4 COPYRIGHT FORM
COMPLETION AND
TRANSITION FOR MIXED
CONVERGENCE PATTERN
(MCP)
Statement and activity transitions among HTNO-
INSS depend on individual Agent satisfaction degree
to benefit schemes, and manager Agent collaborated
capabilities. However, when group negotiation
reaches an impasse, system maintains the original
negotiation protocols, or adjusts invoking rules and
constraint conditions for model objects. HTNO-INSS
execution results have six forms, such as Waiting,
Ready, Running, Quit, Aborted and Completed.
Fig.2 shows relations of every expression forms in
HTNO negotiation activity statement.
Figure 2: Activity transition status for HTNO-INSS.
Therefore, we could discover that INSS problem
processing strategies are divided of three executive
forms, according to negotiation events happening
types and activities transition, the first type is regular
events transition status, that is original status , ready
state satisfying invoked conditions, activity
operational status and the whole negotiation
completed; the second type is anomalous
event transition status, that is hanging up executive
activity, amending ready state for renew exploring
activity schedules, or the executive activity canceled
by individual Agent, the current status resumed after
system is handled. The third type is special event
transition status, activity finishing state is reset to
original statement by individual Agent, that is status
parameters or participants altered, conflict-issue
schemes amended.
5 CONCLUSIONS
HTNO-INSS is a man-machine interface system
driven by Benefit-induced and Behavior-perceived
Patterns, which could assist individual Agent to
analyze pre-negotiation situation and prepare
tactically, deals with real-time data and information
during mutual bargaining for forming conflict
resolutions, and finally reaches scientifically
operational schemes. Mixed Convergence Pattern
(MCP) not only supply resolution technology
theories and method tools for alliance management
institution, creates fair, impartial and friendly
decision-making environment for HTNO
participants, gives full play to alliance governing
Competency, guarantees system operational
stationary and data transmission accuracy.
ACKNOWLEDGEMENTS
The research described here was supported by a grant
from China Postdoctoral Science Foundation (Project
No. 20090460877 and No. 201003414), Social
Science and humanity of China Ministry of education
(Project No.10YJC630037), Hei Longjiang
Postdoctoral Science Foundation (Project No. LBH-
Z09224). The Second author was partially supported
by a grant (70971028G0102) from National Nature
Science Foundation of China. I must express my
thankfulness for their support.
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