Monthly Archives: November 2016

Lessons from Gene Kranz’s “Failure Is Not An Option”

FAILURE IS NOT AN OPTION is an overview of Gene Kranz’s time as a controller with the newly formed Mecury Program to the last Apollo mission. He describes the growth of a burgeoning new space program, the success and the failures, and the men and women that took America to the moon.

The dedication of Gene’s team and his resolve to be TOUGH and COMPETENT following the Apollo 1 disaster that claimed the lives of Ed White, Roger Chaffee, and Gus Grissom are exemplary of a leader. His resolve to forge his team from mere engineers to operators is incredible. His resolve paid off when he and his team helped bring home Apollo 13 alive and safe. Time and time again Gene makes critical decisions based on his extensive preparation, the implicit trust he has for his fellow controllers, and his gut. A new group of young controllers seems to join the old with each mission. With each mission the young become old with their experience in the trenches.

Several lessons that can be gained:

  • Preparation: “Failing to prepare is preparing to fail.”-John Wooden. Gene’s team was more than a group of engineers. They were operators. They knew the system and their spacecraft extensively inside and out.
  • Trust: If you don’t trust your team to make the right decisions then why do they work for you? There was an implicit bond of trust between Gene, his underlings, and his peers.
  • Mentorship: One day you will be replaced. If the system is to run smoothly  you have to encourage individual growth while showing them the ropes.

What does this mean for me?

In Dr. O’Neill’s laboratory we often face critical, time-constrained decisions. My ability to answer them is a reflection of my capabilities. In my current down-time I am focused on improving my CAD, Orbit Analysis, and Coding knowledge.

 

 

 

Lessons from Gene Kranz's "Failure Is Not An Option"

FAILURE IS NOT AN OPTION is an overview of Gene Kranz’s time as a controller with the newly formed Mecury Program to the last Apollo mission. He describes the growth of a burgeoning new space program, the success and the failures, and the men and women that took America to the moon.

The dedication of Gene’s team and his resolve to be TOUGH and COMPETENT following the Apollo 1 disaster that claimed the lives of Ed White, Roger Chaffee, and Gus Grissom are exemplary of a leader. His resolve to forge his team from mere engineers to operators is incredible. His resolve paid off when he and his team helped bring home Apollo 13 alive and safe. Time and time again Gene makes critical decisions based on his extensive preparation, the implicit trust he has for his fellow controllers, and his gut. A new group of young controllers seems to join the old with each mission. With each mission the young become old with their experience in the trenches.

Several lessons that can be gained:

  • Preparation: “Failing to prepare is preparing to fail.”-John Wooden. Gene’s team was more than a group of engineers. They were operators. They knew the system and their spacecraft extensively inside and out.
  • Trust: If you don’t trust your team to make the right decisions then why do they work for you? There was an implicit bond of trust between Gene, his underlings, and his peers.
  • Mentorship: One day you will be replaced. If the system is to run smoothly  you have to encourage individual growth while showing them the ropes.

What does this mean for me?

In Dr. O’Neill’s laboratory we often face critical, time-constrained decisions. My ability to answer them is a reflection of my capabilities. In my current down-time I am focused on improving my CAD, Orbit Analysis, and Coding knowledge.

 

 

 

CODER 2016: Panelist/Presentation/Experience

I presented Tuesday at the Center for Orbital Debris Education and Research on “CubeSat Network for Prediction and Tracking of Orbital Debris.” The key points:

  1. Conceptual Stage of Development
  2. LIDAR ~700W and CubeSat ~200 W
  3. Assuming UV laser, 355 nm, resolution of 1 mm would require a 2 m telescope diameter for a range of 5 km

Presentation is attached here: simpson_v2

Several topics that are of interest specifically to my presentation:

  • Research that suggests that the satellite operators that do not follow good practices will be the primary source of new collisions in the future. Roger Thompson, The Aerospace Corporation, spoke to this on my panel.
  • Space is about to get a lot more crowded. To put it in context their have been 56 launches this year. SpaceX filed for 4400 satellites with the FCC Wednesday.
  • There is a strong need for knowledge of conjunctions and good covariance analysis. I.E. there seems to be the need for secondary analysis for conjunction warnings from JSpOC. On my panel Don Greiman, Schafer Commercial Space Situational Awareness Team, spoke to this from the commercial side and Ryan Shepperd as analysis in-house for Iridium.

Talk about a huge learning experience. I hope to take what I’ve learned back to The University of Alabama and disseminate this knowledge among our academic community. I also plan to stay in touch with the contacts I’ve made to help expand my horizons.

SMDWG Award

I recently received an award for $750 from the Space and Missile Defense Working Group (SMDWG). I have recently completed research on “Computational Fluid Dynamics (CFD) Aided Analysis of a Single-Stage Suborbital Rocket with a Six Degree of Freedom (6DOF) Solver,” that could have an impact on missile design. I was a runner-up for the SMDWG Graduate Fellowship Program.