Reused Dragon cargo capsule to ISS within a year

The competition heats up: SpaceX hopes to launch a previously flown Dragon capsule to ISS sometime with the next year.

This fall, SpaceX plans to refly one of its landed Falcon 9 rockets for the first time — and a Dragon capsule should make history by launching on a repeat ISS resupply mission shortly thereafter, a NASA official and a SpaceX representative said during a postlaunch news conference Monday. “I think we’re looking at SpaceX-11,” said Joel Montalbano, NASA’s deputy manager of ISS utilization, referring to the 11th resupply mission the company will fly with Dragon and the Falcon 9. (Monday’s launch kicked off SpaceX-9.)

I had been wondering when SpaceX would try to reuse a Dragon, and had assumed the reason it hadn’t happened yet was partly because of NASA reluctance combined with the delays connected with the launch failure last year. Either way, it appears that NASA is now on board and that the company is beginning to gear up for that first reflight.

SpaceX seeks two more pads for returning 1st stages

The competition heats up: SpaceX is asking for permission to establish two more landing pads so that it will have the capability of landing three first stages all within minutes of each other.

“SpaceX expects to fly Falcon Heavy for the first time later this year,” the company said in a statement responding to questions. “We are also seeking regulatory approval to build two additional landing pads at Cape Canaveral Air Force Station. We hope to recover all three Falcon Heavy rockets, though initially we may attempt drone ship landings” at sea.

This news suggests two things: 1. The first Falcon Heavy launch is definitely coming soon. 2. They are going to try to return all three 1st stages during that first launch.

SpaceX chooses recovered first stage to reuse

The competition heats up: SpaceX has chosen as the first Falcon 9 first stage to reuse the one that was the first to land successfully on a barge on April 8.

Though they have not announced the mission it will fly, I strongly suspect it will be one of the two SES communications satellites scheduled to launch in the fall. SES has already said they want to buy a launch using a re-used first stage, and the two SES satellites scheduled for the fall have some redundancy between them.

Getting and Installing Linux – Part 4

The Software Manager

by James Stephens

A computer is nothing more than a toy unless it has the tools you need to get your work done, and Linux has a great set of tools. Most distributions come loaded with the tools most people use every day, a full office suite, graphics and media packages and so on. If you want more, a world of software awaits at your fingertips via the Software Manager. Think of it as the app store for your distribution, with tens of thousands of official titles vetted and available for download, most free of charge. No longer are you left to the wilds of the Internet to find what you need.

Most Linux Software is functionally equivalent to that of Apple or Windows. Most open source titles are ported to all platforms including Linux. So if you use an open source title such as Audacity or VLC media player, just type its name into the Linux Software Manager search bar and you will find it. For propitiatory titles such as Photoshop just define what it does, image manipulation for example, and the Software Manager will suggest Linux equivalents like GIMP or KRITA. In addition Photoshop and some other Windows software run great on Linux using WINE – the Windows compatibility layer. More about that later.
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A brief history of the nuclear defence triad

Link here.

The essay is a fascinating look at the origins in the 1950s of the U.S.’s defense triad of ground-launched ICBMs, submarine-launched ICBMS, and bombers. The section on the history of ICBMs describes nicely the roots of the Atlas 5 rocket as well as many of the federal government’s contracting policies for its big government projects like SLS.

You can’t just call up a new weapons system from nothing by sheer will alone. As [Thomas Hughes, in his history of Project Atlas] explains, there were severe doubts about how one might organize such a work. The first instinct of the military was to just order it up the way they would order up a new plane model. But the amount of revolutionary work was too great, and the scientists and advisors running the effort really feared that if you went to a big airplane company like Convair and said, “make me a rocket,” the odds that they’d actually be able to make it work were low. They also didn’t want to assign it to some new laboratory run by the government, which they felt would be unlikely to be able to handle the large-scale production issues. Instead, they sought a different approach: contract out individual “systems” of the missile (guidance, fuel, etc.), and have an overall contractor manage all of the systems. This took some serious effort to get the DOD and Air Force to accept, but in the end they went with it. [emphasis mine]

Sounds remarkable like the way the SLS rocket program is organized, with different contractors building different engines and stages and one contractor (Boeing) acting as top manager. More interestingly, the way the military used to do things — put out a request and let the private sector build it — is similar to the way NASA is doing things in today’s commercial cargo/manned program. What forced the transition from having the private sector design things to having the government entirely in charge? I have highlighted the key phrase, “the scientists and advisors running the effort.” They might have been sincere and they might even have been right, at the time, but nonetheless their approach was still a power grab, taking control of design and construction from the private sector and shifting it to them and the government entities building the rockets.

When construction actually started, the government ended up with six different rocket programs, Redstone, Atlas, Thor, Titan, Polaris, and Minuteman.

The redundancy was a hedge: the goal was to pick the top two of the programs and cancel the rest. Instead, Sputnik happened. In the resulting political environment, Eisenhower felt he had to put into production and deployment all six of them — even though some were demonstrably not as technically sound as others (Thor and Polaris, in their first incarnations, were fraught with major technical problems). This feeling that he was pushed by the times (and by Congress, and the services, and so on) towards an increasingly foolish level of weapons production is part of what is reflected in Eisenhower’s famous 1961 warning about the powerful force of the “military-industrial complex.”

Once again, this history illustrates the power grab that took place in Washington in the 1950s, something that Eisenhower did not like. Sixty years later, the rocket industry is struggling to transition back to the old way of doing things, because it actually works better. Before the 1950s, our innovative, competitive, and fast moving technological private sector made the United States an unbeatable powerhouse. Afterward, we increasingly lost the ability to innovate and compete, because the system created by these scientists and advisors did not encourage competition. Instead, they instituted a top-down centralized command approach, ironically quite similar to the Soviet model, the very philosophy the United States was opposing during the Cold War.

The failures of that top-down approach — illustrated starkly by SLS’s gigantic budget, interminable delays, and little produced — might finally be coming home to roost, allowing a new power grab by a competitive private sector. The change I think will be generally beneficial, not only to the needs of the federal government but to the needs of the general population, as it will generate a lot more wealth, a lot more innovation, and a lot more excitement, as it once again makes the U.S. a powerhouse, this time out among the planets.

Freedom caucus demands impeachment vote on IRS head

Good news: Despite the opposition of Speaker Paul Ryan (R-Wisconsin), the conservative Freedom Caucus in the House is demanding a vote on the House floor on the impeachment of IRS head John Koskinen.

Two points: First, the vote is not guaranteed, as the motion put forth now will expire during the summer recess. The caucus will have to re-introduce it when Congress reconvenes in September, something they say they will do.

Second, Ryan’s resistance to having this vote does not speak well for him, considering the outrageous stonewalling by Koskinen in connection with IRS scandal, including lying to Congress and participating in the destruction of evidence that had been specifically requested by Congress. It also helps confirm the accusations of Ryan’s opponent in the August 9 Republican primary, Paul Nehlen, that Ryan is not the conservative he claims to be.

Trump picks Pence

It appears that Donald Trump has chosen Indiana governor Mike Pence as his vice presidential running mate.

This article provides a detailed look at Pence’s background, which is decidedly conservative and tightly linked with tea party philosophy.

Trump’s choice here is definitely encouraging. It suggests that his claimed conversion to conservative values might actually be sincere (though clearly shallow), because it suggests he is looking for conservatives to help him figure out how to be a conservative. As I’ve said repeatedly, the best way to make sure Trump governs as a constitutional conservative is to surround him with constitutional conservatives. This choice indicates that he is not going to resist that possibility.

Let me add that picking Pence could help Trump significantly in garnering support from the status quo Republicans that have been resisting him, since these same people respect Pence highly.

Let me also add one cautionary note. I have a memory of Pence at one point waffling on conservative principles for political gain, but I cannot at all remember the context or situation. Thus, it is important to remind ourselves repeatedly that these are all politicians, and that their interest is not necessarily that of the nation’s but of their own self-interest, which means getting elected. At any time they could toss the Constitution in the trash heap if that is what they think will get them votes. UPDATE: This article outlines Pence’s waffling as governor in Indiana, confirming my reservations about him.

It is therefore very important to not only surround Trump with conservatives, all politicians must be surrounded by voters who demand they defend our rights and our freedoms, as defined by the Constitution. Only then can we be reasonably assured that those rights will be defended.

DARPA pushes its Experimental Spaceplane program forward

The competition heats up: DARPA outlines its goals for its Experimental Spaceplane program (XS-1).

Key to the effort is DARPA’s recognition that since 2000 under the government’s EELV program, launch costs for the military had increased significantly, while the launch rates appears to slow.

According to DARPA’s presentation, the Pegasus, Minotaur, and Antares launch vehicles only fly one DoD mission per year at a cost of ~$55 million USD per flight.

SpaceX’s Falcon 9 currently performs ~3-6 DoD missions per year at a contract price equal to or greater than $54 million USD per flight.

That price per flight then jumps dramatically for United Launch Alliance’s (ULA’s) Atlas V and Delta IV launch vehicle families – which currently perform about 8 DoD flights per year for a cost per flight in excess of $400 million USD. [emphasis mine]

ULA claims that they charge the Air Force an average of $225 million per launch. DARPA says it is $400 million. Either way, that is a lot higher than the $83 million that SpaceX charged for its first Air Force contract.

The article then provides a nice overview of the XS-1 program, which like NASA’s commercial space program is asking private companies to come up with the new designs and technologies rather than have the government try to do it. All DARPA is doing is laying out their basic requirements, fly 10 times in 10 days for less than $5 million per flight.

The program is now shifting to its second phase, which will call for actual construction proposals late this year, with the hope of test flights by 2019.

Iridium’s next generation constellation of satellites

The competition heats up: Iridium prepares the first 10 of a total of 81 new satellites for launch on SpaceX’s Falcon 9 in September.

The Iridium Next program is a $3 billion investment by Iridium, according to Matt Desch, Iridium’s chief executive officer. Iridium’s purchase of 81 satellites represents approximately $2.2 billion of that cost, Desch said, and the company’s launch contract with SpaceX for seven Falcon 9 flights was valued at $492 million when the parties signed it in 2010. That was the largest commercial launch contract in history until last year’s 21-launch order by satellite Internet provider OneWeb with Arianespace.

The first 10 Iridium Next satellites will fly on a Falcon 9 rocket in September, followed by a second launch as soon as December with the next batch. Iridium managers will give the go-ahead for the second launch once the first 10 satellites finish initial in-orbit tests, Desch said. The other five launches should occur about once every two months next year to fill out the Iridium Next fleet 485 miles (780 kilometers) above Earth. Iridium’s contract with SpaceX calls for all the missions to fly on newly-built Falcon 9s, a situation unlikely to change any time soon since insurance arrangements for the initial launches have been finalized.

But Desch said he is open to purchasing reused Falcon 9 boosters in the future “if they’re the right price.”

To meet this schedule SpaceX’s launch schedule will have to ramp up considerably from its present rate of one launch about every three weeks.

Privately built smallsat designed deep space communications

The competition heats up: A partnership between two British space companies, a smallsat manufacturer and a space antenna operator, will team up to build and test a new smallsat communications satellite in lunar orbit.

The SSTL-GES Lunar Pathfinder team are already working on the initial baseline design, with technical assistance from the European Space Agency (ESA). SSTL are designing a series of lunar communication satellites and will be building on their heritage of small satellite platforms in Low Earth orbit and Medium Earth orbit to go beyond Earth’s orbit for the first time. GES are upgrading one of the famous antennas at their Goonhilly site in Cornwall, UK, into a deep space ground asset, which will be the first element in a commercial deep space network. In addition, GES will provide a dedicated mission operations centre situated in Cornwall.

What is interesting about this is that this is a private effort to develop a modern commercial deep space communications network for future planetary missions. It would be competitive with NASA’s Deep Space Network, which presently is the only game in town and is generally made up of upgraded 1960s based technology. This new network would also eventually include a dedicated network of smallsats scattered through the solar system to act as communications relays. This is something that NASA does not provide, depending instead on the communications instruments of the planetary missions themselves.

Rocket Lab gets new launch contract

The competition heats up: Rocket Lab has signed a three launch contract with the smallsat Earth resources satellite company Planet (formerly Planet Labs).

The contract covers three dedicated launches of Dove satellites built by San Francisco-based Planet, formerly known as Planet Labs, on Electron vehicles. The companies did not announce terms of the deal, although Rocket Lab quotes a list price of $4.9 million per Electron launch on its website.

Mike Safyan, director of launch and regulatory affairs for Planet, said in an interview during the International Space Station Research and Development Conference here that the number of satellites that each launch will carry is still being determined, but will likely be between 20 and 25. Each Dove is a three-unit cubesat with a mass of about five kilograms.

If this report as well as previous ones are correct, the first Electron rocket launch will happen before the end of this year.

Breakthrough on battery life?

New research might have discovered engineering that could significantly increase the efficiency of the batteries we use.

This is where Mya Le Thai’s magic gel comes in. Typically, a Lithium Ion battery can go through between 5000 and 7000 recharge cycles before it dies and will also gradually lose its energy storage capacity over time. When researchers applied Thai’s plexiglass-like gel to gold nanowires in a manganese dioxiode shell, it increased that number to over 200,000 and the battery didn’t lose any of its power or storage capacity over a period of three months.

Sierra Nevada completes first Dream Chaser milestone

The competition heats up: Even as it prepares to complete the last milestone in its NASA contract for developing a manned version of Dream Chaser, Sierra Nevada has just completed the first milestone on its contract to build a cargo version of the reusable lifting body spaceplane.

Though Sierra Nevada did not win a contract to build the manned Dream Chaser, it did have a development contract with NASA that called for one more glide flight test, a test the company had until now decided not to fly because the cost would exceed the milestone payment. This changed however after they won a cargo contract, as the flight will provide important test data for building the cargo version.

Meanwhile, the company’s plan for building the cargo vehicle has been approved by NASA, thus rewarding them their first milestone on that contract, with the following schedule:

Per current schedule goals, Mr. Olson added the inaugural Dream Chaser cargo flight to ISS is aiming for a launch – on the United Launch Alliance Atlas V – as early as October 2019, or as late as April 2020. The company is aiming to build two Dream Chasers, able to fly a total of 30 times over a 10 year lifetime.

Once built and successfully flying, they also plan to move forward on developing the manned version, both for NASA and for others.

Cubesats to the planets!

Link here. The article is a good detailed overview of the many upcoming planetary missions that are using small and relatively inexpensive cubesats as either part of their mission, or are the mission itself.

This trend also partly explains the number of new rocket companies like Rocket Lab and Firefly Space Systems that are developing small rockets aimed at launching cubesats. These companies have recognized a growing demand, and are trying to serve it. As the article notes,

Lifts are so hard to come by that the first interplanetary CubeSat — NASA’s twin INSPIRE mini-spacecraft, intended to test key technology for future missions — has been waiting for almost two years. “We still have to find a ride,” says Anthony Freeman, who manages the Innovation Foundry at NASA’s Jet Propulsion Laboratory in Pasadena, California.

European experimental space junk removal mission to launch

The competition heats up: A European Space Agency mission to test technologies for removing space junk will launch sometime next year.

Presented at the Royal Society’s summer science exhibition this week, and led by the Surrey Space Centre, the systems included a net, harpoon and drag sail, which scientists have incorporated into a test platform for launch into space. The platform will also carry “artificial junk” in the form of small satellites known as CubeSats.

Once the platform is launched into space, a CubeSat will be released. “The CubeSat will be ejected from the platform and then we’ll fire the net at it,” said Forshaw. The CubeSat, hopefully encased in the net, will then fall back towards Earth and burn up. In the case of the harpoon, the researchers have attached a target made of spacecraft material to a carbon-fibre boom that extends from the platform. “When the harpoon impacts it, it is actually going to simulate a real spacecraft being hit,” said Forshaw.

At the end of the mission the third system, a drag sail will be deployed. Attached to the platform, the sail will speed up its return to Earth where it will burn up in the atmosphere. Similar systems have been proposed for future satellites to allow them to be disposed of without leaving space junk.

With the Chinese, NASA, and private companies all developing robotic missions to either clean up space junk or repair satellites, the competition to do this work is going to get very intense in the next decade.

The American Revolution, as reported by modern reporters

To better understand how the teaching of American history is being distorted by modern leftist historians, one need only read this description of the beginnings of the American Revolution, written as it almost certainly would be by today’s ignorant and leftwing anti-American journalists:

Boston – National Guard units seeking to confiscate a cache of recently banned assault weapons were ambushed by elements of a Para-military extremist faction. Military and law enforcement sources estimate that 72 were killed and more than 200 injured before government forces were compelled to withdraw.

Speaking after the clash, Massachusetts Governor Thomas Gage declared that the extremist faction, which was made up of local citizens, has links to the radical right-wing tax protest movement.

Read it all. It will sound sadly very familiar.

The Declaration of Independence

It behooves every American to read at least once a year the document that outlined the principles and reasons why the American colonies declared their independence from Great Britain. These words remain its most profound statement:

We hold these truths to be self-evident, that all men are created equal, that they are endowed by their Creator with certain unalienable Rights, that among these are Life, Liberty and the pursuit of Happiness.–That to secure these rights, Governments are instituted among Men, deriving their just powers from the consent of the governed, –That whenever any Form of Government becomes destructive of these ends, it is the Right of the People to alter or to abolish it, and to institute new Government, laying its foundation on such principles and organizing its powers in such form, as to them shall seem most likely to effect their Safety and Happiness.

It seems that the Fourth of July seems the most appropriate day for that reading.

The story of the writing of the Battle Hymn of the Republic

Some more Civil War history on this July fourth.

The Battle Hymn of the Republic became one of the most popular songs in the North during the Civil War, and was also an important rally song used during the 1950s/1960s civil rights movement. And its central theme is stated by its last stanza:

In the beauty of the lilies
Christ was born across the sea,
With a glory in His bosom
That transfigures you and me;
As He died to make men holy,
Let us die to make men free;
While God is marching on.

That stanza in many ways encompasses much of American history, since many of the original colonies were formed by deeply religious Christians who had made their religion and its moral rules central to their lives. That faith ended up being seeped in much of American culture for the next four hundred years, and guided the country’s actions both in domestic and foreign policy.

Sierra Nevada signs deal with UN

The competition heats up: Sierra Nevada has signed a memorandum of understanding with the United Nations, creating the framework for UN member nations to use its Dream Chaser cargo vehicle for science research.

Under the agreement, [Sierra Nevada] committed to dedicating one or more Dream Chaser missions that will host payloads from member countries. The cooperation will focus on developing an interface control document and payload hosting guide to allow payloads developed by participating countries, especially non-space-faring ones, to be flown into orbit.

What this means is that American space technology, developed and owned privately rather than built by NASA, is beginning to grab business wherever it can find it. These UN space missions eventually flown on Dream Chaser might be foreign built, but it will be the American spacecraft that gets them to space..Sierra Nevada will not only make money doing so, it will position itself financially to develop even better space products that it can sell worldwide. Nor will Sierra Nevada be alone in this. The result will be the increasing prosperity of the American aerospace industry as it gains a larger share in the settlement of the solar system.

Blue Origin breaks ground on rocket factory

The competition heats up: Blue Origin has broken ground on a Florida factory for building its orbital rockets.

At 750,000 square feet, the new custom-built facility is designed to be large enough to accommodate manufacturing, processing, integration, and testing of orbital rockets. To put that size in perspective, SpaceX’s rocket facility in Hawthorne, California is nearly one million square feet. Bezos stated that the entire rocket would be manufactured in this facility with the exception of the rocket engines themselves.

What this means is that Bezos is satisfied with the results of the test flights of his suborbital New Shepard spacecraft, and is now ready to upscale to a orbital rocket that would compete with SpaceX and everyone else in the increasingly competitive launch market.

Virgin Galactic gets another launch contract

The competition heats up: Virgin Galactic has signed a launch contract with new communications satellite company Sky and Space Global to use LauncherOne to put 200 nanosats into orbit in 2018.

This contract suggests that Virgin Galactic might be making good progress on LauncherOne. Or it might mean that Sky and Space has some commitments that forced it to pick Virgin Galactic over other smallsat launch companies that appear to be farther along in development. Either way, the stock market looked at this deal and, as noted in the article above, sold off enough Sky and Space stock for its value to drop.

Science elites move to block UK exit from EU

A statement today from the UK’s Royal Astronomical Society, reacting to yesterday’s vote to leave the European Union, calls for the government to do whatever it can to nullify that exit.

Professor John Zarnecki, the President of the Royal Astronomical Society, commented: “We must remember that whatever happens, science has no boundaries. It is vital that we do not give the message, particularly to our younger colleagues, in the UK and beyond that our country is not a good place in which to do scientific research, however uncertain the economic and political environment is.

“I have been privileged during my career to have worked in a research environment in Europe which has had few borders for either people or ideas. We must strive to make sure that these rights are not taken away – this would be enormously to the detriment of UK society.”

The statement includes a laundry list of benefits that membership in the EU brings scientists, including lots of funding to pay the salaries of these scientists. The statement also insists that all these benefits must be maintained, despite the will of the electorate.

While many of these benefits (easy travel between nations) are beneficial and a reason to have a European Union, the electorate understood that the benefits have been increasingly outweighed by the heavy regulatory burden imposed by the EU, with no democratic recourse allowed.

Articles in the science journals Science and Nature, here, here, and here, also note the distress and opposition by scientists to yesterday’s vote.

This unwillingness of the elite community to accept the will of the public is part and parcel to the same bubble I found in Washington when I attended the CNAS conference. Unfortunately, I see no evidence of a willingness in the elite community to bend at all to the will of the general public, meaning that we can only expect the conflict between the top and the bottom to intensify in the coming years. The question will be whether our institutions of democracy will be able to withstand that battle, especially when those in power continue to find their power being attacked from below.

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