state after processor reset during flight
FSW State Diagram Flight Software Diagram; includes the states of the Model Satellite during flight. Include: Sampling of sensors (including rates) Communications (command and telemetry data) Mechanism activations (separation algorithm) Major decision points Power management FSW recovery to correct state after processor reset during flight What data is used to recovery? (Which data will be used for recovery when landing) Presenter:
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GCS Overview Ground Station Overview; demonstrate the general working principle of the system and the relationships between the components Computer Antenna Adaptors Presenter:
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GCS Antenna Trade & Selection
How to configure antenna mechanism How to locate the antenna mechanism How to take security measures Antenna transport strategy Alternative antennas shall be compared Indicate selected design and reasons for selection Presenter:
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Display prototypes showing how to user interface will be
GCS Software Display prototypes showing how to user interface will be Indicate which software package will be used Describe telemetry data recording and media presentation to judges for inspection Describe .csv/excel telemetry file creation Demonstrate how to create the simulation of the model satellite position at the interface (Please look # 5.2 of Competition Guide for position) Presenter:
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Model Satellite Integration and Test Overview
Discuss how to integrate subsystems Sequence (The sequence of integrating subsystems shall be shown in a diagram) Discuss system and subsystem level testing Transitions in diagram; decribe which tests are to be applied to combine with the next subsystem. The goal(s) at PDR are; Determining integration of subsystems and showing in the form of diagram Team members shall be determined which tests are carried out at which integration stage of the system. Assembly of A subsystem Integration of B and C subsystems (X) Integration of X and A subsystems (Y) Integration of D subsystem to Y (Z) Integration of E subsystem to Z Science Payload Integration of science payload to container (Model Satellite) EXAMPLE … Presenter:
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Subsystem Level Testing Plan
The plans of the tests to be applied to each equipment shall be indicated. Specify for each equipment; Which sub-team Which tests to applied When to apply the tests Plan of tests to be applied to the sensor subsystem step by step Plan of tests to be applied to the CDH subsystem step by step Plan of tests to be applied to the EPS subsystem step by step Plan of tests to be applied to the FSW subsystem step by step Plan of tests to be applied step to the Mechanical subsystem step by step Plan of tests to be applied to the Descent Control System step by step Note: We recommend that you do not delay this planning, discuss this planning repeatedly at certain stages of your work, and develop / update your diagram. Presenter:
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System Level Testing Plan
For Model Satellite(Science Payload+Container); Communication Testing Plan Mechanism Testing Plan Separation Testing Plan Note: We recommend that you do not delay this planning, discuss this planning repeatedly at certain stages of your work, and develop / update your diagram. Presenter:
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Presentation summary and conclusions In general include the following;
Completed work Unfinished work At which stage of the plan Presenter:
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Presentation Scoring & Additional Information
The following slides are about presentation scoring. Do not include the following slides and this slide in the your presentation. Presenter:
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The presentation should be completed without exceeding this time.
Presentation Format The content of the presentation should be prepared within the scope of the subjects mentioned above. Presentation format and originality should be prepared according to the request of the team. The presentation time is 20 minutes and the question will be answered within 5 minutes after the presentation. The presentation should be completed without exceeding this time. Presenter:
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The quality of the presentation is scored on a scale of 0 to 10 points
Evaluation Criteria The quality of the presentation is scored on a scale of 0 to 10 points Organisation and visuality Originality Understandable Laconic Teleconference performance Presenter:
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PPT Template Use 1 2 3 4 5 Team logos:
Team logo « view – slide master – (logo is added to the top left corner of the top template) – close master view» Each team shall add team name and number to the template. View – slide master – (make necessary arrangement in the relevant part of the top template) – close master view On each slide, replace the “Name here” in the bottom left corner with the name of the person(s) presenting that slide This will allow the judges to know the person to address any questions or comments to 1 2 3 4 5 Presenter:
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Create an Additional Slide
You can use extra slides; A slide including a different heading will not be created! The same slide heading will be created in the additional slide according to the following example. For example; Model Satellite Integration and Test Overview has 6 slides The slide headings will look like this; Model Satellite Integration and Test Overview (1/6) Model Satellite Integration and Test Overview (2/6) . Model Satellite Integration and Test Overview (6/6) Presenter:
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