occupants. However, it is a difficult task, despite the success of some of these
systems, the occupant detection such as human, non-human object and its
classification still pose a number of challenges with respect to real time
implementation and operation [5].
The vehicle crash detection is very helpful for preventative safety, preventing
accidents and collision for minimizing human injury when an accident occurs [6].
However, in past it has been a rather seldom discussed on research and theoretical
analysis of crash in the field of traditional engineering [7]. It is therefore NHTSA and
other safety concern made rule that vehicle crash detection and analysis are
mandatory for safety issue [8].
Similarly, the safety issue on TPMS is a
significant factor in the driving experience and
vehicle
performance [9]. Accordingly, the NHTSA made a legislation known as the
TREAD act in which after 31 October 2006, all vehicles in United States should have
the option of TPMS [10].
The system interface for the prototype implementation of intelligent safety system
is the most important. It is therefore, this paper pursue the interface program that are
used for the development of an innovative integrated intelligent safety system to
identify major hazards and assess the associated risks in an acceptable way in various
environments where such traditional tools cannot be effectively or efficiently applied.
The safety device provides data to the intelligent safety system that is useful for the
development of ADDS and TPMS. The objective of this paper are met by integrating
and developing the advance solution of the innovative safety issues likewise occupant
detection, classification and position, vehicle crash detection and its severity analysis,
TPMS and other detrimental issues.
2 System Integration
There are a number of limitations with the conventional architecture of the vehicles
intelligent safety systems. The safety measures are challenging and increasing
awareness of the automotive companies, due to customer expectation of high level of
control and safety. However, because of the wide variety of individual safety system,
it needs a large library of programs and much expensive individual platforms. This
wide variety of safety is continuous increasing the complexity that would lead to a
physical maximum and interdependence between the systems. So as to extract the
most of the individual demands, the platform need to be integrated, addressed a robust
algorithm and calibration process to optimized and validate the vehicle integrated
safety system. The principle motivation behind the system integration is to reduce
individual systems safety device management cost in the performance domain. The
integrated intelligent safety system aims to provide heterogeneous workload
management concepts and functions to the safety issues and validate them based on
performance diagnosis of collected monitoring data in a developed platform.
The intelligent vehicle safety platform identifies the hardware and software
execution environment of a system. The hardware platform identifies a set of
hardware objects associated with processors. The system interface provides a high
level of interface between software objects running on different processors that
control the hardware. The proposed integrated safety system deals with the safety and
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