A New Direction For Japan’s Space Program?

Here is the longer version of the previous article:

Aviation Week & Space Technology   May 06, 2013 , p. 36

Paul Kallender-Umezu
Tokyo

Japanese space programs face strict new reality

Et Tu, Tokyo?

The first order of business for new Japan Aerospace Exploration Agency (JAXA) leader Naoki Okumura will be to reorient his nation’s space program from advanced development to activities that may produce some commercial return on investment.

EpsilonBased on the latest five-year “Basic Plan” for space promulgated by the Office of National Space Policy (ONSP), the new direction is putting pressure on JAXA to cut, postpone or reduce to research and development some or most of the agency’s flagship science, technology and manned spaceflight programs.

Some or all of the satellites planned for the Global Earth Observation System of Systems, the HTV-R pressurized sample-and-crew-return mini-shuttle and the H-X/H-3 launcher programs could face cancellation, concedes JAXA’s Hiroshi Sasaki, senior advisor in the strategic planning and management department.

“For 20 years, so much money has been spent by JAXA [and its predecessor, Nasda] on R&D, but there has been very little commercial return,” says Hirotoshi Kunitomo, ONSP director.

Under legislation passed last year, JAXA policy is now controlled by the 23-member ONSP, which was created at the end of a process begun in the middle of the past decade to wrest control of space planning from the Ministry of Education, Culture, Sports, Science and Technology (MEXT), which controlled 60% of Japan’s roughly 350 billion yen ($3.75 billion) annual government space budget through its oversight of JAXA.

With a charter for change, ONSP reports directly to Prime Minister Shinzo Abe, who has final say over which of JAXA’s programs are funded. In turn, ONSP’s Basic Plan resets Japan’s space policy to three mutually reinforcing goals: promoting national security; boosting industry; and securing the country’s technological independence for all major space applications from reliance on foreign agencies—providing this supports the first two goals.

Kunitomo asserts that ONSP will continue to support frontier science as a lower priority, as long as it is based on the sort of low-cost, high-impact space science designed by JAXA’s Institute of Space and Astronautical Science , embodied by the Hayabusa asteroid sample-return mission. But former high-priority goals to promote environmental monitoring and human space activities and put robots on the Moon now have been moved down the list and must fight for funding, Kunitomo says.

Instead, only one of the three ONSP core programs—Japan’s launch vehicles—is run by JAXA.

The top-priority program, run by the ONSP, is to build out the Quasi-Zenith Satellite System (QZSS), Japan’s regional GPS overlay, with a budget approved for maintaining a constellation of four QZSS satellites by around 2018. A post-2020 build-out to a seven-satellite constellation will then give Japan its own independent regional positioning, navigation and timing capability.

The second is the Association of Southeast Asian Nations’ (Asean) newly sanctioned disaster management network run by the Ministry of Economy, Trade and Industry (METI). This requires a constellation of Earth-observing satellites equipped with X- and L-band radar and hyperspectral sensors to monitor Southeast Asia. Japan will provide at least the first three satellites, with more funding through foreign aid packages. Vietnam has signed up for two X-band satellites. The system’s once-daily global-revisit policy requires a minimum constellation of four satellites that will need to be replenished every five years or so.

The third priority has JAXA focusing on improving the current H-2A launch vehicle in partnership with Mitsubishi Heavy Industries (MHI) while continuing improvement of its new low-cost, launch-on-demand Epsilon solid-fuel rocket for smaller payloads. A variant of the Epsilon will be uprated to around 1,800 kg (3,970 lb.) from 1,200 kg to low Earth orbit, matching that of its predecessor M-V launch vehicle.

JAXA projects that fall outside the Basic Plan’s goals but already were funded for development will continue if it would be counter-productive to stop them, says Kunitomo. These include launching the upcoming ALOS-2 land-observing system and the Global Precipitation Measurement/Dual-frequency Precipitation Radar satellites. The Greenhouse Gases-Observing Satellite-2 (Gosat-2) will also continue, as it is funded by the Environment Ministry, not MEXT/JAXA.

But under a Feb. 25 budget plan drawn up by Kunitomo, several programs face close scrutiny, including the HTV-R sample-return mission, any future launches of the HTV-R transfer vehicle beyond the current seven planned to 2016, lunar exploration and all of JAXA’s follow-on environmental missions.

The ONSP’s logic for reauditing the HTV-R is harsh. As it is too expensive to commercialize, the H-2B will be ditched as dead once its HTV duties are finished. The HTV’s only purpose is to service the International Space Station, and Japan must minimize its costs, so logically the HTV, HTV-R and H-2B have no future beyond 2016 and the HTV’s seventh flight. Indeed, one industry official tells Aviation Week that Japan may launch at most two post-2016 missions.

The Basic Plan mandates that the agency’s already-low-priority environmental-monitoring programs undergo a “focus and reselection process.” This means the proposed GCOM-C, EarthCARE cloud radar mission and ALOS-3 electro-optical missions , the second main plank of Japan’s flagship international cooperation programs with NASA and the European Space Agency , will struggle for funding, and not all will make it, says Kunitomo. But a reconfigured ALOS-3 that can adapt to the Asean disaster management network at a fraction of its projected price would be more acceptable, he concedes.

As for the putative H-X, Kunitomo says ONSP questions the need to spend $2 billion and 8-10 years to develop it. JAXA and MHI say the program requires a launch system that no one can guarantee will be commercially competitive.

Industry’s reaction to all of this appears to range from stress to relief to anxiety. Masaru Uji, a general manager at the Society of Japanese Aerospace Companies, says QZSS and Asean network programs will provide steady, long-term business for Japan’s two satellite integrators: Mitsubishi Electric, which is supplying its DS2000 bus for the QZSS; and NEC Corp. , with its METI-funded 300-kg-class multipurpose Asnaro bus for the network.

The aerospace trade association figures show that for 2011, Japan’s total space sales—both overseas and domestic, and including all subcontractor revenues—amounted to only ¥265 billion ($2.7 billion). That is down from a peak of ¥379 billion in 1998, with overseas commercial sales accounting for only the low teens in revenue and JAXA programs taking the lion’s share of domestic business.

The Basic Plan “is moving in the right direction. You can’t build a business without infrastructure,” says Satoshi Tsuzukibashi, director of the Industrial Technology Bureau at Keidanren, Japan’s most powerful business lobby.

Uji is particularly pleased for NEC, which has been awarded a so-called private finance initiative to develop the QZSS ground segment, spreading steady payments to the company for at least the next 15 years. Anticipating the Basic Plan this January, NEC announced a ¥9.9 billion investment in a new 9,000-sq.-meter (97,000-sq.-ft.) satellite facility in Fuchu, west of Tokyo, to build a fleet of Asnaro satellites, which it also hopes to market commercially under the Nextar brand, says Yasuo Horiuchi, senior manager of NEC’s satellite business development office.

Similarly, Mitsubishi Electric said in March that it completed a doubling of its satellite production capacity to eight buses annually at its Kamakura Works. Having already sold four of the 13 DS2000-based satellites to commercial satellite services customers, increased volume spurred by the QZSS program will create further efficiencies and cost competitiveness, says Executive Director Eiichi Hikima.

MHI may face a different challenge, however. Ryo Nakamura, director of H-2A-2B launch services in the company’s Space Systems Div., says an improved H-IIA may gain one commercial contract in 2015-16. This may convince ONSP to fund the H-X (or H-3), whose first stage was supposed to use an LE-X engine with a high-thrust expander bleed cycle. Before the Basic Plan , the rocket was slated in JAXA’s road map to undergo the first of its three test launches around 2018. Hidemasa Nakanishi, manager of strategy and planning at the Space Systems Div., thinks it is Japan ‘s duty as an advanced spacefaring nation to complete its participation in the International Space Station, thus learning pressurized return technologies through the HTV-R .

JAXA’s Sasaki points out that nothing has been cut yet, and JAXA is going to battle to preserve as much of its “traditional” programs as it can in the relevant subcommittees though the spring. Key decisions will come in June.

Japan Sets Next H-2A and Kounotori-3 Launches

Jaxa and MHI have just announced that they have set the launch dates for the next H-2A and Kounotori-3 (HTV-3).

H-2A flight 21 is scheduled to launch JAXA’s Global Changing Observation Mission 1st – Water  “SHIZUKU” (GCOM-W1) and the KOMPSAT-3 (Korean Multi-purpose Satellite 1)  of the Korea Aerospace Research Institute (KARI) May 18 (Friday), 2012 (Japan Standard Time) at  1:39 a.m. thru 1:42 a.m. (Japan Standard Time).

To capitalize on the excess launch capability of the H-IIA F21, Japan is also provide launch and orbit injection opportunities for two small secondary  payloads.

Also H-II Transfer Vehicle Kounotori-3 (HTV-3)  aboard the H-2B Launch Vehicle No. 3 is scheduled for launch on  July 21 (Saturday), 2012 (Japan Standard Time, JST) around 11:18 a.m. (JST). The launch window will run July 22 (Sunday) through August 31 (Friday), 2012 (JST) at the Yoshinobu Launch Complex at the Tanegashima Space Center.

It’s going to be a busy time for JAXA and MHI and a lot is riding on both missions.

First of all with the STS now retired, Japan is taking a vital role in resupplying ISS and both the HTV and the H-2B relatively new.

MHI and JAXA have been on a 12-year campaign to fully master the H-2 A/B technologies but the H-2B and HTV, a highly advanced automatic tug and the subject of more than 20 years of research by JAXA, are  still very early into their launch careers. Experienced space watchers know that new technologies are still on probation until their launch rates reach double figures. Of course, failure of the mission to the ISS would not only be an international disaster for Japan, but cause the ISS program many issues.

There is also a lot riding on the KOMPSAT launch, as the H-2A is carrying a major Korean research satellite. While the ROK has found out that launch systems are extremely difficult to develop, having seen its first two efforts end unhappily, a failure of a launch of a prize Korean satellite aboard a Japanese rocket could deeply impact fractious Japan-ROK relations unless handled well by both sides. No doubt vituperation (from the ROK side) and conspiracy theories will abound.

The Kunotori mission is carrying several intriguing payloads, including two reentry accuracy and measurement experiments; the REBR (Reentry Breakup Recorder) manufactured by  Aerospace Corporation, which will record data regarding the thermal, acceleration, rotational and other stresses that Kounotori will go through as it breaks up on reentry,  and the much larger (22kg) i-Ball by IHI Aerospace which will do a similar job, but also has a camera.

JAXA is planning to release Cubesats from the International Space Station using the JEM’s  robot hand, from Japan these will be  RAIKO (Wakayama University) FITSAT-1 (Fukuoka Institute of Technology) and the WE WISH radio ham cubesats and TechEdSat built by San Jose State University and the F-1 cubesat by FPT University.

Good luck, chaps.