1461148782-06a3231c-eef0-460e-bbd8-dc45d17dafe4

1. A stimulating device using electrical signals comprising:
a main body made of non-conductive material;
at least two conductive members attached to a surface of the main body and made of conductive material; and
a connecting section for transferring the respective electrical signals to the at least two conductive members.
2. The stimulating device using electrical signals according to claim 1, wherein said main body is a band type.
3. The stimulating device using electrical signals according to claim 1, further comprising a control unit for controlling supply of the electrical signals to the connecting section.
4. The stimulating device using electrical signals according to claim 3, wherein said connecting section and said control unit are coupled through at least one of a wireless connection and a wire connection.
5. The stimulating device using electrical signals according to claim 3, wherein said control unit comprises:
a signal processing section for identifying signals; and
an adjusting section for controlling the signals.
6. The stimulating device using electrical signals according to claim 1, wherein the non-conductive material and the conductive material are separately arranged in a longitudinal or lateral direction.
7. The stimulating device using electrical signals according to claim 1, wherein said conductive material includes at least any one of silicon, rag, cloth and leather having electrical conductivity.
8. The stimulating device using electrical signals according to claim 1, wherein said non-conductive material includes at least any one of silicon, rag, cloth and leather having electrical non-conductivity.
9. The stimulating device using electrical signals according to claim 1, wherein said conductive material of the conductive members comprises a plus (+) polarity or a minus (\u2212) polarity, and the conductive material having the plus (+) polarity and the conductive material having the minus (\u2212) polarity are arranged alternately.
10. The stimulating device using electrical signals according to claim 1, wherein one end of the conductive member is electrified, and the other end of the conductive member is insulated.
11. The stimulating device using electrical signals according to claim 1, wherein said connecting section said the conductive member are connected each other through a connection member, and one end of the connection member comprises at least one of a lead terminal or an extruded terminal.
12. The stimulating device using electrical signals according to claim 1, wherein a plurality of grooves are formed separately in the main body, and the conductive members are coupled to the main body correspondingly to the grooves.
13. The stimulating device using electrical signals according to claim 12, wherein height of the conductive member is equal to or greater than depth of the groove.
14. The stimulating device using electrical signals according to claim 1, further comprising a Velcro for adjusting a size of circumference, when the main body is a band type.
15. The stimulating device using electrical signals according to claim 1, wherein said non-conductive material and said conductive material are alternately arranged.
16. A measuring and stimulating device using electrical signals comprising:
at least two conductive members made of conductive material;
a connecting section for transferring the respective electrical signals to the at least two conductive members; and
a control unit coupled to the connecting section, for supplying a test electrical signal to the conductive members, receiving a measured electrical signal corresponding to the test electrical signal, and supplying a body electrical signal corresponding to the measured electrical signal.
17. The measuring and stimulating device using electrical signals according to claim 16, further comprising a main body made of non-conductive material,
wherein the conductive members are attached to one surface of the main body.
18. The measuring and stimulating device using electrical signals according to claim 16, wherein said connecting section and said control unit are coupled through at least one of a wireless connection and a wire connection.
19. The measuring and stimulating device using electrical signals according to claim 17, wherein said main body is a band type.
20. The measuring and stimulating device using electrical signals according to claim 17, wherein said non-conductive material and said conductive material are separately arranged in a longitudinal or lateral direction.
21. The measuring and stimulating device using electrical signals according to claim 17, wherein said non-conductive material includes at least any one of silicon, rag, cloth and leather having electrical non-conductivity.
22. The measuring and stimulating device using electrical signals according to claim 17, further comprising a Velcro for adjusting a size of circumference, when the main body is a band type.
23. The measuring and stimulating device using electrical signals according to claim 17, wherein a plurality of grooves are formed separately in the main body, and the conductive members are coupled to the main body correspondingly to the grooves.
24. The measuring and stimulating device using electrical signals according to claim 23, wherein height of the conductive member is equal to or greater than depth of the groove.
25. The measuring and stimulating device using electrical signals according to claim 16, wherein said conductive material includes at least any one of silicon, rag, cloth and leather having electrical conductivity.
26. The measuring and stimulating device using electrical signals according to claim 16, wherein said conductive material of the conductive members comprises a plus (+) polarity or a minus (\u2212) polarity, and the conductive material having the plus (+) polarity and the conductive material having the minus (\u2212) polarity are arranged alternately.
27. The measuring and stimulating device using electrical signals according to claim 16, wherein one end of the conductive member is electrified, and the other end of the conductive member is insulated.
28. The measuring and stimulating device using electrical signals according to claim 16, wherein said connecting section and said conductive member are connected each other through a connection member, and one end of the connection member comprises at least one of a lead terminal or an extruded terminal.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A method for multiple users cooperative communication, the method comprising:
receiving, by a radio access network node, multiple users cooperative communication (MUCC) capability identifiers of at least two user equipments (UEs) that are sent by a core network node, wherein the MUCC capability identifiers are used to identify MUCC capabilities of the UEs, and the MUCC capability comprises: a first benefited capability, a first supporting capability, first benefited and first supporting capabilities, a second benefited capability, or a second supporting capability; and
selecting, by the radio access network node according to the MUCC capability identifiers of the at least two UEs, a UE having a supporting capability of the MUCC capability and a UE having a benefited capability of the MUCC capability, so that the UE having a supporting capability supports, in MUCC communication, a bearer of the UE having a benefited capability.
2. The method according to claim 1, wherein receiving, by a radio access network node, the MUCC capability identifiers of at least two UEs sent by a core network node comprises:
receiving, by the radio access network node, an initial context setup request or a handover request sent by the core network node, wherein the initial context setup request or handover request comprises the MUCC capability identifiers of the at least two UEs.
3. The method according to claim 1, wherein:
the UE having a supporting capability of the MUCC capability refers to a UE having the first supporting capability, the first benefited and first supporting capabilities, or the second supporting capability; and
the UE having a benefited capability of the MUCC capability refers to a UE having the first benefited capability, the first benefited and first supporting capabilities, or the second benefited capability.
4. The method according to claim 1, further comprising:
receiving, by the radio access network node, negotiated MUCC capability identifiers of the at least two UEs that is generated after the core network node performs, according to subscription information of the at least two UEs, subscription determining on the MUCC capabilities of the at least two UEs, wherein the negotiated MUCC capability identifiers are used to identify the MUCC capabilities of the UEs; and
selecting, by the radio access network node according to the negotiated MUCC capability identifiers of the at least two UEs, a UE having a supporting capability of the MUCC capability and a UE having a benefited capability of the MUCC capability, so that the UE having a supporting capability supports, in MUCC communication, a bearer of the UE having a benefited capability.
5. The method according to claim 4, further comprising:
receiving, by the radio access network node, updated MUCC capability identifiers of the at least two UEs that is sent by the core network node; and
if an updated MUCC capability of a UE does not have a benefited capability and the UE is performing MUCC communication as a benefited UE, deleting, by the radio access network node, a supporting bearer of a supporting UE that supports the benefited UE; or
if an updated MUCC capability of a UE does not have a supporting capability and the UE is performing MUCC communication as a supporting UE, deleting, by the radio access network node, a supporting bearer of the supporting UE.
6. The method according to claim 1, further comprising:
receiving, by the radio access network node, MUCC priority capability information of the at least two UEs that is sent by the core network node; and
selecting, by the radio access network node, a UE having a low priority and a supporting capability and a UE having a high priority and a benefited capability, so that the UE having a low priority and a supporting capability supports, in MUCC communication, a bearer of the UE having a high priority and a benefited capability.
7. The method according to claim 1, wherein when the MUCC capability of the UE is the second supporting capability, the method further comprises:
keeping, by the radio access network node, the UE in an RRC connected state.
8. A method for multiple users cooperative communication, the method comprising:
sending, by a radio access network node, a multiple users cooperative communication (MUCC) capability identifier of the radio access network node to a core network node and a user equipment (UE), so that the core network node and the UE initiate MUCC communication when the MUCC capability identifier of the radio access network node indicates that the radio access network node has a MUCC capability, wherein the MUCC capability identifier of the radio access network node is used to indicate that the radio access network node has a MUCC capability.
9. The method according to claim 8, wherein the MUCC capability identifier of the radio access network node further indicates that the radio access network node does not have a MUCC capability, so that the core network node and the UE skip initiating MUCC communication when the MUCC capability identifier of the radio access network node indicates that the radio access network node does not have a MUCC capability.
10. A radio access network node, comprising:
a receiver, configured to receive multiple users cooperative communication (MUCC) capability identifiers of at least two user equipments (UE) that are sent by a core network node, wherein the MUCC capability identifiers are used to identify MUCC capabilities of the UEs, and the MUCC capability comprises: a first benefited capability, a first supporting capability, first benefited and first supporting capabilities, a second benefited capability, or a second supporting capability; and
a processor, configured to select a UE having a supporting capability of the MUCC capability and a UE having a benefited capability of the MUCC capability, according to the MUCC capability identifiers of the at least two UEs receiving from the receiver, so that the UE having a supporting capability supports, in MUCC communication, a bearer of the UE having a benefited capability.
11. The radio access network node according to claim 10, wherein the receiver is further configured to receive an initial context setup request or a handover request sent by the core network node, wherein the initial context setup request or handover request comprises the MUCC capability identifiers of the at least two UEs.
12. The radio access network node according to claim 10, wherein:
the UE having a supporting capability of the MUCC capability refers to a UE having the first supporting capability, the first benefited and first supporting capabilities, or the second supporting capability; and
the UE having a benefited capability of the MUCC capability refers to a UE having the first benefited capability, the first benefited and first supporting capabilities, or the second benefited capability.
13. The radio access network node according to claim 10, wherein:
the receiver is further configured to receive negotiated MUCC capability identifiers of the at least two UEs that is generated after the core network node performs, according to subscription information of the at least two UEs, subscription determining on the MUCC capabilities of the at least two UEs, wherein the negotiated MUCC capability identifiers are used to identify the MUCC capabilities of the UEs; and
the processor is further configured to select a UE having a supporting capability of the MUCC capability and a UE having a benefited capability of the MUCC capability, according to the negotiated MUCC capability identifiers of the at least two UEs received by the receiver, and, so that the UE having a supporting capability supports, in MUCC communication, a bearer of the UE having a benefited capability.
14. The radio access network node according to claim 13, wherein:
the receiver is further configured to receive updated MUCC capability identifiers of the at least two UEs that is sent by the core network node; and
the processor further configured to, when an updated MUCC capability identifier of a UE received by the receiver does not have a benefited capability and the UE is performing MUCC communication as a benefited UE, delete a supporting bearer of a supporting UE that supports the benefited UE.
15. The radio access network node according to claim 10, wherein:
the receiver is further configured to receive updated MUCC capability identifiers of the at least two UEs that is sent by the core network node;
the processor further configured to, when an updated MUCC capability identifier of a UE received by the receiver does not have a supporting capability and the UE is performing MUCC communication as a supporting UE, delete a supporting bearer of the supporting UE.
16. The radio access network node according to claim 10, wherein:
the receiver is further configured to receive MUCC priority capability information of the at least two UEs that is sent by the core network node; and
the processor is further configured to select a UE having a low priority and a supporting capability and a UE having a high priority and a benefited capability according to the MUCC priority capability information of the at least two UEs received by the receiver, so that the UE having a low priority and a supporting capability supports, in MUCC communication, a bearer of the UE having a high priority and a benefited capability.
17. The radio access network node according to claim 10, wherein the processing unit is further configured to, when the MUCC capability of the UE is the second supporting capability, keep the UE in an RRC connected state.
18. A radio access network node, comprising:
a transmitter, configured to send a multiple users cooperative communication (MUCC) capability identifier of the radio access network node to a core network node and a user equipment (UE), so that the core network node and the UE initiate MUCC communication when the MUCC capability identifier of the radio access network node indicates that the radio access network node has a MUCC capability, wherein the MUCC capability identifier of the radio access network node is used to indicate that the radio access network node has a MUCC capability.
19. The radio access network node according to claim 18, wherein the MUCC capability identifier of the radio access network node further indicates that the radio access network node does not have a MUCC capability, so that the core network node and the UE skip initiating MUCC communication when the MUCC capability identifier of the radio access network node indicates that the radio access network node does not have a MUCC processing capability.