How to reliably integrate medical devices over wireless

SECON(2012)

引用 6|浏览19
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摘要
This demonstration presents our NASS (Network Aware Supervisory System) framework prototype for medical device integration systems. The NASS framework interconnects medical devices over wireless for convenience, seamlessness and sanitation, and provides safety-guaranteed supervision. Our prototype was developed in Sun Java Real-time Environment. Real-time Java provides well-formed convenience of dynamically loading and unloading medical application logic and safety rules on the fly in real-time environments. To tackle the complexity of using real-time Java in the safety-critical system, we also applied HW/SW codesign method. Real-time Java Environment + Linux operating system may not be robust enough for medical devices to fully rely on. In our prototype, the supervisor software in Java performs all logical decisions including contingency plan generation derived from the safety rules. Once logic is decided, the decisions and plans for the devices are delivered to the hardware implemented in FPGA at each device to physically drive medical equipments. Since the execution of decisions and plans are delegated to the hardware, any failure in software does not harm the integrated safety. Our demonstration shows how safety is managed in different kinds of failures from wireless network failures to device software failures.
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关键词
logical decisions,nass framework prototype,physically drive medical equipments,real-time java environment,hardware implementation,network aware supervisory system,medical device integration systems,biomedical equipment,integrated safety,safety-guaranteed supervision,linux operating system,radio networks,linux,hw-sw codesign method,supervisor software,hardware-software codesign,fpga,dynamic loading,safety-critical software,medical computing,contingency plan generation,field programmable gate arrays,sun java real-time environment,supervisory programs,real-time environments,wireless network failures,device software failures,java,safety-critical system,sanitation,real-time systems,prototypes,protocols,real time systems,engines
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