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发表于 2016-5-24 10:34 | 显示全部楼层 |阅读模式 来自: 中国上海
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龙船学院
发表于 2016-5-24 10:38 | 显示全部楼层 来自: 中国浙江舟山
夜观天象用的?白球是大天线?
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发表于 2016-5-24 10:42 | 显示全部楼层 来自: 中国辽宁葫芦岛
海上天文站,海上测控。
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发表于 2016-5-24 10:48 | 显示全部楼层 来自: 中国上海
美国海军用半潜平台改装的X波段雷达。

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发表于 2016-5-24 10:50 | 显示全部楼层 来自: 中国江苏无锡
美军远程预警雷达站,主要功能就是开到敏感地区对敌国发射的远程导弹做出预警!
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发表于 2016-5-24 10:51 | 显示全部楼层 来自: 中国山东
多造造这样的东西放南海  
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发表于 2016-5-24 10:55 | 显示全部楼层 来自: 中国浙江舟山
这都能找到,大神啊
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发表于 2016-5-24 11:44 | 显示全部楼层 来自: 中国江苏南通
霸气的一笔啊!
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发表于 2016-5-24 17:24 | 显示全部楼层 来自: 中国香港
点赞!!!!!!!!!!!!!!!
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发表于 2016-5-24 19:13 | 显示全部楼层 来自: 中国安徽芜湖
公布答案吧,不明觉厉,反正感觉高大上!
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发表于 2016-5-24 19:47 | 显示全部楼层 来自: 中国上海
美国海上军用雷达,还有掌握海上天气预报等作用
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发表于 2016-5-24 20:24 | 显示全部楼层 来自: 中国江苏无锡
本帖最后由 液氮渔场 于 2016-5-24 20:30 编辑

The Sea-Based X-Band Radar (SBX-1) is a floating, self-propelled, mobile active electronically scanned array early-warning radar station designed to operate in high winds and heavy seas. It was developed as part of the Missile Defense Agency's Ballistic Missile Defense System.
The radar is mounted on a fifth generation CS-50 twin-hulled semi-submersible drilling rig. Conversion of the vessel was carried out at the AmFELS yard in Brownsville, Texas; the radar mount was built and mounted on the vessel at the Kiewit yard in Ingleside, Texas. It is nominally based at Adak Island in Alaska (though, as of April 2015 has never put into port at Adak). It has spent significant time at Pearl Harbor in test status.
Contents


Specifications
  • Vessel length: 116 meters (381 ft)
  • Vessel height: 85 meters (279 ft) from keel to top of radome
  • Vessel draft: approximately 10 meters (33 ft) when in motion or not on station; approximately 30 meters (98 ft) when on station
  • Vessel stability: remains within 10 degrees of horizontal on station (fully passive stabilization)
  • Cost: US$900 million
  • Crew: Approximately 75-85 members, mostly civilian contractors
  • Radar range: 2,000 kilometers (1,200 mi)
  • Displacement: 50,000 short tons (45,000,000 kg)
DetailsSBX-1 is part of the Ground-Based Midcourse Defense (GMD) system under development by the MDA. The decision to place the system on a mobile sea-based platform was intended to allow the vessel to be moved to areas where it is needed for enhanced missile defense. Fixed radars provide coverage for a very limited area due to the curvature of the Earth. However, the same limitation applies to the SBX. SBX's primary task is discrimination of enemy warheads from decoys, followed by precision tracking of the identified warheads. Testing has raised doubts about the system's ability to perform these tasks, to deal with multiple targets, and to report accurately to command authorities.[1]
The vessel has many small radomes for various communications tasks and a large central dome that encloses a phased-array, 1,800 tonne (4,000,000 pound) X band radar antenna. The small radomes are rigid, but the central dome is not - the flexible cover is supported by positive air pressure amounting to a few inches of water. The amount of air pressure is variable depending on weather conditions.
The radar antenna itself is described as being 384 m2 (4,130 sq ft). It has a large number of solid-state transmit-receive modules mounted on an octagonal flat base which can move ±270 degrees in azimuth and 0 to 85 degrees elevation (although software currently limits the maximum physical elevation to 80 degrees). The maximum azimuth and elevation velocities are approximately 5-8 degrees per second. In addition to the physical motion of the base, the beam can be electronically steered off bore-sight (details classified).
There are currently 22,000 modules installed on the base. Each module has one transmit-receive feed horn and one auxiliary receive feed horn for a second polarization, totaling 44,000 feedhorns. The base is roughly 2/3 populated, with space for installation of additional modules. The current modules are concentrated toward the center to minimize grating lobes. This configuration allows it to support the very-long-range target discrimination and tracking that GMD's midcourse segment requires. The array requires over a megawatt of power.[citation needed]
In addition to the power consumed by the radar, the thrusters which propel the vessel are electric and require substantial power. The maximum speed is approximately 8 knots (9.2 mph; 15 km/h). To support this and all other electrical equipment, the vessel currently has six 3.6-megawatt generators (12-cylinder Caterpillar diesels). The generators are in two compartments, one port and one starboard. The maximum power currently drawn is roughly 12 megawatts, and there are plans to expand the number of generators to eight, so that one entire compartment could be lost and the vessel would continue to operate at full capability.[citation needed]



SBX entering Pearl Harbor, Hawaii for repairs on January 9, 2006


The radar is derived from the radar used in the THAAD theater ballistic missile defense system, and is a part of the layered ballistic missile defense (BMDS) program of the United States Missile Defense Agency (MDA). One important difference from Aegis is the use of X band in the SBX. Aegis uses S band, and Patriot uses the higher-frequency C band. The X band frequency is higher still, so its shorter wavelength enables finer resolution of tracked objects. The radar was designed and built[when?] by Raytheon Integrated Defense Systems for Boeing, the prime contractor on the project for MDA.[citation needed]
The radar has been described by Lt. Gen Trey Obering (director of MDA) as being able to track an object the size of a baseball over San Francisco in California from Chesapeake Bay in Virginia, approximately 2,900 miles (4,700 km) away.[2][3] The radar will guide land-based missiles from Alaska and California, as well as in-theatre[[url=https://en.wikipedia.org/wiki/Wikipedialease_clarify]clarification needed[/url]] assets.
The CS-50 semi-submersible rig on which the radar is mounted was built as the "Moss Sirius" at the Vyborg Shipyard (Выборгский судостроительный завод) in Russia for Moss Maritime (now part of the Saipem offshore company).[citation needed] The vessel is classed by ABS and has the IMO number of 8765412.



SBX departing Pearl Harbor, Hawaii on March 31, 2006


The first such vessel is scheduled to be based in Adak Island, Alaska, part of the Aleutian Islands. From that location it will be able to track missiles launched toward the US from both North Korea and China. Although her homeport is in Alaska, she will be tasked with moving throughout the Pacific Ocean to support her mission. The hull code number given to the SBX vessel, "SBX-1," indicates the possibility of further units of the class. In circumstances when a vessel is required to be continually on duty over a long period of time, common naval practice is to have at least three units of the type available to allow for replenishment, repair and overhaul. Three further vessels of the CS-50/Moss Sirius design were under construction or contract at the Severodvinsk Shipyard in Russia as of early 2007, but were configured for oil production. On May 11, 2011, Col. Mark Arn, the SBX project manager for MDA, said that the "SBX is the only one of its kind and there are no current plans for another one".[4] In July 2011, a Missile Defense Agency spokesman explained that other, smaller radars in the Pacific will "pick up the slack" while SBX is in port with its radar turned off.[5]
Operational historyThe SBX deployed in 2006. The ship has spent time for maintenance and repair at Pearl Harbor, Hawaii several times, including 170 days in 2006, 63 days in 2007, 63 days in 2008, 177 days in 2009, and 51 days in 2010. When not at Hawaii, the SBX has been on operational deployments in the Pacific, including the waters off Alaska. The ship has not moored at Alaska, in spite of the construction of a $26 million, eight-point mooring chain system installed in 2007 in Adak's Kuluk Bay. On June 23, 2009, the SBX was moved to offshore Hawaii in response to a potential North Korean missile launch. Between 2009 and 2010, the vessel spent 396 continuous days at sea.[6][7]
The SBX failed during a flight test on January 31, 2010, designated FTG-06. The test was a simulation of a North Korean or Iranian missile launch.[8] The test failure arose from two factors, the first being that algorithms in the SBX radar software (designed to filter out extraneous information from the target scene) were left disengaged for the test, and the second was a mechanical failure in a thruster on the kill vehicle.[9]
During flight test FTG-06a on December 15, 2010, the SBX performed as expected, but intercept of the target missile was again not achieved.
In May 2011, the SBX-1 entered Vigor Shipyard (formerly the Todd Pacific Shipyard) in Seattle for a $27 million upgrade and maintenance work by contractor Boeing.[10] The work was completed in about three months and in August 2011, SBX-1 departed Seattle for deployment.[11]
In December 2011, MDA transferred responsibility for the SBX vessel management and physical security to the U.S. Navy's Military Sealift Command.[12] MDA retains responsibility for communications, the X-band Radar, and for mission integration.
In February 2012, the Missile Defense Agency requested only $9.7 million per year for Fiscal Years 2013 through 2017, down from $176.8 million in fiscal 2012. This reduced amount would be used to maintain SBX in a “limited test support” role, "while also retaining the ability to recall it to an active, operational status if and when it is needed.”[1][13]
In April 2012, it was reported that SBX-1 had left Pearl Harbor and was assumed to be being deployed to monitor North Korea's planned Unha-3 missile in the launch window of 12–16 April 2012.[14] The vessel returned to Pearl Harbor on 21 May 2012.[15] It redeployed to monitor the next North Korean launch attempt at the end of 2012.[16]
In April 2013, it was reported that SBX-1 was being deployed to monitor North Korea.[17] It has never been deployed to Adak.[1]

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发表于 2016-5-24 20:29 | 显示全部楼层 来自: 中国江苏无锡
半潜平台是毛子造的,美国德克萨斯的船厂改造

Sea-Based X-band (SBX) Radar  Contract ActivityRaytheon is a leader in developing technologies for missile defense. National Missile Defense refers to defense of the United States against limited missile attack. The RSC-developed ground-based radar-prototype, an X-band, phased-array fire control radar, is intended to be a building block in the development of the radar needed for National Missile Defense. The X-Band Radar (XBR), which Raytheon is under contract to develop, will be integrated with space-based sensors for a total sensor solution against limited missile attack.
Harris is providing The Boeing Company with systems engineering, integration services, and satellite communications equipment for the US Missile Defense Agency's (MDA) Sea-Based X-band (SBX) Radar program.
The Sea Launch partnership between Boeing of the USA, Energia of Russia,Yuzhnoye of Ukraine and Kværner, employs the technology and experience of Moss Maritime to penetrate new frontiers in the usage of dynamically positioned semi-submersible offshore platforms. Kvaerner had used the Vyborgsky Shipyard to build the Odyssey launch platform, which is the Launch Platform (LP), a semi-submersible vessel which is one of the world's largest ocean-going launch platform. The Launch Platform - or LP - a former North Sea oil drilling platform, was refurbished at the Rosenberg Shipyard in Stavanger, Norway. The vessel is one of the largest semi-submersible, self-propelled vessels in the world at 436 feet long, about 220 wide, with an empty draft displacement of 30,000 tons, and a submerged draft displacement of 50,600 tons.
In late 2001 Vyborg Shipyard in Russia launched a $45 million multi-purpose semi-submersible drilling platform for Moss Maritime in Norway. The platform is a CS-50 design and will be called Moss Sirius. Keel laying ceremony was held in January 2001, pontoons were launched in October 2001, delivery scheduled in mid May 2002. The price tag for a fully equipped CS-50 semi-submersible platform is about $250 million. CS-50 is the first semi-submersible drilling platform being built in Russia after 10 years. The previous semi-submersible platform "Shelf-10" had been constructed as long as Soviet times.
Under the $35 million deal, the St. Petersburg shipyard  built the platform's flotation components by mid-2002. The platform was constructed in full conformity with the production schedule and the terms and provisions of the contract, and delivered in early May 2001.  Vyborg Shipyard, a member of the AKO BARSS group, is fabricating modules for Finnish yards but its primary skill is in the offshore sector - partly through previous connections to the Kvaerner empire (it was for a short time a member of that group). Not only has this yard built six Shelf-type drilling platforms for domestic operation together with two jack-up units but in 2000 the company won an order to construct the bare-deck platform Moss Sirius, which was delivered during May 2002, on time and to budget, to the Norwegian investment company Moss Arctic Production.
On 04 June 2002 the Missile Defense Agency (MDA) modified, on a sole source basis, Contract HQ0006-01-C-0001 with The Boeing Company, to develop a Sea-Based Test X-band Radar (XBR) capability in support of the Ground-Based Midcourse Defense (GMD) Program. This action provided for the Sea-Based Test XBR capability design, development, acquisition of a sea-based platform, and modification of the platform and existing XBR to meet design requirements, integration and operational check-out, and radar test operations. Currently, Boeing is providing development of initial components of the GMD system (interceptor, XBR, and upgrades to the Early Warning Radars) under this contract. The effort necessary to satisfy this Sea-Based Test XBR capability is highly specialized and tightly interwoven with the on-going GMD development efforts being provided by Boeing. No other source can meet this requirement without the intimate knowledge of, and the ability to provide the currently planned XBR element for installation on the sea-based platform and integration into the GMD system under this contract.
On 21 November 2002 the Boeing Co., Anaheim, Calif., was awarded a cost-plus-award-fee modification to contract HQ0006-01-C-0001 in the amount of $30,000,000 for acquisition of long-lead items associated with the radar, as well as associated labor costs. The Boeing Co. will continue to develop a Test X-Band Radar (XBR) capability in support of the Ground-Based Midcourse Defense Program as a multi-phased acquisition. Subject to completion of environmental analysis, this modification is necessary to ensure that a Test XBR is ready to be integrated into the Ballistic Missile Defense System Test Bed in the fourth quarter of fiscal year 2005. Raytheon Electronic Systems, a major subcontractor, in Bedford, Mass., will primarily perform the effort. Phase one of the Sea-Based Test XBR effort was awarded during the fourth quarter of fiscal year 2002.
On 27 January 2003  the Boeing Co., Anaheim, Calif., was awarded a cost-plus-award-fee modification to contract HQ0006-01-C-0001 in the amount of $747,540,194 for completion of the development of Sea-Based Test X-Band Radar (SBX) capability. The Boeing Co. will continue to develop a Test X-Band Radar (XBR) capability in support of the Ground-Based Midcourse Defense Program as a multi-phased acquisition. This modification is necessary to ensure that a Test XBR is ready to be integrated into the Ballistic Missile Defense System Test Bed in the fourth quarter of fiscal year 2005. Raytheon Electronic Systems, a major subcontractor, in Bedford, Mass., will primarily perform the effort. Phase one of the SBX effort was awarded during the fourth quarter of fiscal year 2002, and an effort was announced in November 2002 for acquisition of radar long-lead items and associated labor costs.
The platform arrived at the Amfels shipyard in Brownsville in June 2003. The SBX underwent work at Kiewit Offshore Services on the north shore of Corpus Christi Bay. The contract for platform modifications at Amfels is worth between $80 million and $100 million.
The Missile Defense Agency (MDA) announced 15 August 2003 that it had selected Adak, Alaska, as the Primary Support Base (PSB) for the Sea-Based X-Band (SBX) radar.  The PSB includes a mooring site and minimum logistics support for the SBX.  Besides Adak, five other locations were considered:  Naval Base Ventura County, Calif.; Naval Station Everett, Wash.; Reagan Test Site, Kwajalein Atoll, Republic of the Marshall Islands; Port of Valdez, Alaska and Naval Station Pearl Harbor, Hawaii.  The selection of Adak was the result of extensive analysis of numerous factors relating to operations, support and sustainability, including easy access to potential operating areas and available support infrastructure.
On 17 September 2003 Harris Corporation announced that it was awarded a $7.7 million contract by The Boeing Company to provide systems engineering, integration services, and satellite communications equipment for the Sea-Based X-band (SBX) Radar program.  Continuous communications between the platform and shore facilities will be provided via a commercial C-band satellite, using a unique redundant dual-antenna system designed and furnished by Harris Maritime Communication Services (MCS) subsidiary. Harris MCS provides satellite communications services to cruise ships, remote land-based locations around the world, and to data collection sites thousands of meters below the ocean's surface.

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发表于 2016-5-25 20:13 | 显示全部楼层 来自: 中国天津
雷达,美国的,说是远距离也能能监测到乒乓球大小的物体
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发表于 2016-5-26 08:38 | 显示全部楼层 来自: 中国江苏南京
米国海军的千里眼
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发表于 2016-5-26 08:53 | 显示全部楼层 来自: 中国江苏南通
需要冲砂做油漆了
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发表于 2016-5-26 09:47 | 显示全部楼层 来自: 中国江苏无锡
听说美国有二条,导弹防御系统。
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发表于 2016-5-26 17:55 | 显示全部楼层 来自: 中国江苏南通
6666 南海来几套
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发表于 2016-5-26 18:00 | 显示全部楼层 来自: 中国天津
意思是“造船顶个球???”
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发表于 2016-5-27 08:53 | 显示全部楼层 来自: 中国辽宁大连
这是老米的海上侦查预警雷达
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