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By E. Eguchi

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This article discusses the potential for such integrated systems in the stationary and portable power market in response to the critical need for a cleaner energy technology. Anticipated patterns of future energy use and consequent environmental impacts (acid precipitation, ozone depletion and the greenhouse effect or global warming) are comprehensively discussed in this paper. Throughout the theme several issues relating to renewable energies, environment and sustainable development are examined from both current and future perspectives.

Recently, the world’s leading climate scientists reached an agreement that human activities, such as burning fossil fuels for energy and transport, are causing the world’s temperature to rise. The Intergovernmental Panel on Climate Change has concluded that ‘‘the balance of evidence suggests a discernible human influence on global climate’’. It predicts a rate of warming greater than any one seen in the last 10,000 years, in other words, throughout human history. The exact impact of climate change is difficult to predict and will vary regionally.

67 when Vtag /3 ≤ Vin2 < 2Vtag /3. Theoretical analysis for Mode-3 Next, the characteristics of the proposed converter for 2Vtag /3 ≤ Vin2 is analyzed theoretically. Figure 14 shows the instantaneous equivalent circuits when Mode-3. In the steady state, the differential value of electric charges in Ck (k = {1, 2, 3, 4}) satisfies equation (2). In the case of State − T1, ∆q T1,Vin1 , ∆q T1,Vin2 , and ∆q T1,Vout , are given by ∆q T1,Vin1 = ∆q1T1 = ∆q2T1 , ∆q T1,Vin2 = 0, ∆q T1,Vout = ∆q4T1 . and (26) On the other hand, in the case of State − T2, ∆q T2,Vin1 , ∆q T2,Vin2 , and ∆q T2,Vout , are given by ∆q T2,Vin1 = −∆q2T1 − ∆q2T2 , ∆q T2,Vin2 = 0, and ∆q T2,Vout = ∆q1T2 + ∆q2T2 + ∆q4T2 .

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