IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0154493
(2008-05-23)
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등록번호 |
US-8422513
(2013-04-16)
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발명자
/ 주소 |
- Berglund, Jan Erik Johan
- Li, Zheng
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출원인 / 주소 |
- Nokia Siemens Networks Oy
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대리인 / 주소 |
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인용정보 |
피인용 횟수 :
0 인용 특허 :
8 |
초록
▼
A method includes receiving a first frame at a wireless access node, the first frame being received through a first communication network and having a source address; applying a function (e.g., a hash function) to the source address to derive a destination address; encapsulating the first frame in a
A method includes receiving a first frame at a wireless access node, the first frame being received through a first communication network and having a source address; applying a function (e.g., a hash function) to the source address to derive a destination address; encapsulating the first frame in a second frame that includes the destination address and a source address identifying the wireless access node; and sending the second frame to a second communication network for receipt by a destination node having the destination address. The destination node is an access controller that maintains state for a station that sends the first frame. The first communication network may be an IEEE 802.11 network, and the second communication network may be an IEEE 802.3 network. The address of the access controller is one of potentially many virtual MAC addresses associated with the access controller that enables an N:M relationship between a particular access node and a plurality of access controllers that may be clustered, and a N:1 relationship between a Station and a virtual access controller.
대표청구항
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1. A method comprising: receiving, at an access controller, a first frame through a first communication network, where the first frame comprises a first destination address that identifies one of a plurality of virtual medium access control addresses associated with the access controller, the first
1. A method comprising: receiving, at an access controller, a first frame through a first communication network, where the first frame comprises a first destination address that identifies one of a plurality of virtual medium access control addresses associated with the access controller, the first frame further comprising a first source address that identifies a wireless access node in a second communication network;extracting a second frame that is encapsulated in the first frame, the second frame comprising a second source address identifying a station in the second communication network and a second destination address identifying a destination node;and sending the second frame for receipt by the destination node,wherein there are a plurality of access controllers each having a set of virtual medium access control addresses, the method further comprising:assigning virtual medium access control addresses between the plurality of access controllers based on at least one criterion;receiving a broadcast frame comprising a third source address;applying a function to the third source address;only if the result of applying the function results in a virtual medium access control address associated with the access controller, encapsulating the broadcast frame in a fourth frame that comprises a broadcast address and a fourth source address equal to the virtual medium access control address;and sending the fourth frame to the first communication network. 2. The method of claim 1, where the first communication network is an IEEE 802.3 network, and where the second communication network is an IEEE 802.11 network. 3. The method of claim 1, further comprising: receiving a third frame comprising a third source address and a third destination address, where the third destination address identifies a second station in the second communication network;encapsulating the third frame in a fourth frame that comprises a fourth destination address identifying a second wireless access node in the second communication network and a fourth source address identifying the access controller; andsending the fourth frame to the first communication network. 4. The method of claim 1, where the at least one criterion is comprised of an access controller becoming one of enabled for operation or disabled for operation. 5. The method of claim 1, where the at least one criterion is comprised of a processing capability of at least one access controller relative to other ones of the plurality of access controllers. 6. A non-transitory medium that stored computer program instructions, execution of the computer program instructions by a data processor resulting in operations comprising: receiving, at an access controller, a first frame through a first communication network, where the first frame comprises a first destination address that identifies one of a plurality of virtual medium access control addresses associated with the access controller, the first frame further comprising a first source address that identifies a wireless access nodes in a second communication network;extracting a second frame that is encapsulated in the first frame, the second frame comprising a second source address identifying a station in the second communication network and a second destination address identifying a destination node;and sending the second frame for receipt by the destination nod;wherein there are a plurality of access controllers each having a set of virtual medium access control addresses, the operations further comprising:assigning virtual medium access control addresses between the plurality of access controllers based on at least one criterion;receiving a broadcast frame comprising a third source address;applying a function to the third source address;only if the result of applying the function results in a virtual medium access control address associated with the access controller, encapsulating the broadcast frame in a fourth frame that comprises a broadcast address and a fourth source address equal to the virtual medium access control address;and sending the fourth frame to the first communication network. 7. The memory medium of claim 6, where the first communication network is an IEEE 802.3 network, and where the second communication network is an IEEE 802.11 network. 8. The memory medium of claim 6, further comprising operations of: receiving a third frame comprising a third source address and a third destination address, where the third destination address identifies a second station in the second communication network;encapsulating the third frame in a fourth frame that comprises a fourth destination address identifying a wireless access node in the second communication network and a fourth source address identifying the access controller; andsending the fourth frame to the first communication network. 9. The memory medium of claim 6, where the at least one criterion is comprised of an access controller becoming one of enabled for operation or disabled for operation. 10. The memory medium of claim 6, where the at least one criterion is comprised of a processing capability of at least one access controller relative to other ones of the plurality of access controllers. 11. An apparatus, comprising: a data processor;and a memory including computer program instructions, the memory and the computer program instructions being configured to, with the data processor, cause the apparatus at least to perform:receive a first frame through a first communication network, where the apparatus comprises an access controller, where the first frame comprises a first destination address that identifies one of a plurality of virtual medium access control addresses associated with the access controller, the first frame further comprising a first source address that identifies a wireless access node in a second communication network;extract a second frame that is encapsulated in the first frame, the second frame comprising a second source address identifying a station in the second communication network and a second destination address identifying a destination node;and send the second frame for receipt by the destination nod;wherein there are a plurality of access controllers each having a set of virtual medium access control addresses, the memory and the computer program instructions being configured to, with the data processor, cause the apparatus at least to further perform:cooperate with another access controller to assign virtual medium access control addresses between the plurality of access controllers based on at least one criterion;receive a broadcast frame comprising a third source address;apply a function to the third source address;only if the result of applying the function results in a virtual medium access control address associated with the access controller, encapsulate the broadcast frame in a fourth frame that comprises a broadcast address and a fourth source address equal to the virtual medium access control address;and send the fourth frame to the first communication network. 12. The apparatus of claim 11, where the first communication network is an IEEE 802.3 network, and where the second communication network is an IEEE 802.11 network. 13. The apparatus of claim 11, the memory and the computer program instructions being configured to, with the data processor, cause the apparatus at least to further perform: receive a third frame comprising a third source address and a third destination address, where the third destination address identifies a second station in the second communication network;encapsulate the third frame in a fourth frame that comprises a fourth destination address identifying a second wireless access node in the second communication network and a fourth source address identifying the access controller; andsend the fourth frame to the first communication network. 14. The apparatus of claim 11, where the at least one criterion is comprised of an access controller becoming one of enabled for operation or disabled for operation. 15. The apparatus of claim 11, where the at least one criterion is comprised of a processing capability of at least one access controller relative to other ones of the plurality of access controllers.
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